Changes for page LT-22222-L -- LoRa I/O Controller User Manual
Last modified by Saxer Lin on 2025/04/15 17:24
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... ... @@ -1,1 +1,1 @@ 1 -LT-22222-L -- LoRa IO Controller User Manual 1 +LT-22222-L -- LoRa I/O Controller User Manual - Content
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... ... @@ -23,6 +23,10 @@ 23 23 24 24 ((( 25 25 ((( 26 +{{info}} 27 +**This manual is also applicable to the LT-33222-L.** 28 +{{/info}} 29 + 26 26 The Dragino (% style="color:blue" %)**LT-22222-L I/O Controller**(%%) is an advanced LoRaWAN device designed to provide seamless wireless long-range connectivity with various I/O options, including analog current and voltage inputs, digital inputs and outputs, and relay outputs. 27 27 28 28 The LT-22222-L I/O Controller simplifies and enhances I/O monitoring and controlling. It is ideal for professional applications in wireless sensor networks, including irrigation systems, smart metering, smart cities, building automation, and more. These controllers are designed for easy, cost-effective deployment using LoRa wireless technology. ... ... @@ -40,7 +40,9 @@ 40 40 * If there is no public LoRaWAN coverage in your area, you can set up a LoRaWAN gateway, or multiple gateways, and connect them to a LoRaWAN network server to create adequate coverage. Then, register the LT-22222-L I/O controller with this network. 41 41 * Setup your own private LoRaWAN network. 42 42 43 -> You can use a LoRaWAN gateway, such as the Dragino LG308, to expand or create LoRaWAN coverage in your area. 47 +{{info}} 48 + You can use a LoRaWAN gateway, such as the [[Dragino LG308>>https://www.dragino.com/products/lora-lorawan-gateway/item/140-lg308.html]], to expand or create LoRaWAN coverage in your area. 49 +{{/info}} 44 44 ))) 45 45 46 46 ((( ... ... @@ -56,13 +56,13 @@ 56 56 * STM32L072xxxx MCU 57 57 * SX1276/78 Wireless Chip 58 58 * Power Consumption: 59 -** Idle: 4mA@12 v65 +** Idle: 4mA@12V 60 60 ** 20dB Transmit: 34mA@12V 61 61 * Operating Temperature: -40 ~~ 85 Degrees, No Dew 62 62 63 63 (% style="color:#037691" %)**Interface for Model: LT22222-L:** 64 64 65 -* 2 x Digital dual direction Input (Detect High/Low signal, Max: 50 v, or 220vwith optional external resistor)71 +* 2 x Digital dual direction Input (Detect High/Low signal, Max: 50V, or 220V with optional external resistor) 66 66 * 2 x Digital Output (NPN output. Max pull-up voltage 36V,450mA) 67 67 * 2 x Relay Output (5A@250VAC / 30VDC) 68 68 * 2 x 0~~20mA Analog Input (res:0.01mA) ... ... @@ -72,8 +72,8 @@ 72 72 (% style="color:#037691" %)**LoRa Spec:** 73 73 74 74 * Frequency Range: 75 -** Band 1 (HF): 862 ~~ 1020 M hz76 -** Band 2 (LF): 410 ~~ 528 M hz81 +** Band 1 (HF): 862 ~~ 1020 MHz 82 +** Band 2 (LF): 410 ~~ 528 MHz 77 77 * 168 dB maximum link budget. 78 78 * +20 dBm - 100 mW constant RF output vs. 79 79 * +14 dBm high-efficiency PA. ... ... @@ -92,7 +92,7 @@ 92 92 93 93 == 1.3 Features == 94 94 95 -* LoRaWAN Class A & Class C protocol101 +* LoRaWAN Class A & Class C modes 96 96 * Optional Customized LoRa Protocol 97 97 * Frequency Bands: CN470/EU433/KR920/US915/EU868/AS923/AU915/RU864/IN865/MA869 98 98 * AT Commands to change parameters ... ... @@ -102,22 +102,20 @@ 102 102 103 103 == 1.4 Applications == 104 104 105 -* Smart Buildings &HomeAutomation106 -* Logistics and SupplyChainManagement107 -* Smart Metering108 -* Smart Agriculture109 -* Smart Cities110 -* Smart Factory111 +* Smart buildings & home automation 112 +* Logistics and supply chain management 113 +* Smart metering 114 +* Smart agriculture 115 +* Smart cities 116 +* Smart factory 111 111 112 112 == 1.5 Hardware Variants == 113 113 114 - 115 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:500px" %) 116 -|(% style="background-color:#4f81bd; color:white; width:103px" %)**Model**|(% style="background-color:#4f81bd; color:white; width:131px" %)**Photo**|(% style="background-color:#4f81bd; color:white; width:266px" %)**Description** 117 -|(% style="width:103px" %)**LT22222-L**|(% style="width:131px" %)((( 118 -(% style="text-align:center" %) 119 -[[image:image-20230424115112-1.png||height="106" width="58"]] 120 -)))|(% style="width:334px" %)((( 120 +(% style="width:524px" %) 121 +|(% style="width:94px" %)**Model**|(% style="width:98px" %)**Photo**|(% style="width:329px" %)**Description** 122 +|(% style="width:94px" %)**LT33222-L**|(% style="width:98px" %)((( 123 +[[image:/xwiki/bin/downloadrev/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LT-22222-L/WebHome/image-20230424115112-1.png?rev=1.1&width=58&height=106||alt="image-20230424115112-1.png" height="106" width="58"]] 124 +)))|(% style="width:329px" %)((( 121 121 * 2 x Digital Input (Bi-direction) 122 122 * 2 x Digital Output 123 123 * 2 x Relay Output (5A@250VAC / 30VDC) ... ... @@ -126,10 +126,18 @@ 126 126 * 1 x Counting Port 127 127 ))) 128 128 129 -= 2. Assembling = 130 130 131 -Attach the LoRa antenna to the antenna connector, **ANT**,** **located on the top right side of the device, next to the upper screw terminal block. Secure the antenna by tightening it clockwise. 132 132 135 +== 2. Assembling the device == 136 + 137 +== 2.1 Connecting the antenna == 138 + 139 +Connect the LoRa antenna to the antenna connector, **ANT**,** **located on the top right side of the device, next to the upper screw terminal block. Secure the antenna by tightening it clockwise. 140 + 141 +{{warning}} 142 +Warning! Do not power on the device without connecting the antenna. 143 +{{/warning}} 144 + 133 133 == 2.2 Terminals == 134 134 135 135 The LT-22222-L has two screw terminal blocks. The upper screw treminal block has 6 terminals and the lower screw terminal block has 10 terminals. ... ... @@ -164,8 +164,6 @@ 164 164 165 165 The LT-22222-L I/O Controller can be powered by a **7–24V DC** power source. Connect your power supply’s positive wire to the VIN and the negative wire to the GND screw terminals. The power indicator **(PWR) LED** will turn on when the device is properly powered. 166 166 167 -Powering on the device 168 - 169 169 Once powered, the **TX LED** will **fast-blink 5 times** which means the LT-22222-L will enter the **work mode** and start to **join** The Things Stack. The **TX LED** will be on for **5 seconds** after joining the network. When there is a **downlink** message from the server, the **RX LED** will be on for **1 second**. When the device is sending an uplink message to the server, the **TX LED** will be on for **1 second**. See also LED status. 170 170 171 171 {{warning}} ... ... @@ -288,10 +288,10 @@ 288 288 [[image:lt-22222-ul-payload-fmt.png||height="686" width="1000"]] 289 289 290 290 291 -== 3.3 Work Modes and theirUplink Payload formats ==301 +== 3.3 Working Modes and Uplink Payload formats == 292 292 293 293 294 -The LT-22222-L has 5 **work modes**. It also has an interrupt/trigger mode for different types of applications that can be used together with any work mode as an additional feature. The default mode is MOD1 and you can switch between these modes using AT commands. 304 +The LT-22222-L has 5 **working modes**. It also has an interrupt/trigger mode for different types of applications that can be used together with any working mode as an additional feature. The default mode is MOD1 and you can switch between these modes using AT commands. 295 295 296 296 * (% style="color:blue" %)**MOD1**(%%): (default mode/factory set): 2ACI + 2AVI + DI + DO + RO 297 297 ... ... @@ -305,7 +305,7 @@ 305 305 306 306 * (% style="color:blue" %)**ADDMOD6**(%%): Trigger Mode, Optional, used together with MOD1 ~~ MOD5 307 307 308 -The uplink messages are sent over LoRaWAN FPort 318 +The uplink messages are sent over LoRaWAN FPort=2. By default, an uplink message is sent every 10 minutes. 309 309 310 310 === 3.3.1 AT+MOD~=1, 2ACI+2AVI === 311 311 ... ... @@ -312,8 +312,12 @@ 312 312 ((( 313 313 This is the default mode. 314 314 315 -The uplink payload is 11 bytes long. (% style="display:none" wfd-invisible="true" %)325 +The uplink payload is 11 bytes long. 316 316 327 +(% style="color:red" %)**Note:The maximum count depends on the bytes number of bytes. 328 +The maximum count for four bytes is FFFFFFFF (hex) = 4294967295 (dec). 329 +It starts counting again when it reaches the maximum value.**(% style="display:none" wfd-invisible="true" %) 330 + 317 317 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 318 318 |(% style="background-color:#4f81bd; color:white" %)**Size(bytes)**|(% style="background-color:#4f81bd; color:white" %)**2**|(% style="background-color:#4f81bd; color:white" %)**2**|(% style="background-color:#4f81bd; color:white" %)**2**|(% style="background-color:#4f81bd; color:white" %)**2**|(% style="background-color:#4f81bd; color:white" %)**1**|(% style="background-color:#4f81bd; color:white" %)**1**|(% style="background-color:#4f81bd; color:white" %)**1** 319 319 |Value|((( ... ... @@ -370,9 +370,13 @@ 370 370 * [1] DO2 channel output is LOW, and the DO2 LED is ON. 371 371 * [0] DO1 channel output state: 372 372 ** DO1 is FLOATING when there is no load between DO1 and V+. 373 -** DO1 is HIGH when there is a load between DO1 and V+.387 +** DO1 is HIGH and there is a load between DO1 and V+. 374 374 ** DO1 LED is OFF in both cases. 375 375 390 +Reserve = 0 391 + 392 +MOD = 1 393 + 376 376 === 3.3.2 AT+MOD~=2, (Double DI Counting) === 377 377 378 378 ... ... @@ -383,6 +383,10 @@ 383 383 ((( 384 384 The uplink payload is 11 bytes long. 385 385 404 +(% style="color:red" %)**Note:The maximum count depends on the bytes it is. 405 +The maximum count for four bytes is FFFFFFFF (hex) = 4294967295 (dec). 406 +It starts counting again when it reaches the maximum value.** 407 + 386 386 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 387 387 |(% style="background-color:#4f81bd; color:white" %)**Size(bytes)**|(% style="background-color:#4f81bd; color:white" %)**4**|(% style="background-color:#4f81bd; color:white" %)**4**|(% style="background-color:#4f81bd; color:white" %)**1**|(% style="background-color:#4f81bd; color:white" %)**1**|(% style="background-color:#4f81bd; color:white" %)**1** 388 388 |Value|COUNT1|COUNT2 |DIDORO*|((( ... ... @@ -447,6 +447,9 @@ 447 447 448 448 === 3.3.3 AT+MOD~=3, Single DI Counting + 2 x ACI === 449 449 472 +(% style="color:red" %)**Note: The maximum count depends on the bytes it is. 473 +The maximum count for four bytes is FFFFFFFF (hex) = 4294967295 (dec). 474 +It starts counting again when it reaches the maximum value.** 450 450 451 451 **LT22222-L**: In this mode, the DI1 is used as a counting pin. 452 452 ... ... @@ -497,7 +497,11 @@ 497 497 498 498 === 3.3.4 AT+MOD~=4, Single DI Counting + 1 x Voltage Counting === 499 499 525 +(% style="color:red" %)**Note:The maximum count depends on the bytes it is. 526 +The maximum count for four bytes is FFFFFFFF (hex) = 4294967295 (dec). 527 +It starts counting again when it reaches the maximum value.** 500 500 529 + 501 501 ((( 502 502 **LT22222-L**: In this mode, the DI1 is used as a counting pin. 503 503 ))) ... ... @@ -544,13 +544,13 @@ 544 544 ))) 545 545 546 546 ((( 547 - OtherAT Commands for counting are similar to the [[MOD2 Counting Command>>||anchor="H3.3.2AT2BMOD3D22C28DoubleDICounting29"]]s.576 +AT Commands for counting are similar to the [[MOD2 Counting Command>>||anchor="H3.3.2AT2BMOD3D22C28DoubleDICounting29"]]s. 548 548 ))) 549 549 550 550 ((( 551 551 **In addition to that, below are the commands for AVI1 Counting:** 552 552 553 -(% style="color:blue" %)**AT+SETCNT=3,60 **(%%)**(Sets AVI Count to 60)** 582 +(% style="color:blue" %)**AT+SETCNT=3,60 **(%%)**(Sets AVI1 Count to 60)** 554 554 555 555 (% style="color:blue" %)**AT+VOLMAX=20000 **(%%)**(If AVI1 voltage higher than VOLMAX (20000mV =20v), counter increase 1)** 556 556 ... ... @@ -562,7 +562,11 @@ 562 562 563 563 === 3.3.5 AT+MOD~=5, Single DI Counting + 2 x AVI + 1 x ACI === 564 564 594 +(% style="color:red" %)**Note:The maximum count depends on the bytes it is. 595 +The maximum count for four bytes is FFFFFFFF (hex) = 4294967295 (dec). 596 +It starts counting again when it reaches the maximum value.** 565 565 598 + 566 566 **LT22222-L**: In this mode, the DI1 is used as a counting pin. 567 567 568 568 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) ... ... @@ -613,24 +613,27 @@ 613 613 ))) 614 614 615 615 616 -=== 3.3.6 AT+ADDMOD~=6 .(Trigger Mode, Optional) ===649 +=== 3.3.6 AT+ADDMOD~=6 (Trigger Mode, Optional) === 617 617 618 618 619 -(% style="color:#4f81bd" %)**This mode is optional and intended for trigger purposes. It can operate togetherwith other modes.**652 +(% style="color:#4f81bd" %)**This mode is optional and intended for trigger purposes. It can operate __alongside__ with other modes.** 620 620 621 -For example, if you configure dthe following commands:654 +For example, if you configure the following commands: 622 622 623 -* **AT+MOD=1 ** **~-~->** The default work mode624 -* **AT+ADDMOD6=1** **~-~->** Enable trigger mode 656 +* **AT+MOD=1 ** **~-~->** Sets the default working mode 657 +* **AT+ADDMOD6=1** **~-~->** Enables trigger mode 625 625 626 -The LT-22222-L will continuously monitor AV1, AV2, AC1, and AC2 every 5 seconds. LTwill send uplink packets in two cases:659 +The LT-22222-L will continuously monitor AV1, AV2, AC1, and AC2 every 5 seconds. It will send uplink packets in two cases: 627 627 628 -1. Periodic allyuplink(Based on TDC time).for the commands above). These are (% style="color:#4f81bd" %)**unconfirmed**(%%) uplinks.661 +1. Periodic uplink: Based on TDC time. The payload is the same as in normal mode (MOD=1 as set above). These are (% style="color:#4f81bd" %)**unconfirmed**(%%) uplinks. 629 629 1. ((( 630 -Trigger uplink when the trigger condition is met. LT will send two packets in this case. The first uplink uses the payload specified in trigger mode (MOD=6). The second packet uses the normal mode payload (MOD=1 as set above). Both are (% style="color:#4f81bd" %)**confirmed uplinks.** 663 +Trigger uplink: sent when a trigger condition is met. In this case, LT will send two packets 664 + 665 +* The first uplink uses the payload specified in trigger mode (MOD=6). 666 +* The second packet uses the normal mode payload (MOD=1 as set above). Both are (% style="color:#4f81bd" %)**confirmed uplinks.** 631 631 ))) 632 632 633 -(% style="color:#037691" %)**AT Commands to set Trigger Condition**: 669 +(% style="color:#037691" %)**AT Commands to set Trigger Conditions**: 634 634 635 635 (% style="color:#4f81bd" %)**Trigger based on voltage**: 636 636 ... ... @@ -639,9 +639,9 @@ 639 639 640 640 **Example:** 641 641 642 -AT+AVLIM=3000,6000,0,2000 678 +AT+AVLIM=3000,6000,0,2000 (triggers an uplink if AVI1 voltage is lower than 3V or higher than 6V, or if AV2 voltage is higher than 2V) 643 643 644 -AT+AVLIM=5000,0,0,0 680 +AT+AVLIM=5000,0,0,0 (triggers an uplink if AVI1 voltage lower than 5V. Use 0 for parameters that are not in use) 645 645 646 646 647 647 (% style="color:#4f81bd" %)**Trigger based on current**: ... ... @@ -651,7 +651,7 @@ 651 651 652 652 **Example:** 653 653 654 -AT+ACLIM=10000,15000,0,0 I1voltage is lower than 10mA or higher than 15mA)690 +AT+ACLIM=10000,15000,0,0 (triggers an uplink if AC1 current is lower than 10mA or higher than 15mA) 655 655 656 656 657 657 (% style="color:#4f81bd" %)**Trigger based on DI status**: ... ... @@ -771,9 +771,9 @@ 771 771 772 772 (% style="color:#4f81bd" %)**TRI_DI FLAG+STA **(%%)is a combination to show which condition is trigger. Totally 1byte as below 773 773 774 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width: 515px" %)775 -|**bit7**|**bit6**|**bit5**|**bit4**|**bit3**|**bit2**|**bit1**|**bit0** 776 -|N/A|N/A|N/A|N/A|DI2_STATUS|DI2_FLAG|DI1_STATUS|DI1_FLAG 810 +(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:674px" %) 811 +|(% style="width:64px" %)**bit 7**|(% style="width:68px" %)**bit 6**|(% style="width:63px" %)**bit 5**|(% style="width:66px" %)**bit 4**|(% style="width:109px" %)**bit 3**|(% style="width:93px" %)**bit 2**|(% style="width:109px" %)**bit 1**|(% style="width:99px" %)**bit 0** 812 +|(% style="width:64px" %)N/A|(% style="width:68px" %)N/A|(% style="width:63px" %)N/A|(% style="width:66px" %)N/A|(% style="width:109px" %)DI2_STATUS|(% style="width:93px" %)DI2_FLAG|(% style="width:109px" %)DI1_STATUS|(% style="width:99px" %)DI1_FLAG 777 777 778 778 * Each bits shows which status has been triggered on this uplink. 779 779 ... ... @@ -828,6 +828,7 @@ 828 828 829 829 These commands are specially designed for the LT-22222-L. Commands can be sent to the device using options such as an AT command or a LoRaWAN downlink payload. 830 830 867 + 831 831 ==== 3.4.2.1 Set Transmit Interval ==== 832 832 833 833 Sets the uplink interval of the device. The default uplink transmission interval is 10 minutes. ... ... @@ -834,11 +834,11 @@ 834 834 835 835 (% style="color:#037691" %)**AT command** 836 836 837 -(% style="width:500px" %) 838 -|Command|AT+TDC<time> 839 -|Response| 840 -|Parameters| <time>uplink interval is in milliseconds841 -|Example|((( 874 +(% border="2" style="width:500px" %) 875 +|**Command**|AT+TDC=<time> 876 +|**Response**| 877 +|**Parameters**|**time** : uplink interval is in milliseconds 878 +|**Example**|((( 842 842 AT+TDC=30000 843 843 844 844 Sets the uplink interval to 30,000 milliseconds (30 seconds) ... ... @@ -846,196 +846,437 @@ 846 846 847 847 (% style="color:#037691" %)**Downlink payload** 848 848 849 -(% style="width:500px" %) 850 -|Payload|((( 886 +(% border="2" style="width:500px" %) 887 +|**Payload**|((( 851 851 <prefix><time> 852 852 ))) 853 -|Parameters|((( 854 - <prefix>0x01890 +|**Parameters**|((( 891 +**prefix** : 0x01 855 855 856 - <time>uplink interval is in milliseconds, represented by 3 bytes in hexadecimal.893 +**time** : uplink interval is in milliseconds, represented by 3 bytes in hexadecimal. 857 857 ))) 858 -|Example|((( 895 +|**Example**|((( 859 859 01 **00 75 30** 860 860 861 861 Sets the uplink interval to 30,000 milliseconds (30 seconds) 862 862 863 -Note: 00 75 30 (hex) = 30000 (dec) 900 +Conversion: 30000 (dec) = 00 75 30 (hex) 901 + 902 +See [[RapidTables>>https://www.rapidtables.com/convert/number/decimal-to-hex.html?x=30000]] 864 864 ))) 865 865 866 -==== 3.4.2.2 Set the Work Mode (AT+MOD) ==== 905 +==== 3.4.2.2 Set the Working Mode (AT+MOD) ==== 867 867 907 +Sets the working mode. 868 868 869 - Setstheworkmode.909 +(% style="color:#037691" %)**AT command** 870 870 871 -* (% style="color:#037691" %)**AT command:**(%%) (% style="color:blue" %)**AT+MOD=N ** 911 +(% border="2" style="width:500px" %) 912 +|(% style="width:97px" %)**Command**|(% style="width:413px" %)AT+MODE=<working_mode> 913 +|(% style="width:97px" %)**Response**|(% style="width:413px" %) 914 +|(% style="width:97px" %)**Parameters**|(% style="width:413px" %)((( 915 +**working_mode** : 872 872 873 - WhereNis theworkmode.917 +1 = (Default mode/factory set): 2ACI + 2AVI + DI + DO + RO 874 874 875 - **Example**:AT+MOD=2.This will set the work mode toDouble DIcountingmode.919 +2 = Double DI Counting + DO + RO 876 876 921 +3 = Single DI Counting + 2 x ACI + DO + RO 877 877 878 - *(% style="color:#037691"%)**Downlinkpayload (prefix0x0A):**923 +4 = Single DI Counting + 1 x Voltage Counting + DO + RO 879 879 880 - (%style="color:blue"%)**0x0Aaa**(%%)****~/~/Sameas AT+MOD=aa925 +5 = Single DI Counting + 2 x AVI + 1 x ACI + DO + RO 881 881 927 +6 = Trigger Mode, Optional, used together with MOD1 ~~ MOD5 928 +))) 929 +|(% style="width:97px" %)**Example**|(% style="width:413px" %)((( 930 +AT+MOD=2 882 882 932 +Sets the device to working mode 2 (Double DI Counting + DO + RO) 933 +))) 883 883 884 -==== 3.4.2.3 Poll an uplink ==== 935 +(% class="wikigeneratedid" %) 936 +(% style="color:#037691" %)**Downlink payload** 885 885 886 -Requests the device to send an uplink. 938 +(% border="2" style="width:500px" %) 939 +|(% style="width:98px" %)**Payload**|(% style="width:400px" %)<prefix><working_mode> 940 +|(% style="width:98px" %)**Parameters**|(% style="width:400px" %)((( 941 +**prefix** : 0x0A 887 887 943 +**working_mode** : Working mode, represented by 1 byte in hexadecimal. 944 +))) 945 +|(% style="width:98px" %)**Example**|(% style="width:400px" %)((( 946 +0A **02** 888 888 889 -* (% style="color:#037691" %)**AT command:**(%%) There is no AT Command to poll uplink 948 +Sets the device to working mode 2 (Double DI Counting + DO + RO) 949 +))) 890 890 891 - *(%style="color:#037691"%)**Downlinkpayload (prefix 0x08):**951 +==== 3.4.2.3 Poll an uplink ==== 892 892 893 - (% style="color:blue"%)**0x08 FF **(%%)** **~/~/ Pollan uplink953 +Requests an uplink from LT-22222-L. 894 894 895 - **Example**:x08FF,askdevice tosendanUplink955 +(% style="color:#037691" %)**AT command** 896 896 957 +There is no AT Command to request an uplink from LT-22222-L 897 897 959 +(% style="color:#037691" %)**Downlink payload** 898 898 961 +(% border="2" style="width:500px" %) 962 +|(% style="width:101px" %)**Payload**|(% style="width:397px" %)<prefix>FF 963 +|(% style="width:101px" %)**Parameters**|(% style="width:397px" %)**prefix** : 0x08 964 +|(% style="width:101px" %)**Example**|(% style="width:397px" %)((( 965 +08 FF 966 + 967 +Requests an uplink from LT-22222-L. 968 +))) 969 + 899 899 ==== 3.4.2.4 Enable/Disable Trigger Mode ==== 900 900 901 -Enable or disable the trigger mode (see also [[ADDMOD6>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]]). 972 +Enable or disable the trigger mode for the current working mode (see also [[ADDMOD6>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]]). 902 902 903 - *(% style="color:#037691" %)**AT Command:**(%%) (% style="color:blue" %)**AT+ADDMOD6=1 or 0**974 +(% style="color:#037691" %)**AT Command** 904 904 905 -(% style="color:red" %)**1:** (%%)Enable the trigger mode 976 +(% border="2" style="width:500px" %) 977 +|(% style="width:95px" %)**Command**|(% style="width:403px" %)AT+ADDMOD6=<enable/disable trigger_mode> 978 +|(% style="width:95px" %)**Response**|(% style="width:403px" %) 979 +|(% style="width:95px" %)**Parameters**|(% style="width:403px" %)((( 980 +**enable/disable trigger_mode** : 906 906 907 - (%style="color:red"%)**0: **(%%)Disable the trigger mode982 +1 = enable trigger mode 908 908 984 +0 = disable trigger mode 985 +))) 986 +|(% style="width:95px" %)**Example**|(% style="width:403px" %)((( 987 +AT+ADDMOD6=1 909 909 910 -* (% style="color:#037691" %)**Downlink Payload (prefix 0x0A 06):** 989 +Enable trigger mode for the current working mode 990 +))) 911 911 912 -(% style="color: blue" %)**0x0A06aa(%%) ~/~/ Same as AT+ADDMOD6=aa992 +(% style="color:#037691" %)**Downlink payload** 913 913 994 +(% border="2" style="width:500px" %) 995 +|(% style="width:97px" %)**Payload**|(% style="width:401px" %)<prefix><enable/disable trigger_mode> 996 +|(% style="width:97px" %)**Parameters**|(% style="width:401px" %)((( 997 +**prefix** : 0x0A 06 (two bytes in hexadecimal) 914 914 999 +**working mode** : enable (1) or disable (0), represented by 1 byte in hexadecimal. 1000 +))) 1001 +|(% style="width:97px" %)**Example**|(% style="width:401px" %)((( 1002 +0A 06 **01** 915 915 1004 +Enable trigger mode for the current working mode 1005 +))) 1006 + 916 916 ==== 3.4.2.5 Poll trigger settings ==== 917 917 918 918 Polls the trigger settings. 919 919 920 - *(% style="color:#037691" %)**AT Command:**1011 +(% style="color:#037691" %)**AT Command:** 921 921 922 922 There is no AT Command for this feature. 923 923 924 - *(% style="color:#037691" %)**Downlink Payload(prefix 0x AB 06):**1015 +(% style="color:#037691" %)**Downlink Payload** 925 925 926 -(% style="color:blue" %)**0xAB 06 ** (%%) ~/~/ Poll the trigger settings. Device will uplink trigger settings once receive this command 1017 +(% border="2" style="width:500px" %) 1018 +|(% style="width:95px" %)**Payload**|(% style="width:403px" %)<prefix> 1019 +|(% style="width:95px" %)**Parameters**|(% style="width:403px" %)**prefix **: AB 06 (two bytes in hexadecimal) 1020 +|(% style="width:95px" %)**Example**|(% style="width:403px" %)((( 1021 +AB 06 927 927 1023 +Uplinks the trigger settings. 1024 +))) 928 928 1026 +==== 3.4.2.6 Enable/Disable DI1/DI2/DI3 as a trigger ==== 929 929 930 - ==== 3.4.2.6Enable/Disable DI1/DI2/DI3 as a trigger====1028 +Enable or disable DI1/DI2/DI3 as a trigger. 931 931 932 - Enableor disableDI1/DI2/DI2asatrigger.1030 +(% style="color:#037691" %)**AT Command** 933 933 934 -* (% style="color:#037691" %)**AT Command:**(%%) (% style="color:blue" %)**Format: AT+DTRI=<DI1_TIRGGER_FlAG>,< DI2_TIRGGER_FlAG >** 1032 +(% border="2" style="width:500px" %) 1033 +|(% style="width:98px" %)**Command**|(% style="width:400px" %)AT+DTRI=<DI1_trigger>,<DI2_trigger> 1034 +|(% style="width:98px" %)**Response**|(% style="width:400px" %) 1035 +|(% style="width:98px" %)**Parameters**|(% style="width:400px" %)((( 1036 +**DI1_trigger:** 935 935 936 - **Example:** AT+DTRI=1,0(Enable DI1 trigger/ disable DI2 trigger)1038 +1 = enable DI1 trigger 937 937 1040 +0 = disable DI1 trigger 938 938 939 -* (% style="color:#037691" %)**DownlinkPayload (prefix 0xAA 02):**1042 +**DI2 _trigger** 940 940 941 - (%style="color:blue"%)**0xAA 02aabb ** (%%) ~/~/ Sameas AT+DTRI=aa,bb1044 +1 = enable DI2 trigger 942 942 1046 +0 = disable DI2 trigger 1047 +))) 1048 +|(% style="width:98px" %)**Example**|(% style="width:400px" %)((( 1049 +AT+DTRI=1,0 943 943 1051 +Enable DI1 trigger, disable DI2 trigger 1052 +))) 944 944 1054 +(% class="wikigeneratedid" %) 1055 +(% style="color:#037691" %)**Downlink Payload** 1056 + 1057 +(% border="2" style="width:500px" %) 1058 +|(% style="width:101px" %)**Payload**|(% style="width:397px" %)<prefix><DI1_trigger><DI2_trigger> 1059 +|(% style="width:101px" %)**Parameters**|(% style="width:397px" %)((( 1060 +**prefix :** AA 02 (two bytes in hexadecimal) 1061 + 1062 +**DI1_trigger:** 1063 + 1064 +1 = enable DI1 trigger, represented by 1 byte in hexadecimal. 1065 + 1066 +0 = disable DI1 trigger, represented by 1 byte in hexadecimal. 1067 + 1068 +**DI2 _trigger** 1069 + 1070 +1 = enable DI2 trigger, represented by 1 byte in hexadecimal. 1071 + 1072 +0 = disable DI2 trigger, represented by 1 byte in hexadecimal. 1073 +))) 1074 +|(% style="width:101px" %)**Example**|(% style="width:397px" %)((( 1075 +AA 02 **01 00** 1076 + 1077 +Enable DI1 trigger, disable DI2 trigger 1078 +))) 1079 + 945 945 ==== 3.4.2.7 Trigger1 – Set DI or DI3 as a trigger ==== 946 946 947 947 Sets DI1 or DI3 (for LT-33222-L) as a trigger. 948 948 949 -* (% style="color:#037691" %)**AT Command:**(%%) (% style="color:blue" %)**AT+TRIG1=a,b** 950 950 951 -(% style="color: red" %)**a:** (%%)Interrupt mode. 0: falling edge; 1: rising edge, 2: falling and raising edge(for MOD=1).1085 +(% style="color:#037691" %)**AT Command** 952 952 953 -(% style="color:red" %)**b :** (%%)delay timing. 1087 +(% border="2" style="width:500px" %) 1088 +|(% style="width:101px" %)**Command**|(% style="width:397px" %)AT+TRIG1=<interrupt_mode>,<minimum_signal_duration> 1089 +|(% style="width:101px" %)**Response**|(% style="width:397px" %) 1090 +|(% style="width:101px" %)**Parameters**|(% style="width:397px" %)((( 1091 +**interrupt_mode** : 0: falling edge; 1: rising edge, 2: falling and raising edge (for MOD=1). 954 954 955 -**Example:** AT+TRIG1=1,100(set DI1 port to trigger on high level, valid signal is 100ms ) 1093 +**minimum_signal_duration** : the **minimum signal duration** required for the DI1 port to recognize a valid trigger. 1094 +))) 1095 +|(% style="width:101px" %)**Example**|(% style="width:397px" %)((( 1096 +AT+TRIG1=1,100 956 956 1098 +Set the DI1 port to trigger on a rising edge; the valid signal duration is 100 ms. 1099 +))) 957 957 958 -* (% style="color:#037691" %)**Downlink Payload (prefix 0x09 01 ):** 1101 +(% class="wikigeneratedid" %) 1102 +(% style="color:#037691" %)**Downlink Payload** 959 959 960 -(% style="color:blue" %)**0x09 01 aa bb cc ** (%%) ~/~/ same as AT+TRIG1=aa,0x(bb cc) 1104 +(% border="2" style="width:500px" %) 1105 +|(% style="width:101px" %)**Payload**|(% style="width:397px" %)<prefix><interrupt_mode><minimum_signal_duration> 1106 +|(% style="width:101px" %)**Parameters**|(% style="width:397px" %)((( 1107 +**prefix** : 09 01 (hexadecimal) 961 961 1109 +**interrupt_mode** : 0: falling edge; 1: rising edge, 2: falling and raising edge (for MOD=1), represented by 1 byte in hexadecimal. 962 962 1111 +**minimum_signal_duration** : in milliseconds, represented two bytes in hexadecimal. 1112 +))) 1113 +|(% style="width:101px" %)**Example**|(% style="width:397px" %)((( 1114 +09 01 **01 00 64** 1115 + 1116 +Set the DI1 port to trigger on a rising edge; the valid signal duration is 100 ms. 1117 +))) 1118 + 963 963 ==== 3.4.2.8 Trigger2 – Set DI2 as a trigger ==== 964 964 965 965 Sets DI2 as a trigger. 966 966 967 -* (% style="color:#037691" %)**AT Command:**(%%) (% style="color:blue" %)**AT+TRIG2=a,b** 968 968 969 -(% style="color: red" %)**a:** (%%)Interrupt mode. 0: falling edge; 1: rising edge, 2: falling and raising edge (for MOD=1).1124 +(% style="color:#037691" %)**AT Command** 970 970 971 -(% style="color:red" %)**b :** (%%)delay timing. 1126 +(% border="2" style="width:500px" %) 1127 +|(% style="width:94px" %)**Command**|(% style="width:404px" %)AT+TRIG2=<interrupt_mode>,<minimum_signal_duration> 1128 +|(% style="width:94px" %)**Response**|(% style="width:404px" %) 1129 +|(% style="width:94px" %)**Parameters**|(% style="width:404px" %)((( 1130 +**interrupt_mode **: 0: falling edge; 1: rising edge, 2: falling and raising edge (for MOD=1). 972 972 973 -**Example:** AT+TRIG2=0,100 (set DI1 port to trigger on low level, valid signal is 100ms ) 1132 +**minimum_signal_duration** : the **minimum signal duration** required for the DI1 port to recognize a valid trigger. 1133 +))) 1134 +|(% style="width:94px" %)**Example**|(% style="width:404px" %)((( 1135 +AT+TRIG2=0,100 974 974 1137 +Set the DI1 port to trigger on a falling edge; the valid signal duration is 100 ms. 1138 +))) 975 975 976 - *(% style="color:#037691" %)**Downlink Payload(prefix 0x09 02 ):**1140 +(% style="color:#037691" %)**Downlink Payload** 977 977 978 -(% style="color:blue" %)**0x09 02 aa bb cc ** (%%)~/~/ same as AT+TRIG2=aa,0x(bb cc) 1142 +(% border="2" style="width:500px" %) 1143 +|(% style="width:96px" %)**Payload**|(% style="width:402px" %)<prefix><interrupt_mode><minimum_signal_duration> 1144 +|(% style="width:96px" %)**Parameters**|(% style="width:402px" %)((( 1145 +**prefix** : 09 02 (hexadecimal) 979 979 1147 +**interrupt_mode **: 0: falling edge; 1: rising edge, 2: falling and raising edge (for MOD=1), represented by 1 byte in hexadecimal. 980 980 1149 +**minimum_signal_duration** : in milliseconds, represented two bytes in hexadecimal 1150 +))) 1151 +|(% style="width:96px" %)**Example**|(% style="width:402px" %)09 02 **00 00 64** 1152 + 1153 +==== ==== 1154 + 981 981 ==== 3.4.2.9 Trigger – Set AC (current) as a trigger ==== 982 982 983 -Sets the current trigger based on the AC port. See [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]] 1157 +Sets the current trigger based on the AC port. See also [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]] 984 984 985 - *(% style="color:#037691" %)**AT Command:**(%%) (% style="color:blue" %)**AT+ACLIM**1159 +(% style="color:#037691" %)**AT Command** 986 986 987 -* (% style="color:#037691" %)**Downlink Payload (prefix 0xAA 01 )** 1161 +(% border="2" style="width:500px" %) 1162 +|(% style="width:104px" %)**Command**|(% style="width:394px" %)((( 1163 +AT+ACLIM=<AC1_LIMIT_LOW>,< AC1_LIMIT_HIGH>,<AC2_LIMIT_LOW>,< AC2_LIMIT_HIGH> 1164 +))) 1165 +|(% style="width:104px" %)**Response**|(% style="width:394px" %) 1166 +|(% style="width:104px" %)**Parameters**|(% style="width:394px" %)((( 1167 +**AC1_LIMIT_LOW** : lower limit of the current to be checked 988 988 989 - (% style="color:blue" %)**0xAA 01 aa bb cc dd ee ff gg hh ** (%%) ~/~/ same as AT+ACLIMSee [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]]1169 +**AC1_LIMIT_HIGH **: higher limit of the current to be checked 990 990 1171 +**AC2_LIMIT_HIGH **: lower limit of the current to be checked 991 991 1173 +**AC2_LIMIT_LOW** : higher limit of the current to be checked 1174 +))) 1175 +|(% style="width:104px" %)**Example**|(% style="width:394px" %)((( 1176 +AT+ACLIM=10000,15000,0,0 992 992 1178 +Triggers an uplink if AC1 current is lower than 10mA or higher than 15mA 1179 +))) 1180 +|(% style="width:104px" %)Note|(% style="width:394px" %)See also, [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]] 1181 + 1182 +(% style="color:#037691" %)**Downlink Payload** 1183 + 1184 +(% border="2" style="width:500px" %) 1185 +|(% style="width:104px" %)**Payload**|(% style="width:394px" %)<prefix><AC1_LIMIT_LOW>,< AC1_LIMIT_HIGH>,<AC2_LIMIT_LOW>,< AC2_LIMIT_HIGH> 1186 +|(% style="width:104px" %)**Parameters**|(% style="width:394px" %)((( 1187 +**prefix **: AA 01 (hexadecimal) 1188 + 1189 +**AC1_LIMIT_LOW** : lower limit of the current to be checked, two bytes in hexadecimal 1190 + 1191 +**AC1_LIMIT_HIGH **: higher limit of the current to be checked, two bytes in hexadecimal 1192 + 1193 +**AC2_LIMIT_HIGH **: lower limit of the current to be checked, two bytes in hexadecimal 1194 + 1195 +**AC2_LIMIT_LOW** : higher limit of the current to be checked, two bytes in hexadecimal 1196 +))) 1197 +|(% style="width:104px" %)**Example**|(% style="width:394px" %)((( 1198 +AA 01 **27** **10 3A** **98** 00 00 00 00 1199 + 1200 +Triggers an uplink if AC1 current is lower than 10mA or higher than 15mA. Set all values to zero for AC2 limits because we are only checking AC1 limits. 1201 +))) 1202 +|(% style="width:104px" %)Note|(% style="width:394px" %)See also, [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]] 1203 + 993 993 ==== 3.4.2.10 Trigger – Set AV (voltage) as trigger ==== 994 994 995 -Sets the current trigger based on the AV port. See [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]] 1206 +Sets the current trigger based on the AV port. See also [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]] 996 996 997 - *(% style="color:#037691" %)**AT Command**(%%): (% style="color:blue" %)**AT+AVLIM **(%%)** See [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]]**1208 +(% style="color:#037691" %)**AT Command** 998 998 999 -* (% style="color:#037691" %)**Downlink Payload (prefix 0xAA 00 )** 1210 +(% border="2" style="width:500px" %) 1211 +|(% style="width:104px" %)**Command**|(% style="width:387px" %)AT+AVLIM= AV1_LIMIT_LOW>,< AV1_LIMIT_HIGH>,<AV2_LIMIT_LOW>,< AV2_LIMIT_HIGH> 1212 +|(% style="width:104px" %)**Response**|(% style="width:387px" %) 1213 +|(% style="width:104px" %)**Parameters**|(% style="width:387px" %)((( 1214 +**AC1_LIMIT_LOW** : lower limit of the current to be checked 1000 1000 1001 - (% style="color:blue" %)**0xAA 00 aa bb cc dd ee ff gg hh ** (%%) ~/~/ same as AT+AVLIMSee[[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]]1216 +**AC1_LIMIT_HIGH **: higher limit of the current to be checked 1002 1002 1218 +**AC2_LIMIT_HIGH **: lower limit of the current to be checked 1003 1003 1004 -==== 3.4.2.11 Trigger – Set minimum interval ==== 1220 +**AC2_LIMIT_LOW** : higher limit of the current to be checked 1221 +))) 1222 +|(% style="width:104px" %)**Example**|(% style="width:387px" %)((( 1223 +AT+AVLIM=3000,6000,0,2000 1005 1005 1006 -Sets AV and AC trigger minimum interval. Device won't response to the second trigger within this set time after the first trigger. 1225 +Triggers an uplink if AVI1 voltage is lower than 3V or higher than 6V, or if AV2 voltage is higher than 2V 1226 +))) 1227 +|(% style="width:104px" %)**Note**|(% style="width:387px" %)See also, [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]] 1007 1007 1008 - *(% style="color:#037691" %)**AT Command**(%%): (% style="color:blue" %)**AT+ATDC=5 ** ~/~/ (%%)Device won't response the second triggerwithin5 minuteafter the first trigger.1229 +(% style="color:#037691" %)**Downlink Payload** 1009 1009 1010 -* (% style="color:#037691" %)**Downlink Payload (prefix 0xAC )** 1231 +(% border="2" style="width:500px" %) 1232 +|(% style="width:104px" %)**Payload**|(% style="width:394px" %)<prefix><AV1_LIMIT_LOW>,< AV1_LIMIT_HIGH>,<AV2_LIMIT_LOW>,< AV2_LIMIT_HIGH> 1233 +|(% style="width:104px" %)**Parameters**|(% style="width:394px" %)((( 1234 +**prefix **: AA 00 (hexadecimal) 1011 1011 1012 - (%style="color:blue"%)**0xACaabb**(%%)~/~/sameasAT+ATDC=0x(aa bb) . Unit (min)1236 +**AV1_LIMIT_LOW** : lower limit of the voltage to be checked, two bytes in hexadecimal 1013 1013 1014 -((( 1015 -(% style="color:red" %)**Note: ATDC setting must be more than 5min** 1238 +**AV1_LIMIT_HIGH **: higher limit of the voltage to be checked, two bytes in hexadecimal 1239 + 1240 +**AV2_LIMIT_HIGH **: lower limit of the voltage to be checked, two bytes in hexadecimal 1241 + 1242 +**AV2_LIMIT_LOW** : higher limit of the voltage to be checked, two bytes in hexadecimal 1016 1016 ))) 1244 +|(% style="width:104px" %)**Example**|(% style="width:394px" %)((( 1245 +AA 00 **0B B8 17 70 00 00 07 D0** 1017 1017 1247 +Triggers an uplink if AVI1 voltage is lower than 3V or higher than 6V, or if AV2 voltage is higher than 2V. 1248 +))) 1249 +|(% style="width:104px" %)**Note**|(% style="width:394px" %)See also, [[trigger mode>>||anchor="H3.3.6AT2BADDMOD3D6.28TriggerMode2COptional29"]] 1018 1018 1251 +==== 3.4.2.11 Trigger – Set minimum interval ==== 1019 1019 1253 +Sets the AV and AC trigger minimum interval. The device won't respond to a second trigger within this set time after the first trigger. 1254 + 1255 +(% style="color:#037691" %)**AT Command** 1256 + 1257 +(% border="2" style="width:500px" %) 1258 +|(% style="width:113px" %)**Command**|(% style="width:385px" %)AT+ATDC=<time> 1259 +|(% style="width:113px" %)**Response**|(% style="width:385px" %) 1260 +|(% style="width:113px" %)**Parameters**|(% style="width:385px" %)((( 1261 +**time** : in minutes 1262 +))) 1263 +|(% style="width:113px" %)**Example**|(% style="width:385px" %)((( 1264 +AT+ATDC=5 1265 + 1266 +The device won't respond to the second trigger within 5 minutes after the first trigger. 1267 +))) 1268 +|(% style="width:113px" %)Note|(% style="width:385px" %)(% style="color:red" %)**The time must be greater than 5 minutes.** 1269 + 1270 +(% style="color:#037691" %)**Downlink Payload** 1271 + 1272 +(% border="2" style="width:500px" %) 1273 +|(% style="width:112px" %)**Payload**|(% style="width:386px" %)<prefix><time> 1274 +|(% style="width:112px" %)**Parameters**|(% style="width:386px" %)((( 1275 +**prefix** : AC (hexadecimal) 1276 + 1277 +**time **: in minutes (two bytes in hexadecimal) 1278 +))) 1279 +|(% style="width:112px" %)**Example**|(% style="width:386px" %)((( 1280 +AC **00 05** 1281 + 1282 +The device won't respond to the second trigger within 5 minutes after the first trigger. 1283 +))) 1284 +|(% style="width:112px" %)Note|(% style="width:386px" %)(% style="color:red" %)**The time must be greater than 5 minutes.** 1285 + 1020 1020 ==== 3.4.2.12 DO ~-~- Control Digital Output DO1/DO2/DO3 ==== 1021 1021 1022 1022 Controls the digital outputs DO1, DO2, and DO3 1023 1023 1024 - *(% style="color:#037691" %)**AT Command**1290 +(% style="color:#037691" %)**AT Command** 1025 1025 1026 -There is no AT Command to control Digital Output 1292 +There is no AT Command to control the Digital Output. 1027 1027 1028 1028 1029 - *(% style="color:#037691" %)**Downlink Payload(prefix 0x02)**1295 +(% style="color:#037691" %)**Downlink Payload** 1030 1030 1031 -(% style="color:blue" %)**0x02 aa bb cc ** (%%)~/~/ Set DO1/DO2/DO3 output 1297 +(% border="2" style="width:500px" %) 1298 +|(% style="width:115px" %)**Payload**|(% style="width:383px" %)<prefix><DO1><DO2><DO3> 1299 +|(% style="width:115px" %)**Parameters**|(% style="width:383px" %)((( 1300 +**prefix** : 02 (hexadecimal) 1032 1032 1033 -((( 1034 -If payload = 0x02010001, while there is load between V+ and DOx, it means set DO1 to low, DO2 to high and DO3 to low. 1302 +**DOI** : 01: Low, 00: High, 11: No action (1 byte in hex) 1303 + 1304 +**DO2** : 01: Low, 00: High, 11: No action (1 byte in hex) 1305 + 1306 +**DO3 **: 01: Low, 00: High, 11: No action (1 byte in hex) 1035 1035 ))) 1308 +|(% style="width:115px" %)**Examples**|(% style="width:383px" %)((( 1309 +02 **01 00 01** 1036 1036 1311 +If there is a load between V+ and DOx, it means DO1 is set to low, DO2 is set to high, and DO3 is set to low. 1312 + 1313 +**More examples:** 1314 + 1037 1037 ((( 1038 -01: Low, 00: High 1316 +01: Low, 00: High, 11: No action 1039 1039 1040 1040 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 1041 1041 |(% style="background-color:#4f81bd; color:white" %)**Downlink Code**|(% style="background-color:#4f81bd; color:white" %)**DO1**|(% style="background-color:#4f81bd; color:white" %)**DO2**|(% style="background-color:#4f81bd; color:white" %)**DO3** ... ... @@ -1045,15 +1045,18 @@ 1045 1045 ))) 1046 1046 1047 1047 ((( 1048 -(% style="color:red" %)**Note: For LT-22222-L, there is no DO3, the last byte can use any value.** 1326 +((( 1327 +(% style="color:red" %)**Note: For the LT-22222-L, there is no DO3; the last byte can have any value.** 1049 1049 ))) 1050 1050 1051 1051 ((( 1052 -(% style="color:red" %)** Device will upload a packet if downlink code executes successfully.**1331 +(% style="color:red" %)**The device will upload a packet if downlink code executes successfully.** 1053 1053 ))) 1333 +))) 1334 +))) 1054 1054 1336 +==== ==== 1055 1055 1056 - 1057 1057 ==== 3.4.2.13 DO ~-~- Control Digital Output DO1/DO2/DO3 with time control ==== 1058 1058 1059 1059 ... ... @@ -1078,7 +1078,7 @@ 1078 1078 00: DO pins will change to an inverter state after timeout 1079 1079 1080 1080 1081 -(% style="color:#4f81bd" %)**Third Byte**(%%): Control Method and Port sstatus:1362 +(% style="color:#4f81bd" %)**Third Byte**(%%): Control Method and Port status: 1082 1082 1083 1083 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:300px" %) 1084 1084 |(% style="background-color:#4f81bd; color:white" %)**Second Byte**|(% style="background-color:#4f81bd; color:white" %)**Status** ... ... @@ -1086,7 +1086,7 @@ 1086 1086 |0x00|DO1 set to high 1087 1087 |0x11|DO1 NO Action 1088 1088 1089 -(% style="color:#4f81bd" %)**Fourth Byte**(%%): Control Method and Port sstatus:1370 +(% style="color:#4f81bd" %)**Fourth Byte**(%%): Control Method and Port status: 1090 1090 1091 1091 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:300px" %) 1092 1092 |(% style="background-color:#4f81bd; color:white" %)**Second Byte**|(% style="background-color:#4f81bd; color:white" %)**Status** ... ... @@ -1094,7 +1094,7 @@ 1094 1094 |0x00|DO2 set to high 1095 1095 |0x11|DO2 NO Action 1096 1096 1097 -(% style="color:#4f81bd" %)**Fifth Byte**(%%): Control Method and Port sstatus:1378 +(% style="color:#4f81bd" %)**Fifth Byte**(%%): Control Method and Port status: 1098 1098 1099 1099 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:300px" %) 1100 1100 |(% style="background-color:#4f81bd; color:white" %)**Second Byte**|(% style="background-color:#4f81bd; color:white" %)**Status** ... ... @@ -1102,16 +1102,16 @@ 1102 1102 |0x00|DO3 set to high 1103 1103 |0x11|DO3 NO Action 1104 1104 1105 -(% style="color:#4f81bd" %)**Sixth andSeventhandEighth and Ninth Byte**:(%%) Latching time.Unit: ms1386 +(% style="color:#4f81bd" %)**Sixth, Seventh, Eighth, and Ninth Bytes**:(%%) Latching time (Unit: ms) 1106 1106 1107 1107 1108 1108 (% style="color:red" %)**Note: ** 1109 1109 1110 - Since Firmware v1.6.0, the latch time support 4 bytes and 2 bytes1391 + Since firmware v1.6.0, the latch time support 4 bytes and 2 bytes 1111 1111 1112 - Before Firmwre v1.6.0 the latch time only suport 2 bytes.1393 + Before firmware v1.6.0, the latch time only supported 2 bytes. 1113 1113 1114 -(% style="color:red" %)**Device will upload a packet if downlink code executes successfully.** 1395 +(% style="color:red" %)**Device will upload a packet if the downlink code executes successfully.** 1115 1115 1116 1116 1117 1117 **Example payload:** ... ... @@ -1118,22 +1118,21 @@ 1118 1118 1119 1119 **~1. A9 01 01 01 01 07 D0** 1120 1120 1121 -DO1 pin &DO2 pin&DO3 pin will be set toLow, last 2 seconds, thenchangebackto original state.1402 +DO1 pin, DO2 pin, and DO3 pin will be set to low, last for 2 seconds, and then revert to their original state. 1122 1122 1123 1123 **2. A9 01 00 01 11 07 D0** 1124 1124 1125 -DO1 pin set high, DO2 pin set low, DO3 pin no action ,last 2 seconds,thenchangebackto original state.1406 +DO1 pin is set to high, DO2 pin is set to low, and DO3 pin takes no action. This lasts for 2 seconds and then reverts to the original state. 1126 1126 1127 1127 **3. A9 00 00 00 00 07 D0** 1128 1128 1129 -DO1 pin &DO2 pin&DO3 pin will be set to high, last 2 seconds, thenbothchange to low.1410 +DO1 pin, DO2 pin, and DO3 pin will be set to high, last for 2 seconds, and then all change to low. 1130 1130 1131 1131 **4. A9 00 11 01 00 07 D0** 1132 1132 1133 -DO1 pin no action, DO2 pin set low, DO3 pin set high ,last 2 seconds, thenDO1 pin no action, DO2 pin set high, DO3 pin set low1414 +DO1 pin takes no action, DO2 pin is set to low, and DO3 pin is set to high. This lasts for 2 seconds, after which DO1 pin takes no action, DO2 pin is set to high, and DO3 pin is set to low. 1134 1134 1135 1135 1136 - 1137 1137 ==== 3.4.2.14 Relay ~-~- Control Relay Output RO1/RO2 ==== 1138 1138 1139 1139 ... ... @@ -1148,11 +1148,11 @@ 1148 1148 1149 1149 1150 1150 ((( 1151 -If payload =0x030100, it means set RO1 to close and RO2 to open.1431 +If payload is 0x030100, it means setting RO1 to close and RO2 to open. 1152 1152 ))) 1153 1153 1154 1154 ((( 1155 -00: Close d, 01: Open , 11: No action1435 +00: Close , 01: Open , 11: No action 1156 1156 1157 1157 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:320px" %) 1158 1158 |(% style="background-color:#4f81bd; color:white" %)**Downlink Code**|(% style="background-color:#4f81bd; color:white" %)**RO1**|(% style="background-color:#4f81bd; color:white" %)**RO2** ... ... @@ -1169,9 +1169,9 @@ 1169 1169 (% style="color:red" %)**Device will upload a packet if downlink code executes successfully.** 1170 1170 1171 1171 1172 - 1173 1173 ==== 3.4.2.15 Relay ~-~- Control Relay Output RO1/RO2 with time control ==== 1174 1174 1454 +Controls the relay output time. 1175 1175 1176 1176 * (% style="color:#037691" %)**AT Command:** 1177 1177 ... ... @@ -1183,15 +1183,15 @@ 1183 1183 (% style="color:blue" %)**0x05 aa bb cc dd ** (%%)~/~/ Set RO1/RO2 relay with time control 1184 1184 1185 1185 1186 -This is to control the relay output time of relay. Include four bytes:1466 +This is to control the relay output time. It includes four bytes: 1187 1187 1188 1188 (% style="color:#4f81bd" %)**First Byte **(%%)**:** Type code (0x05) 1189 1189 1190 1190 (% style="color:#4f81bd" %)**Second Byte(aa)**(%%): Inverter Mode 1191 1191 1192 -01: Relays will change back to original state after timeout. 1472 +01: Relays will change back to their original state after timeout. 1193 1193 1194 -00: Relays will change to aninverter state after timeout1474 +00: Relays will change to the inverter state after timeout. 1195 1195 1196 1196 1197 1197 (% style="color:#4f81bd" %)**Third Byte(bb)**(%%): Control Method and Ports status: ... ... @@ -1204,12 +1204,12 @@ 1204 1204 1205 1205 (% style="color:red" %)**Note:** 1206 1206 1207 - Since Firmware v1.6.0, the latch time support 4 bytes and 2 bytes1487 + Since firmware v1.6.0, the latch time supports both 4 bytes and 2 bytes. 1208 1208 1209 - Before Firmwre v1.6.0 the latch time only suport 2 bytes.1489 + Before firmware v1.6.0, the latch time only supported 2 bytes. 1210 1210 1211 1211 1212 -(% style="color:red" %)**Device will upload a packet if downlink code executes successfully.** 1492 +(% style="color:red" %)**Device will upload a packet if the downlink code executes successfully.** 1213 1213 1214 1214 1215 1215 **Example payload:** ... ... @@ -1216,19 +1216,19 @@ 1216 1216 1217 1217 **~1. 05 01 11 07 D0** 1218 1218 1219 -Relay1 and Relay changebackto original state.1499 +Relay1 and Relay2 will be set to NC, lasting 2 seconds, then revert to their original state 1220 1220 1221 1221 **2. 05 01 10 07 D0** 1222 1222 1223 -Relay1 will change to NC, Relay2 will change to NO, last 2 seconds, then both changebackto original state.1503 +Relay1 will change to NC, Relay2 will change to NO, lasting 2 seconds, then both will revert to their original state. 1224 1224 1225 1225 **3. 05 00 01 07 D0** 1226 1226 1227 -Relay1 will change to NO, Relay2 will change to NC, last 2 seconds, then relay change to NC,Relay2 change to NO.1507 +Relay1 will change to NO, Relay2 will change to NC, lasting 2 seconds, then Relay1 will change to NC, and Relay2 will change to NO. 1228 1228 1229 1229 **4. 05 00 00 07 D0** 1230 1230 1231 -Relay &relay2 will change to NO, last 2 seconds, then both change to NC.1511 +Relay1 and Relay2 will change to NO, lasting 2 seconds, then both will change to NC. 1232 1232 1233 1233 1234 1234 ... ... @@ -1235,7 +1235,7 @@ 1235 1235 ==== 3.4.2.16 Counting ~-~- Voltage threshold counting ==== 1236 1236 1237 1237 1238 -When voltage exceed the threshold, count. F eature see [[MOD4>>||anchor="H3.3.4AT2BMOD3D42CSingleDICounting2B1xVoltageCounting"]]1518 +When the voltage exceeds the threshold, counting begins. For details, see [[MOD4>>||anchor="H3.3.4AT2BMOD3D42CSingleDICounting2B1xVoltageCounting"]] 1239 1239 1240 1240 * (% style="color:#037691" %)**AT Command:**(%%) (% style="color:blue" %)**AT+VOLMAX ** (%%)~/~/ See [[MOD4>>||anchor="H3.3.4AT2BMOD3D42CSingleDICounting2B1xVoltageCounting"]] 1241 1241 ... ... @@ -1244,15 +1244,76 @@ 1244 1244 (% style="color:blue" %)**0xA5 aa bb cc ** (%%)~/~/ Same as AT+VOLMAX=(aa bb),cc 1245 1245 1246 1246 1527 +(% style="color:#037691" %)**AT Command** 1247 1247 1529 +(% border="2" style="width:500px" %) 1530 +|(% style="width:137px" %)**Command**|(% style="width:361px" %)AT+VOLMAX=<voltage><logic> 1531 +|(% style="width:137px" %)**Response**|(% style="width:361px" %) 1532 +|(% style="width:137px" %)**Parameters**|(% style="width:361px" %)((( 1533 +**voltage** : voltage threshold in mV 1534 + 1535 +**logic**: 1536 + 1537 +0 : lower than 1538 + 1539 +1: higher than 1540 + 1541 +if you leave logic parameter blank, it is considered 0 1542 +))) 1543 +|(% style="width:137px" %)**Examples**|(% style="width:361px" %)((( 1544 +AT+VOLMAX=20000 1545 + 1546 +If AVI1 voltage higher than VOLMAX (20000mV =20v), counter increase 1 1547 + 1548 +AT+VOLMAX=20000,0 1549 + 1550 +If AVI1 voltage lower than VOLMAX (20000mV =20v), counter increase 1 1551 + 1552 +AT+VOLMAX=20000,1 1553 + 1554 +If AVI1 voltage higher than VOLMAX (20000mV =20v), counter increase 1 1555 +))) 1556 + 1557 +(% style="color:#037691" %)**Downlink Payload** 1558 + 1559 +(% border="2" style="width:500px" %) 1560 +|(% style="width:140px" %)**Payload**|(% style="width:358px" %)<prefix><voltage><logic> 1561 +|(% style="width:140px" %)**Parameters**|(% style="width:358px" %)((( 1562 +**prefix** : A5 (hex) 1563 + 1564 +**voltage** : voltage threshold in mV (2 bytes in hex) 1565 + 1566 +**logic**: (1 byte in hexadecimal) 1567 + 1568 +0 : lower than 1569 + 1570 +1: higher than 1571 + 1572 +if you leave logic parameter blank, it is considered 1 (higher than) 1573 +))) 1574 +|(% style="width:140px" %)**Example**|(% style="width:358px" %)((( 1575 +A5 **4E 20** 1576 + 1577 +If AVI1 voltage higher than VOLMAX (20000mV =20v), counter increase 1 1578 + 1579 +A5 **4E 20 00** 1580 + 1581 +If AVI1 voltage lower than VOLMAX (20000mV =20v), counter increase 1 1582 + 1583 +A5 **4E 20 01** 1584 + 1585 +If AVI1 voltage higher than VOLMAX (20000mV =20v), counter increase 1 1586 +))) 1587 + 1248 1248 ==== 3.4.2.17 Counting ~-~- Pre-configure the Count Number ==== 1249 1249 1590 +This feature allows users to pre-configure specific count numbers for various counting parameters such as Count1, Count2, or AVI1 Count. Use the AT command to set the desired count number for each configuration. 1250 1250 1251 1251 * (% style="color:#037691" %)**AT Command:**(%%) (% style="color:blue" %)**AT+SETCNT=aa,(bb cc dd ee) ** 1252 1252 1253 1253 (% style="color:red" %)**aa:**(%%) 1: Set count1; 2: Set count2; 3: Set AV1 count 1254 1254 1255 -(% style="color:red" %)**bb cc dd ee: **(%%)number to be set 1596 +(% style="color:red" %)**bb cc dd ee: **(%%)The number to be set 1256 1256 1257 1257 1258 1258 * (% style="color:#037691" %)**Downlink Payload (prefix 0xA8):** ... ... @@ -1260,12 +1260,55 @@ 1260 1260 (% style="color:blue" %)**0x A8 aa bb cc dd ee ** (%%)~/~/ same as AT+SETCNT=aa,(bb cc dd ee) 1261 1261 1262 1262 1604 +(% style="color:#037691" %)**AT Command** 1263 1263 1264 -==== 3.4.2.18 Counting ~-~- Clear Counting ==== 1606 +(% border="2" style="width:500px" %) 1607 +|(% style="width:134px" %)**Command**|(% style="width:364px" %)AT+SETCNT=<counting_parameter><number> 1608 +|(% style="width:134px" %)**Response**|(% style="width:364px" %) 1609 +|(% style="width:134px" %)**Parameters**|(% style="width:364px" %)((( 1610 +**counting_parameter** : 1265 1265 1612 +1: COUNT1 1266 1266 1267 - Clearcounting for counting mode1614 +2: COUNT2 1268 1268 1616 +3: AVI1 Count 1617 + 1618 +**number** : Start number 1619 +))) 1620 +|(% style="width:134px" %)**Example**|(% style="width:364px" %)((( 1621 +AT+SETCNT=1,10 1622 + 1623 +Sets the COUNT1 to 10. 1624 +))) 1625 + 1626 +(% style="color:#037691" %)**Downlink Payload** 1627 + 1628 +(% border="2" style="width:500px" %) 1629 +|(% style="width:135px" %)**Payload**|(% style="width:363px" %)<prefix><counting_parameter><number> 1630 +|(% style="width:135px" %)**Parameters**|(% style="width:363px" %)((( 1631 +prefix : A8 (hex) 1632 + 1633 +**counting_parameter** : (1 byte in hexadecimal) 1634 + 1635 +1: COUNT1 1636 + 1637 +2: COUNT2 1638 + 1639 +3: AVI1 Count 1640 + 1641 +**number** : Start number, 4 bytes in hexadecimal 1642 +))) 1643 +|(% style="width:135px" %)**Example**|(% style="width:363px" %)((( 1644 +A8 **01 00 00 00 0A** 1645 + 1646 +Sets the COUNT1 to 10. 1647 +))) 1648 + 1649 +==== 3.4.2.18 Counting ~-~- Clear Counting ==== 1650 + 1651 +This feature clears the counting in counting mode. 1652 + 1269 1269 * (% style="color:#037691" %)**AT Command:**(%%) (% style="color:blue" %)**AT+CLRCOUNT **(%%) ~/~/ clear all counting 1270 1270 1271 1271 * (% style="color:#037691" %)**Downlink Payload (prefix 0xA6):** ... ... @@ -1272,14 +1272,30 @@ 1272 1272 1273 1273 (% style="color:blue" %)**0x A6 01 ** (%%)~/~/ clear all counting 1274 1274 1659 +(% style="color:#037691" %)**AT Command** 1275 1275 1661 +(% border="2" style="width:500px" %) 1662 +|(% style="width:142px" %)**Command**|(% style="width:356px" %)AT+CLRCOUNT 1663 +|(% style="width:142px" %)**Response**|(% style="width:356px" %)- 1276 1276 1665 +(% style="color:#037691" %)**Downlink Payload** 1666 + 1667 +(% border="2" style="width:500px" %) 1668 +|(% style="width:141px" %)**Payload**|(% style="width:357px" %)<prefix><clear?> 1669 +|(% style="width:141px" %)**Parameters**|(% style="width:357px" %)((( 1670 +prefix : A6 (hex) 1671 + 1672 +clear? : 01 (hex) 1673 +))) 1674 +|(% style="width:141px" %)**Example**|(% style="width:357px" %)A6 **01** 1675 + 1277 1277 ==== 3.4.2.19 Counting ~-~- Change counting mode to save time ==== 1278 1278 1678 +This feature allows you to configure the device to save its counting result to internal flash memory at specified intervals. By setting a save time, the device will periodically store the counting data to prevent loss in case of power failure. The save interval can be adjusted to suit your requirements, with a minimum value of 30 seconds. 1279 1279 1280 1280 * (% style="color:#037691" %)**AT Command:** 1281 1281 1282 -(% style="color:blue" %)**AT+COUTIME=60 **(%%)~/~/ Device will save the counting result in internal flash every 60 seconds. (min value: 30)1682 +(% style="color:blue" %)**AT+COUTIME=60 **(%%)~/~/ Sets the save time to 60 seconds. The device will save the counting result in internal flash every 60 seconds. (Min value: 30 seconds) 1283 1283 1284 1284 1285 1285 * (% style="color:#037691" %)**Downlink Payload (prefix 0xA7):** ... ... @@ -1287,7 +1287,7 @@ 1287 1287 (% style="color:blue" %)**0x A7 aa bb cc ** (%%)~/~/ same as AT+COUTIME =aa bb cc, 1288 1288 1289 1289 ((( 1290 - range: aa bb cc:0 to 16777215, (unit:second)1690 +Range: aa bb cc:0 to 16777215, (unit: seconds) 1291 1291 ))) 1292 1292 1293 1293 ... ... @@ -1294,12 +1294,13 @@ 1294 1294 1295 1295 ==== 3.4.2.20 Reset save RO DO state ==== 1296 1296 1697 +This feature allows you to reset the saved relay output (RO) and digital output (DO) states when the device joins the network. By configuring this setting, you can control whether the device should retain or reset the relay states after a reset and rejoin to the network. 1297 1297 1298 1298 * (% style="color:#037691" %)**AT Command:** 1299 1299 1300 1300 (% style="color:blue" %)**AT+RODORESET=1 **(%%)~/~/ RODO will close when the device joining the network. (default) 1301 1301 1302 -(% style="color:blue" %)**AT+RODORESET=0 **(%%)~/~/ After the device is reset, the previously saved RODO state (only MOD2 to MOD5) is read, and its state i snot changedwhenit isreconnectedto the network.1703 +(% style="color:blue" %)**AT+RODORESET=0 **(%%)~/~/ After the device is reset, the previously saved RODO state (only MOD2 to MOD5) is read, and its state will not change when the device reconnects to the network. 1303 1303 1304 1304 1305 1305 * (% style="color:#037691" %)**Downlink Payload (prefix 0xAD):** ... ... @@ -1310,6 +1310,7 @@ 1310 1310 1311 1311 ==== 3.4.2.21 Encrypted payload ==== 1312 1312 1714 +This feature allows you to configure whether the device should upload data in an encrypted format or in plaintext. By default, the device encrypts the payload before uploading. You can toggle this setting to either upload encrypted data or transmit it without encryption. 1313 1313 1314 1314 * (% style="color:#037691" %)**AT Command:** 1315 1315 ... ... @@ -1324,9 +1324,9 @@ 1324 1324 1325 1325 * (% style="color:#037691" %)**AT Command:** 1326 1326 1327 -(% style="color:blue" %)**AT+GETSENSORVALUE=0 **(%%)~/~/ The serial port gets the reading of the current sensor1729 +(% style="color:blue" %)**AT+GETSENSORVALUE=0 **(%%)~/~/ The serial port retrieves the reading of the current sensor. 1328 1328 1329 -(% style="color:blue" %)**AT+GETSENSORVALUE=1 **(%%)~/~/ The serial port gets the current sensor reading and uploads it.1731 +(% style="color:blue" %)**AT+GETSENSORVALUE=1 **(%%)~/~/ The serial port retrieves the current sensor reading and uploads it. 1330 1330 1331 1331 1332 1332 ... ... @@ -1481,7 +1481,7 @@ 1481 1481 [[image:thingseye.io_integrationsCenter_integrations.png||height="686" width="1000"]] 1482 1482 1483 1483 1484 - **Viewing integration details**:1886 +==== 3.5.2.1 Viewing integration details ==== 1485 1485 1486 1486 Click on your integration from the list. The **Integration details** window will appear with the **Details **tab selected. The **Details **tab shows all the settings you have provided for this integration. 1487 1487 ... ... @@ -1494,7 +1494,7 @@ 1494 1494 See also ThingsEye documentation. 1495 1495 {{/info}} 1496 1496 1497 -**Viewing events :**1899 +==== **3.5.2.2 Viewing events** ==== 1498 1498 1499 1499 The **Events **tab displays all the uplink messages from the LT-22222-L. 1500 1500 ... ... @@ -1509,22 +1509,22 @@ 1509 1509 [[image:thingseye-json.png||width="1000"]] 1510 1510 1511 1511 1512 -**Deleting theintegration**:1914 +==== **3.5.2.3 Deleting an integration** ==== 1513 1513 1514 -If you want to delete thisintegration, click the **Delete integratio**n button.1916 +If you want to delete an integration, click the **Delete integratio**n button on the Integrations page. 1515 1515 1516 1516 1517 1517 == 3.6 Interface Details == 1518 1518 1519 -=== 3.6.1 Digital Input Port: DI1/DI2 lowactive1921 +=== 3.6.1 Digital Input Ports: DI1/DI2/DI3 (For LT-33222-L, Low Active) === 1520 1520 1521 1521 1522 -Support NPN-type sensor 1924 +Supports NPN-type sensors. 1523 1523 1524 1524 [[image:1653356991268-289.png]] 1525 1525 1526 1526 1527 -=== 3.6.2 Digital Input Ports: DI1/DI2 ( For LT-22222-L)===1929 +=== 3.6.2 Digital Input Ports: DI1/DI2 === 1528 1528 1529 1529 1530 1530 ((( ... ... @@ -1654,7 +1654,7 @@ 1654 1654 [[image:image-20240219115718-1.png]] 1655 1655 1656 1656 1657 -=== 3.6.3 Digital Output Ports: DO1/DO2 /DO3===2059 +=== 3.6.3 Digital Output Ports: DO1/DO2 === 1658 1658 1659 1659 1660 1660 (% style="color:blue" %)**NPN output**(%%): GND or Float. The maximum voltage that can be applied to the output pin is 36V. ... ... @@ -1727,10 +1727,11 @@ 1727 1727 1728 1728 == 3.7 LEDs Indicators == 1729 1729 2132 +The table below lists the behavior of LED indicators for each port function. 1730 1730 1731 1731 (% border="1" cellspacing="3" style="background-color:#f2f2f2; width:510px" %) 1732 1732 |(% style="background-color:#4f81bd; color:white; width:50px" %)**LEDs**|(% style="background-color:#4f81bd; color:white; width:460px" %)**Feature** 1733 -|**PWR**|Always on ifthere is power2136 +|**PWR**|Always on when there is power 1734 1734 |**TX**|((( 1735 1735 ((( 1736 1736 Device boot: TX blinks 5 times. ... ... @@ -1737,7 +1737,7 @@ 1737 1737 ))) 1738 1738 1739 1739 ((( 1740 -Successful joinnetwork: TX ON for 5 seconds.2143 +Successful network join: TX remains ON for 5 seconds. 1741 1741 ))) 1742 1742 1743 1743 ((( ... ... @@ -1744,7 +1744,7 @@ 1744 1744 Transmit a LoRa packet: TX blinks once 1745 1745 ))) 1746 1746 ))) 1747 -|**RX**|RX blinks once when receivinga packet.2150 +|**RX**|RX blinks once when a packet is received. 1748 1748 |**DO1**|For LT-22222-L: ON when DO1 is low, OFF when DO1 is high 1749 1749 |**DO2**|For LT-22222-L: ON when DO2 is low, OFF when DO2 is high 1750 1750 |**DI1**|((( ... ... @@ -1764,9 +1764,10 @@ 1764 1764 1765 1765 ((( 1766 1766 You can use a USB-to-TTL adapter along with a 3.5mm Program Cable to connect the LT-22222-L to a PC, as shown below. 2170 + 2171 +[[image:usb-ttl-programming.png]] 1767 1767 ))) 1768 1768 1769 -[[image:1653358238933-385.png]] 1770 1770 1771 1771 1772 1772 ((( ... ... @@ -1783,21 +1783,21 @@ 1783 1783 ))) 1784 1784 1785 1785 ((( 1786 -The following is the list of all the AT commands related to the LT-22222-L, except for those used for switching between work modes. 2190 +The following is the list of all the AT commands related to the LT-22222-L, except for those used for switching between working modes. 1787 1787 1788 -* AT+<CMD>? : Help on <CMD> 1789 -* AT+<CMD> : Run <CMD> 1790 -* AT+<CMD>=<value> : Set the value 1791 -* AT+<CMD>=? : Get the value 1792 -* ATZ: Trigger a reset of the MCU 2192 +* **##AT##+<CMD>?** : Help on <CMD> 2193 +* **##AT##+<CMD>** : Run <CMD> 2194 +* **##AT##+<CMD>=<value>** : Set the value 2195 +* **##AT##+<CMD>=?** : Get the value 2196 +* ##**ATZ**##: Trigger a reset of the MCU 1793 1793 * ##**AT+FDR**##: Reset Parameters to factory default, reserve keys 1794 1794 * **##AT+DEUI##**: Get or set the Device EUI (DevEUI) 1795 1795 * **##AT+DADDR##**: Get or set the Device Address (DevAddr) 1796 1796 * **##AT+APPKEY##**: Get or set the Application Key (AppKey) 1797 -* AT+NWKSKEY: Get or set the Network Session Key (NwkSKey) 1798 -* AT+APPSKEY: Get or set the Application Session Key (AppSKey) 1799 -* AT+APPEUI: Get or set the Application EUI (AppEUI) 1800 -* AT+ADR: Get or set the Adaptive Data Rate setting. (0: OFF, 1: ON) 2201 +* ##**AT+NWKSKEY**##: Get or set the Network Session Key (NwkSKey) 2202 +* **##AT+APPSKEY##**: Get or set the Application Session Key (AppSKey) 2203 +* **##AT+APPEUI##**: Get or set the Application EUI (AppEUI) 2204 +* **##AT+ADR##**: Get or set the Adaptive Data Rate setting. (0: OFF, 1: ON) 1801 1801 * AT+TXP: Get or set the Transmit Power (0-5, MAX:0, MIN:5, according to LoRaWAN Specification) 1802 1802 * AT+DR: Get or set the Data Rate. (0-7 corresponding to DR_X) 1803 1803 * AT+DCS: Get or set the ETSI Duty Cycle setting - 0=disable, 1=enable - Only for testing ... ... @@ -1842,28 +1842,28 @@ 1842 1842 1843 1843 1844 1844 ((( 1845 -(% style="color:blue" %)**If the device has not joined the network yet:**2249 +(% style="color:blue" %)**If the device has not yet joined the network:** 1846 1846 ))) 1847 1847 ))) 1848 1848 1849 1849 ((( 1850 -(% style="background-color:#dcdcdc" %)##**123456 ~/~/enable AT commands access**## 2254 +(% style="background-color:#dcdcdc" %)##**123456 ~/~/Enter the password to enable AT commands access**## 1851 1851 ))) 1852 1852 1853 1853 ((( 1854 -(% style="background-color:#dcdcdc" %)##**AT+FDR ~/~/ reset parameters to factory default,reserve keys**##2258 +(% style="background-color:#dcdcdc" %)##**AT+FDR ~/~/Reset parameters to factory default, Reserve keys**## 1855 1855 ))) 1856 1856 1857 1857 ((( 1858 -(% style="background-color:#dcdcdc" %)##**123456 ~/~/enable AT commands access**## 2262 +(% style="background-color:#dcdcdc" %)##**123456 ~/~/Enter the password to enable AT commands access**## 1859 1859 ))) 1860 1860 1861 1861 ((( 1862 -(% style="background-color:#dcdcdc" %)##**AT+NJM=0 ~/~/ set to ABP mode**##2266 +(% style="background-color:#dcdcdc" %)##**AT+NJM=0 ~/~/Set to ABP mode**## 1863 1863 ))) 1864 1864 1865 1865 ((( 1866 -(% style="background-color:#dcdcdc" %)##**ATZ ~/~/ reset MCU**##2270 +(% style="background-color:#dcdcdc" %)##**ATZ ~/~/Reset MCU**## 1867 1867 ))) 1868 1868 1869 1869 ... ... @@ -1886,20 +1886,20 @@ 1886 1886 1887 1887 1888 1888 ((( 1889 -(% style="background-color:#dcdcdc" %)**123456**(%%) ~/~/ Enter Password tohave AT access.2293 +(% style="background-color:#dcdcdc" %)**123456**(%%) ~/~/ Enter password to enable AT commands access 1890 1890 ))) 1891 1891 ))) 1892 1892 1893 1893 ((( 1894 -(% style="background-color:#dcdcdc" %)** AT+FDR**(%%) ~/~/ Reset Parameters to Factory Default,KeysReserve2298 +(% style="background-color:#dcdcdc" %)** AT+FDR**(%%) ~/~/ Reset parameters to Factory Default, Reserve keys 1895 1895 ))) 1896 1896 1897 1897 ((( 1898 -(% style="background-color:#dcdcdc" %)** 123456**(%%) ~/~/ Enter Password tohave AT access.2302 +(% style="background-color:#dcdcdc" %)** 123456**(%%) ~/~/ Enter password to enable AT commands access 1899 1899 ))) 1900 1900 1901 1901 ((( 1902 -(% style="background-color:#dcdcdc" %)** AT+CLASS=C**(%%) ~/~/ Set to work inCLASS C2306 +(% style="background-color:#dcdcdc" %)** AT+CLASS=C**(%%) ~/~/ Set to CLASS C mode 1903 1903 ))) 1904 1904 1905 1905 ((( ... ... @@ -1919,19 +1919,19 @@ 1919 1919 ))) 1920 1920 1921 1921 ((( 1922 -(% style="background-color:#dcdcdc" %)** AT+CHS=868400000**(%%) ~/~/ Set transmit frequency to 868.4M hz2326 +(% style="background-color:#dcdcdc" %)** AT+CHS=868400000**(%%) ~/~/ Set transmit frequency to 868.4 MHz 1923 1923 ))) 1924 1924 1925 1925 ((( 1926 -(% style="background-color:#dcdcdc" %)** AT+RX2FQ=868400000**(%%) ~/~/ Set RX2 Frequency to 868.4Mhz (according to the result from server)2330 +(% style="background-color:#dcdcdc" %)** AT+RX2FQ=868400000**(%%) ~/~/ Set RX2 frequency to 868.4 MHz (according to the result from the server) 1927 1927 ))) 1928 1928 1929 1929 ((( 1930 -(% style="background-color:#dcdcdc" %)** AT+RX2DR=5**(%%)** ** ~/~/ Set RX2DR to match the downlink DR from server. see below2334 +(% style="background-color:#dcdcdc" %)** AT+RX2DR=5**(%%)** ** ~/~/ Set RX2 DR to match the downlink DR from the server. See below. 1931 1931 ))) 1932 1932 1933 1933 ((( 1934 -(% style="background-color:#dcdcdc" %)** AT+DADDR=26 01 1A F1** (%%) ~/~/ Set Device Address to2601 1AF1, thisIDcan be found in theLoRaServerportal.2338 +(% style="background-color:#dcdcdc" %)** AT+DADDR=26 01 1A F1** (%%) ~/~/ Set Device Address. The Device Address can be found in the application on the LoRaWAN NS. 1935 1935 ))) 1936 1936 1937 1937 ((( ... ... @@ -1945,14 +1945,14 @@ 1945 1945 ))) 1946 1946 1947 1947 ((( 1948 -**~1. Makesure the device is set to ABP mode in theIoTServer.**2352 +**~1. Ensure that the device is set to ABP mode in the LoRaWAN Network Server.** 1949 1949 1950 -**2. Makesurethe LG01/02 gateway RX frequencyis exactlythesame asAT+CHS setting.**2354 +**2. Verify that the LG01/02 gateway RX frequency matches the AT+CHS setting exactly.** 1951 1951 1952 -**3. Make sure SF refer [[this link>>url:http://www.dragino.com/downloads/index.php?2356 +**3. Make sure the SF/bandwidth settings in the LG01/LG02 match the settings of AT+DR. Refer to [[this link>>url:http://www.dragino.com/downloads/index.php? 1953 1953 dir=LoRa_Gateway/&file=LoRaWAN%201.0.3%20Regional%20Parameters.xlsx]] to see what DR means.** 1954 1954 1955 -**4. The command AT+RX2FQ and AT+RX2DR is toletdownlinkwork.to set the correct parameters, usercan check the actuallydownlink parameters to be used.As below.Which shows the RX2FQ shoulduse 868400000 and RX2DR should be 5.**2359 +**4. The commands AT+RX2FQ and AT+RX2DR enable downlink functionality. To set the correct parameters, you can check the actual downlink parameters to be used as shown below. Here, RX2FQ should be set to 868400000 and RX2DR should be set to 5.** 1956 1956 ))) 1957 1957 1958 1958 ((( ... ... @@ -1964,7 +1964,7 @@ 1964 1964 1965 1965 1966 1966 ((( 1967 -(% style="color:blue" %)**If sensor JOINED:** 2371 +(% style="color:blue" %)**If the sensor has JOINED:** 1968 1968 1969 1969 (% style="background-color:#dcdcdc" %)**AT+CLASS=A** 1970 1970 ... ... @@ -1974,22 +1974,20 @@ 1974 1974 1975 1975 = 5. Case Study = 1976 1976 1977 -== 5.1 Counting how many objects pass through the flow Line ==2381 +== 5.1 Counting how many objects pass through the flow line == 1978 1978 2383 +See [[How to set up to setup counting for objects passing through the flow line>>How to set up to count objects pass in flow line]]? 1979 1979 1980 -Reference Link: [[How to set up to setup counting for objects passing through the flow line>>How to set up to count objects pass in flow line]]? 1981 1981 1982 - 1983 1983 = 6. FAQ = 1984 1984 1985 1985 This section contains some frequently asked questions, which can help you resolve common issues and find solutions quickly. 1986 1986 2390 + 1987 1987 == 6.1 How to update the firmware? == 1988 1988 1989 -Dragino frequently releases firmware updates for the LT-22222-L. 2393 +Dragino frequently releases firmware updates for the LT-22222-L. Updating your LT-22222-L with the latest firmware version helps to: 1990 1990 1991 -Updating your LT-22222-L with the latest firmware version helps to: 1992 - 1993 1993 * Support new features 1994 1994 * Fix bugs 1995 1995 * Change LoRaWAN frequency bands ... ... @@ -2007,8 +2007,8 @@ 2007 2007 2008 2008 Below is the hardware setup for uploading a firmware image to the LT-22222-L: 2009 2009 2412 +[[image:usb-ttl-programming.png]] 2010 2010 2011 -[[image:1653359603330-121.png]] 2012 2012 2013 2013 2014 2014 Start the STM32 Flash Loader and choose the correct COM port to update. ... ... @@ -2032,7 +2032,7 @@ 2032 2032 [[image:image-20220524104033-15.png]] 2033 2033 2034 2034 2035 -(% style="color:red" %)**Note**(%%): If you have lost the programming cable, you can make one from a 3.5mm cable. The pin mapping is as follows: 2437 +(% style="color:red" %)**Note**(%%): If you have lost the programming cable, you can make one from a 3.5 mm cable. The pin mapping is as follows: 2036 2036 2037 2037 [[image:1653360054704-518.png||height="186" width="745"]] 2038 2038 ... ... @@ -2040,8 +2040,6 @@ 2040 2040 ((( 2041 2041 ((( 2042 2042 == 6.2 How to change the LoRaWAN frequency band/region? == 2043 - 2044 - 2045 2045 ))) 2046 2046 ))) 2047 2047 ... ... @@ -2052,20 +2052,18 @@ 2052 2052 ((( 2053 2053 2054 2054 2055 -== 6.3 How to setup LT to work with a Single Channel Gateway, such as LG01/LG02? == 2056 - 2057 - 2455 +== 6.3 How to setup LT-22222-L to work with a Single Channel Gateway, such as LG01/LG02? == 2058 2058 ))) 2059 2059 2060 2060 ((( 2061 2061 ((( 2062 -In this case, you need to set the LT- 33222-L to work in ABP mode and transmit on only one frequency.2460 +In this case, you need to set the LT-22222-L to work in ABP mode and transmit on only one frequency. 2063 2063 ))) 2064 2064 ))) 2065 2065 2066 2066 ((( 2067 2067 ((( 2068 - Assume you have an LG02 working on the frequency 868400000. Below are the steps.2466 +We assume you have an LG01/LG02 working on the frequency 868400000. Below are the steps. 2069 2069 2070 2070 2071 2071 ))) ... ... @@ -2072,52 +2072,55 @@ 2072 2072 ))) 2073 2073 2074 2074 ((( 2075 -(% style="color:#0000ff" %)**Step 1**(%%): ANDBOX,create an ABP device in the application, andinput theNetworkSession key(NwkSKey), Appsessionkey (AppSKey)ofthedevice.2473 +(% style="color:#0000ff" %)**Step 1**(%%): Log in to The Things Stack Sandbox account and create an ABP device in the application. To do this, use the manual registration option as explained in section 3.2.2.2, //Adding a Device Manually//. Select //Activation by Personalization (ABP)// under Activation Mode. Enter the DevEUI exactly as shown on the registration information sticker, then generate the Device Address, Application Session Key (AppSKey), and Network Session Key (NwkSKey). 2076 2076 2077 - 2475 +[[image:lt-22222-l-abp.png||height="686" width="1000"]] 2078 2078 ))) 2079 2079 2080 2080 ((( 2081 -[[image:1653360231087-571.png||height="401" width="727"]] 2082 - 2083 2083 2084 2084 ))) 2085 2085 2086 - (((2087 - (%style="color:red"%)**Note:userjustneed tomakeureabove threekeysmatch,Usercanchange either in TTNorDeviceto make thenmatch. In TTN,NETSKEY andAPPSKEYcanbeconfiguredbyuserin setting page, but Device Addr is generated by TTN.**2088 - )))2482 +{{warning}} 2483 +Ensure that the Device Address (DevAddr) and the two keys match between the LT-22222-L and The Things Stack. You can modify them either in The Things Stack or on the LT-22222-L to make them align. In The Things Stack, you can configure the NwkSKey and AppSKey on the settings page, but note that the Device Address is generated by The Things Stack. 2484 +{{/warning}} 2089 2089 2090 2090 2091 - 2092 2092 ((( 2093 -(% style="color:blue" %)**Step2**(%%)**: **Run AT Command tomake LTworkinSingle&ABP mode.Below is the AT commands:2488 +(% style="color:blue" %)**Step 2**(%%)**: **(% style="color:#000000; font-family:Arial,sans-serif; font-size:11pt; font-style:normal; font-variant-alternates:normal; font-variant-east-asian:normal; font-variant-ligatures:normal; font-variant-numeric:normal; font-variant-position:normal; font-weight:400; text-decoration:none; white-space:pre-wrap" %)Run AT commands to configure the LT-22222-L to operate in single-frequency and ABP mode. The AT commands are as follows: 2094 2094 2095 2095 2096 2096 ))) 2097 2097 2098 2098 ((( 2099 -(% style="background-color:#dcdcdc" %)**123456** (%%) Password tohave AT access.2494 +(% style="background-color:#dcdcdc" %)**123456** (%%) : Enter the password to enable AT access. 2100 2100 2101 -(% style="background-color:#dcdcdc" %)**AT+FDR**(%%) Parameters toFactoryDefault,KeysReserve2496 +(% style="background-color:#dcdcdc" %)**AT+FDR**(%%) : Reset parameters to factory default, keeping keys reserved. 2102 2102 2103 -(% style="background-color:#dcdcdc" %)**AT+NJM=0** (%%) : 2498 +(% style="background-color:#dcdcdc" %)**AT+NJM=0** (%%) : Set to ABP mode. 2104 2104 2105 -(% style="background-color:#dcdcdc" %)**AT+ADR=0** (%%) Setthe Adaptive Data RateOff2500 +(% style="background-color:#dcdcdc" %)**AT+ADR=0** (%%) : Disable the Adaptive Data Rate (ADR). 2106 2106 2107 -(% style="background-color:#dcdcdc" %)**AT+DR=5** (%%) SetAT+DR=3 for 915 band)2502 +(% style="background-color:#dcdcdc" %)**AT+DR=5** (%%) : Set Data Rate (Use AT+DR=3 for the 915 MHz band). 2108 2108 2109 -(% style="background-color:#dcdcdc" %)**AT+TDC=60000 **(%%) 2504 +(% style="background-color:#dcdcdc" %)**AT+TDC=60000 **(%%) : Set transmit interval to 60 seconds. 2110 2110 2111 -(% style="background-color:#dcdcdc" %)**AT+CHS=868400000**(%%) : Set transmit frequency to 868.4M hz2506 +(% style="background-color:#dcdcdc" %)**AT+CHS=868400000**(%%) : Set transmit frequency to 868.4 MHz. 2112 2112 2113 -(% style="background-color:#dcdcdc" %)**AT+DADDR= 26 01 1A F1**(%%)to 26 01 1AF12508 +(% style="background-color:#dcdcdc" %)**AT+DADDR=xxxx**(%%) : Set the Device Address (DevAddr) 2114 2114 2115 -(% style="background-color:#dcdcdc" %)**ATZ** (%%) : Reset MCU 2510 +(% style="color:#000000; font-family:Arial,sans-serif; font-size:11pt; font-style:normal; font-variant-alternates:normal; font-variant-east-asian:normal; font-variant-ligatures:normal; font-variant-numeric:normal; font-variant-position:normal; font-weight:700; text-decoration:none; white-space:pre-wrap" %)**AT+APPKEY=xxxx**(% style="color:#000000; font-family:Arial,sans-serif; font-size:11pt; font-style:normal; font-variant-alternates:normal; font-variant-east-asian:normal; font-variant-ligatures:normal; font-variant-numeric:normal; font-variant-position:normal; font-weight:400; text-decoration:none; white-space:pre-wrap" %): Get or set the Application Key (AppKey) 2511 + 2512 +(% style="color:#000000; font-family:Arial,sans-serif; font-size:11pt; font-style:normal; font-variant-alternates:normal; font-variant-east-asian:normal; font-variant-ligatures:normal; font-variant-numeric:normal; font-variant-position:normal; font-weight:400; text-decoration:none; white-space:pre-wrap" %)**AT+NWKSKEY=xxxx**: Get or set the Network Session Key (NwkSKey) 2513 + 2514 +(% style="color:#000000; font-family:Arial,sans-serif; font-size:11pt; font-style:normal; font-variant-alternates:normal; font-variant-east-asian:normal; font-variant-ligatures:normal; font-variant-numeric:normal; font-variant-position:normal; font-weight:400; text-decoration:none; white-space:pre-wrap" %)**AT+APPSKEY=xxxx**: Get or set the Application Session Key (AppSKey) 2515 + 2516 +(% style="background-color:#dcdcdc" %)**ATZ** (%%) : Reset MCU. 2116 2116 ))) 2117 2117 2118 2118 2119 2119 ((( 2120 -As shown in belo w:2521 +(% style="color:#000000; font-family:Arial,sans-serif; font-size:11pt; font-style:normal; font-variant-alternates:normal; font-variant-east-asian:normal; font-variant-ligatures:normal; font-variant-numeric:normal; font-variant-position:normal; font-weight:400; text-decoration:none; white-space:pre-wrap" %)The following figure shows the screenshot of the command set above, issued using a serial tool: 2121 2121 ))) 2122 2122 2123 2123 [[image:1653360498588-932.png||height="485" width="726"]] ... ... @@ -2125,27 +2125,25 @@ 2125 2125 2126 2126 == 6.4 How to change the uplink interval? == 2127 2127 2128 - 2129 2129 Please see this link: [[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/How%20to%20set%20the%20transmit%20time%20interval/>>url:http://wiki.dragino.com/xwiki/bin/view/Main/How%20to%20set%20the%20transmit%20time%20interval/]] 2130 2130 2131 2131 2132 2132 == 6.5 Can I see the counting event in the serial output? == 2133 2133 2134 - 2135 2135 ((( 2136 -You can run the AT command AT+DEBUG to view the counting event in the serial output. If the firmware is too old and doesn’t support AT+DEBUG, update to the latest firmware first. 2535 +You can run the AT command **AT+DEBUG** to view the counting event in the serial output. If the firmware is too old and doesn’t support AT+DEBUG, update to the latest firmware first. 2137 2137 2138 2138 2139 2139 == 6.6 Can I use point-to-point communication with LT-22222-L? == 2140 2140 2141 - 2142 2142 Yes, you can. Please refer to the [[Point-to-Point Communication of LT-22222-L>>https://wiki.dragino.com/xwiki/bin/view/Main/%20Point%20to%20Point%20Communication%20of%20LT-22222-L/]] page. The firmware that supports point-to-point communication can be found [[here>>https://github.com/dragino/LT-22222-L/releases]]. 2541 + 2542 + 2143 2143 ))) 2144 2144 2145 2145 ((( 2146 2146 == 6.7 Why does the relay output default to an open relay after the LT-22222-L is powered off? == 2147 2147 2148 - 2149 2149 * If the device is not properly shut down and is directly powered off. 2150 2150 * It will default to a power-off state. 2151 2151 * In modes 2 to 5, the DO/RO status and pulse count are saved to flash memory. ... ... @@ -2153,7 +2153,6 @@ 2153 2153 2154 2154 == 6.8 Can I setup LT-22222-L as a NC (Normally Closed) relay? == 2155 2155 2156 - 2157 2157 The LT-22222-L's built-in relay is Normally Open (NO). You can use an external relay to achieve a Normally Closed (NC) configuration. The circuit diagram is shown below: 2158 2158 2159 2159 ... ... @@ -2162,24 +2162,24 @@ 2162 2162 2163 2163 == 6.9 Can the LT-22222-L save the RO state? == 2164 2164 2563 +To enable this feature, the firmware version must be 1.6.0 or higher. 2165 2165 2166 -The firmware version must be at least 1.6.0. 2167 2167 2168 - 2169 2169 == 6.10 Why does the LT-22222-L always report 15.585V when measuring the AVI? == 2170 2170 2171 - 2172 2172 It is likely that the GND is not connected during the measurement, or that the wire connected to the GND is loose. 2173 2173 2174 2174 2175 2175 = 7. Troubleshooting = 2572 + 2573 +This section provides some known troubleshooting tips. 2574 + 2575 + 2176 2176 ))) 2177 2177 2178 2178 ((( 2179 2179 ((( 2180 2180 == 7.1 Downlink isn't working. How can I solve this? == 2181 - 2182 - 2183 2183 ))) 2184 2184 ))) 2185 2185 ... ... @@ -2191,8 +2191,6 @@ 2191 2191 2192 2192 2193 2193 == 7.2 Having trouble uploading an image? == 2194 - 2195 - 2196 2196 ))) 2197 2197 2198 2198 ((( ... ... @@ -2203,8 +2203,6 @@ 2203 2203 2204 2204 2205 2205 == 7.3 Why can't I join TTN in the US915 /AU915 bands? == 2206 - 2207 - 2208 2208 ))) 2209 2209 2210 2210 ((( ... ... @@ -2212,9 +2212,8 @@ 2212 2212 ))) 2213 2213 2214 2214 2215 -== 7.4 Why can the LT-22222-L perform Uplink normally, but cannot receiveDownlink? ==2609 +== 7.4 Why can the LT-22222-L perform uplink normally, but cannot receive downlink? == 2216 2216 2217 - 2218 2218 The FCD count of the gateway is inconsistent with the FCD count of the node, causing the downlink to remain in the queue. 2219 2219 Use this command to synchronize their counts: [[Resets the downlink packet count>>||anchor="H3.4.2.23Resetsthedownlinkpacketcount"]] 2220 2220 ... ... @@ -2221,7 +2221,6 @@ 2221 2221 2222 2222 = 8. Ordering information = 2223 2223 2224 - 2225 2225 (% style="color:#4f81bd" %)**LT-22222-L-XXX:** 2226 2226 2227 2227 (% style="color:#4f81bd" %)**XXX:** ... ... @@ -2236,15 +2236,14 @@ 2236 2236 * (% style="color:red" %)**IN865**(%%): LT with frequency bands IN865 2237 2237 * (% style="color:red" %)**CN779**(%%): LT with frequency bands CN779 2238 2238 2239 -= 9. Pack ing information =2631 += 9. Package information = 2240 2240 2241 - 2242 2242 **Package includes**: 2243 2243 2244 2244 * 1 x LT-22222-L I/O Controller 2245 2245 * 1 x LoRa antenna matched to the frequency of the LT-22222-L 2246 2246 * 1 x bracket for DIN rail mounting 2247 -* 1 x 3.5mm programming cable 2638 +* 1 x 3.5 mm programming cable 2248 2248 2249 2249 **Dimension and weight**: 2250 2250 ... ... @@ -2255,7 +2255,6 @@ 2255 2255 2256 2256 = 10. Support = 2257 2257 2258 - 2259 2259 * ((( 2260 2260 Support is available Monday to Friday, from 09:00 to 18:00 GMT+8. Due to different time zones, we cannot offer live support. However, your questions will be answered as soon as possible within the aforementioned schedule. 2261 2261 ))) ... ... @@ -2267,7 +2267,6 @@ 2267 2267 2268 2268 = 11. Reference = 2269 2269 2270 - 2271 2271 * LT-22222-L: [[http:~~/~~/www.dragino.com/products/lora-lorawan-end-node/item/156-lt-22222-l.html>>url:http://www.dragino.com/products/lora-lorawan-end-node/item/156-lt-22222-l.html]] 2272 2272 * [[Datasheet, Document Base>>https://www.dropbox.com/sh/gxxmgks42tqfr3a/AACEdsj_mqzeoTOXARRlwYZ2a?dl=0]] 2273 2273 * [[Hardware Source>>url:https://github.com/dragino/Lora/tree/master/LT/LT-33222-L/v1.0]]
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