Last modified by BoYang Xie on 2025/07/24 16:47

From version 131.1
edited by Dilisi S
on 2024/12/24 21:45
Change comment: Dec 24 edits - part 2
To version 4.12
edited by Edwin Chen
on 2024/09/16 09:37
Change comment: There is no comment for this version

Summary

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1 -XWiki.pradeeka
1 +XWiki.Edwin
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1 +
2 2  [[image:image-20240915231842-1.png]]
3 3  
4 4  
5 -
6 -
7 -
8 -
9 -
10 10  (% _mstvisible="1" %)
11 -(% _msthash="315238" _msttexthash="18964465" _mstvisible="3" %)**Table of Contents:**
6 +(% _msthash="315238" _msttexthash="18964465" _mstvisible="3" %)**Table of Contents**
12 12  
13 13  {{toc/}}
14 14  
... ... @@ -21,22 +21,20 @@
21 21  
22 22  = 1.  Introduction =
23 23  
24 -== 1.1  What is the LTS5 LoRa HMI Touch Screen? ==
19 +== 1.1  What is LTS5 LoRa HMI touch screen ==
25 25  
21 +LTS5 is a (% style="color:blue" %)LoRa / LoRaWAN HMI Touch Screen(%%) designed for display purpose of IoT project. It have a 5.0" HMI touch screen, and support WiFi, Bluetooch, LoRa wireless protocol.
26 26  
27 -The LTS5 is a (% style="color:blue" %)**LoRa / LoRaWAN HMI Touch Screen**(%%) designed for displaying information in IoT projects. It features a **5.0-inch HMI touch screen** and supports **Wi-Fi**, **Bluetooth**, and **LoRa** wireless protocols.
23 +LTS5 is an Open Source software project. The MCU is ESP32 and Dragino LA66 LoRa module. There are lots of development source for ESP32 which can greatly reduce the development time.
28 28  
29 -The LTS5 is an open-source software project powered by an **ESP32 MCU** and a **Dragino LA66 LoRa** module. The extensive development resources available for ESP32 can significantly reduce development time.
25 +The HMI touch screen of LTS5 supports drap & drop design. Developer can use SquareLine to easily customize the display UI for different application.
30 30  
31 -The LTS5's HMI touch screen supports **drag-and-drop** design, allowing developers to use SquareLine to easily customize the display UI for various applications.
27 +LTS5 use LA66 LoRa module, this module can be program to support private LoRa protocol or LoRaWAN protocol.
32 32  
33 -The LA66 LoRa module can be programmed to support either private LoRa protocols or the LoRaWAN protocol.
34 34  
35 35  == 1.2  Features ==
36 36  
37 -
38 -* ESP32-WROOM MCU: 8MB RAM & 16MB ROM
39 -* Dragino LA66 LoRa Module
32 +* ESP32-WROOM MCU + Dragino LA66 LoRa Module
40 40  * Support Private LoRa protocol or LoRaWAN protocol
41 41  * Support WiFi & BLE wireless protocol
42 42  * 5.0" HMI touch screen
... ... @@ -47,17 +47,11 @@
47 47  * 5V DC power
48 48  * IP Rating: IP52
49 49  
50 -== 1.3  Specifications ==
51 51  
44 +== 1.3  Specification ==
52 52  
53 53  **LoRa**:
54 54  
55 -* Frequency Range: 870 MHz ~~ 960 MHz
56 -* TCXO crystal to ensure RF performance on low temperature
57 -* Maximum Power +22 dBm constant RF output
58 -* High sensitivity: -148 dBm
59 -* LoRa Tx Current: <90 mA at +17 dBm, 108 mA at +22 dBm
60 -* LoRa Rx current: <9 mA
61 61  
62 62  **WiFi:**
63 63  
... ... @@ -81,20 +81,21 @@
81 81  * RGB color.
82 82  * Display Area: 120.7*75.80 mm
83 83  
71 +
72 +
84 84  == 1.4  Power Consumption ==
85 85  
86 -
87 87  * External 5V DC power adapter
88 88  
77 +
89 89  == 1.5  Storage & Operation Temperature ==
90 90  
91 -
92 92  * Operation Temperature: -20 ~~ 70°C  (No Dew)
93 93  * Storage Temperature: -30 ~~ 70°C  (No Dew)
94 94  
83 +
95 95  == 1.6  Applications ==
96 96  
97 -
98 98  * Smart Buildings & Home Automation
99 99  * Logistics and Supply Chain Management
100 100  * Smart Metering
... ... @@ -102,516 +102,722 @@
102 102  * Smart Cities
103 103  * Smart Factory
104 104  
105 -= 2.  Getting Started with 'Hello World' =
106 106  
107 -== 2.1  About this demo ==
94 += 2.  Operation Mode =
108 108  
96 +== 2.1  How it work? ==
109 109  
110 -This getting started example demonstrates how to design and deploy a simple display UI for the LTS5 device. The example includes:
111 111  
112 -* Creating a basic UI with a single button.
113 -* Implementing functionality to navigate the Web UI to a new page when the button is clicked.
114 -* Uploading the UI to the LTS5 device.
99 +Each PB01 is shipped with a worldwide unique set of LoRaWAN OTAA keys. To use PB01 in a LoRaWAN network, user needs to input the OTAA keys in LoRaWAN network server. After this, if PB01 is under this LoRaWAN network coverage, PB01 can join the LoRaWAN network and start to transmit sensor data. The default period for each uplink is** 20 minutes**.
115 115  
116 -By completing this demo, you will gain foundational knowledge for customizing the LTS5 interface and building more advanced IoT applications.
117 117  
102 +== 2.2  How to Activate PB01? ==
118 118  
119 -== 2.2  Install Software Running Environment ==
120 120  
105 +(% style="color:red" %)** 1.  Open enclosure from below position.**
121 121  
122 -The **ESP MCU** supports development with **ESP-IDF**, **Arduino**, or **MicroPython**. We use **ESP-IDF** for compilation and **Visual Studio Code (VS Code)** as the development environment for this project.
107 +[[image:image-20220621093835-1.png]]
123 123  
124 124  
125 -=== 2.2.1 Install VS Code and ESP-IDF extension ===
110 +(% style="color:red" %)** 2.  Insert 2 x AAA LR03 batteries and the node is activated.**
126 126  
112 +[[image:image-20220621093835-2.png]]
127 127  
128 -First, download and install **VS Code** for your operating system from the Visual Studio Code website: [[Visual Studio Code - Mac, Linux, Windows>>https://code.visualstudio.com/download]].
129 129  
130 -Next, install the **ESP-IDF** extension within **VS Code**. Detailed steps for this process are shown in Image 1.
115 +(% style="color:red" %)** 3. Under the above conditions, users can also reactivate the node by long pressing the ACT button.**
131 131  
117 +[[image:image-20220621093835-3.png]]
132 132  
133 -[[image:image-20240928110211-5.png||height="508" width="866"]]
134 134  
135 - Image 1: ESP-IDF extension install
120 +User can check [[LED Status>>||anchor="H2.8LEDIndicator"]] to know the working state of PB01.
136 136  
137 -Links for reference: [[Install ESP32 ESP-IDF on Windows and Integrate with VS code (esp32tutorials.com)>>url:https://esp32tutorials.com/install-esp32-esp-idf-windows-integrate-vs-code/#:~~:text=In%20this%20tutorial,%20we%20will%20show%20you%20how%20to%20install]]
138 138  
123 +== 2.3  Example to join LoRaWAN network ==
139 139  
140 -=== 2.2.2 Install SquareLine Studio ===
141 141  
126 +This section shows an example for how to join the [[TheThingsNetwork>>url:https://www.thethingsnetwork.org/]] LoRaWAN IoT server. Usages with other LoRaWAN IoT servers are of similar procedure.
142 142  
143 -Download and install the latest version of [[SquareLine Studio>>https://squareline.io/downloads#lastRelease]] on your computer. It supports Windows, Linux, and Mac OS. The software version we are using here is 1.5.0. See the image below.
128 +(% _mstvisible="1" class="wikigeneratedid" %)
129 +Assume the LPS8v2 is already set to connect to [[TTN V3 network >>url:https://eu1.cloud.thethings.network/]]. We need to add the PB01 device in TTN V3 portal. 
144 144  
145 -[[image:squareline.io_downloads.png]]
131 +[[image:image-20240705094824-4.png]]
146 146  
133 +(% style="color:blue" %)**Step 1**(%%):  Create a device in TTN V3 with the OTAA keys from PB01.
147 147  
148 -After installation, you can use SquareLine Studio with a **PERSONAL license plan**. Click **LOG IN** and create a free account using your email address. Then activate your PERSONAL license plan for free. You don’t need to provide any credit card information. However, the PERSONAL license plan has the following limitations:
135 +Each PB01 is shipped with a sticker with the default DEV EUI as below:
149 149  
150 -* Max. 10 screens
151 -* Max. 150 widgets
152 -* Max. 5 global colors
153 -* Max. 2 themes
154 -* Max. 1 component
137 +[[image:image-20230426083617-1.png||height="294" width="633"]]
155 155  
156 -== 2.3 Simple usage of SquareLine Studio and exporting UI code ==
157 157  
140 +Enter these keys in the LoRaWAN Server portal. Below is TTN V3 screen shot:
158 158  
159 -Start the SquareLine Studio. The **launcher screen** appears as shown in the below image. You can create a new project by clicking **Create** in the top menu. Then select the **Desktop** tab. Select the development platform, **Eclipse with  SDL for development on PC**.
142 +Create application.
160 160  
161 -* In the **PROJECT SETTINGS**, select **LVGL version **as **8.3.11** and **Resolution** as **800** x **480**.
162 -* Select the **CREATE **button to create the new project with the selected settings.
144 +choose to create the device manually.
163 163  
146 +Add JoinEUI(AppEUI), DevEUI, AppKey.(% style="display:none" %)
164 164  
165 -[[image:squareline-studio-launcher-screen.png]]
148 +[[image:image-20240507142116-1.png||height="410" width="1138"]](% style="display:none" %) (%%)
149 +
166 166  
151 +[[image:image-20240507142157-2.png||height="559" width="1147"]]
167 167  
153 +[[image:image-20240507142401-3.png||height="693" width="1202"]]
168 168  
169 -Next, you need to configure some additional settings for this project. To do so, select** File  -> Project Settings** as shown in the image below.
155 +[[image:image-20240507142651-4.png||height="760" width="1190"]]
170 170  
171 -[[image:1727229582471-566.png]]
157 +**Default mode OTAA**(% style="display:none" %)
172 172  
173 173  
174 -In the **PROJECT SETTINGS** dialog box, configure/modify the project settings as shown in the image below.
160 +(% style="color:blue" %)**Step 2**(%%):  Use ACT button to activate PB01 and it will auto join to the TTN V3 network. After join success, it will start to upload sensor data to TTN V3 and user can see in the panel.
175 175  
176 -* **UI Files Export Root**: Select a folder on your computer to store the UI files.
177 -* **LVGL Include Path**: Set this to **lvgl.h**
178 -* Click on the **APPLY CHANGES** button.
162 +[[image:image-20240507143104-5.png||height="434" width="1398"]]
179 179  
180 -[[image:image-20240928105309-4.png||height="526" width="556"]]
181 181  
165 +== 2.4  Uplink Payload ==
182 182  
183 -Now you can start building the user interface. Follow the steps below:
184 184  
168 +Uplink payloads include two types: Valid Sensor Value and other status / control command.
185 185  
186 -=== **Add widgets** ===
170 +* Valid Sensor Value: Use FPORT=2
171 +* Other control command: Use FPORT other than 2.
187 187  
173 +=== 2.4.1  Uplink FPORT~=5, Device Status ===
188 188  
189 -To add a widget, navigate to the **Widgets** panel, and then click on the widget you want to add to the screen. You can reposition the widgets in the screen area by clicking and dragging them. Now add a **Label**, **Button**, and **Image** as shown in the image below. The added widgets are also displayed in the **Hierarchy **panel.
190 190  
191 -[[image:image-20240928111412-6.png||height="526" width="864"]]
176 +Users caget the Device Status uplink through the downlink command:
192 192  
178 +(% style="color:#4472c4" %)**Downlink:  **(%%)**0x2601**
193 193  
194 -Then click the **Screen **widget to add the second screen. After adding the second screen, it will appear in the Screens panel as **Screen2**.
180 +Uplink the device configures with FPORT=5.
195 195  
196 -[[image:Screenshot 2024-12-24 140459.png||height="278" width="290"]]
182 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:370px" %)
183 +|=(% style="width: 60px;background-color:#4F81BD;color:white" %)**Size(bytes)(% style="display:none" %) (%%)**|=(% style="width: 60px;background-color:#4F81BD;color:white" %)**1**|=(% style="width: 80px;background-color:#4F81BD;color:white" %)**2**|=(% style="width: 80px;background-color:#4F81BD;color:white" %)**1**|=(% style="width: 60px;background-color:#4F81BD;color:white" %)**1**|=(% style="width: 30px;background-color:#4F81BD;color:white" %)**2**
184 +|(% style="width:99px" %)Value|(% style="width:62px" %)Sensor Model|(% style="width:80px" %)Firmware Version|(% style="width:82px" %)Frequency Band|(% style="width:85px" %)Sub-band|(% style="width:46px" %)BAT
197 197  
198 -=== **Modify widget properties** ===
186 +[[image:image-20240507152130-12.png||height="469" width="1366"]](% style="display:none" %)
199 199  
188 +Example Payload (FPort=5):  [[image:image-20240507152254-13.png||height="26" width="130"]]
200 200  
201 -The area for modifying widgets is called the **Inspector** panel. The Inspector panel consists of four sections: **COMPONENT**, **<WIDGET>**, **STYLE SETTINGS**, and **EVENTS**, as shown in the image below. The second section allows you to adjust a widget's layout, size, position, alignment, flags, states, and more. When you select a widget on the screen, the name of this section changes to match the name of the selected widget.
202 202  
203 -[[image:1727485118799-984.png]]
191 +(% style="color:#4472c4" %)**Sensor Model**(%%): For PB01, this value is 0x35.
204 204  
193 +(% style="color:#4472c4" %)**Firmware Version**(%%): 0x0100, Means: v1.0.0 version.
205 205  
206 -==== **Changing the Button properties** ====
195 +(% style="color:#4472c4" %)**Frequency Band**:
207 207  
197 +*0x01: EU868
208 208  
209 -Click the **Button **you have added to the screen. Under the **Layout** you can change the button's position and size. Use the following settings:
199 +*0x02: US915
210 210  
211 -* **Flex Flow**: No Layout
212 -* **Transform**:
213 -** **X**: 331 px
214 -** **Y**: 203 px
215 -** **Width**: 100 px
216 -** **Height**: 50 px
217 -** **Align**: CENTER
201 +*0x03: IN865
218 218  
219 -[[image:1727485251053-655.png]]
203 +*0x04: AU915
220 220  
205 +*0x05: KZ865
221 221  
222 -Next, add a click event to the button. When the button is clicked, an event should trigger to change the current screen (Screen1) to a new screen (Screen2) with a fade effect and the transition from Screen1 to Screen2 should take 500ms.
207 +*0x06: RU864
223 223  
224 -* Click **ADD EVENT** button. A new section will appear to configure this event.
209 +*0x07: AS923
225 225  
226 -[[image:Screenshot 2024-12-24 134937.png||height="80" width="290"]]
211 +*0x08: AS923-1
227 227  
228 -* Select **CLICKED** from the dropdown under **Trigger**. Choose **CHANGE SCREEN** under **Action**, then click the **ADD** button. A new section will appear to configure the action.
213 +*0x09: AS923-2
229 229  
230 -[[image:Screenshot 2024-12-24 134818.png||height="222" width="290"]]
215 +*0x0a: AS923-3
231 231  
232 -* Select **Screen2** under **Screen to**. Select **FADE ON** from **Fade mode**. The default value **500** means the transition takes 500 milliseconds to appear the Screen2.
233 -* Finally, click the **ADD** button.
234 234  
235 -[[image:1727485480434-713.png||height="395" width="290"]]
218 +(% style="color:#4472c4" %)**Sub-Band**(%%): value 0x00 ~~ 0x08(only for CN470, AU915,US915. Others are0x00)
236 236  
237 - Image 8: Add an event for the button
220 +(% style="color:#4472c4" %)**BAT**(%%): shows the battery voltage for PB01.
238 238  
222 +(% style="color:#4472c4" %)**Ex1**(%%): 0x0C DE = 3294mV
239 239  
240 -==== **Changing the label properties** ====
241 241  
225 +=== 2.4.2  Uplink FPORT~=2, Real time sensor value ===
242 242  
243 -Click the Label you have added to the screen. Under the **Label** section, type "**Click for Detail**" in the **Text** textbox.
244 244  
245 -[[image:image-20240928090825-1.png||height="327" width="391"]]
228 +PB01 will send this uplink after Device Status uplink once join LoRaWAN network successfully. And it will periodically send this uplink. Default interval is 20 minutes and [[can be changed>>||anchor="H3.1A0DownlinkCommandSet"]].
246 246  
230 +Uplink uses FPORT=2 and every 20 minutes send one uplink by default.
247 247  
248 -Once you enter the text, it will immediately appear on the label.
232 +(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:460px" %)
233 +|=(% style="width: 60px;background-color:#4F81BD;color:white" %)(((
234 +**Size(bytes)**
235 +)))|=(% style="width: 60px;background-color:#4F81BD;color:white" %)2|=(% style="width: 60px;background-color:#4F81BD;color:white" %)(((
236 +**1**
237 +)))|=(% style="width: 60px;background-color:#4F81BD;color:white" %)(((
238 +**1**
239 +)))|=(% style="width: 90px;background-color:#4F81BD;color:white" %)(((
240 +**2**
241 +)))|=(% style="width: 40px;background-color:#4F81BD;color:white" %)(((
242 +**2**
243 +)))
244 +|(% style="width:97px" %)(((
245 +Value
246 +)))|(% style="width:39px" %)Battery|(% style="width:39px" %)(((
247 +Sound_ACK
249 249  
249 +&Sound_key
250 +)))|(% style="width:100px" %)(((
251 +(((
252 +Alarm
253 +)))
254 +)))|(% style="width:77px" %)(((
255 +(((
256 +Temperature
257 +)))
258 +)))|(% style="width:47px" %)(((
259 +Humidity
260 +)))
250 250  
251 -==== **Changing image properties** ====
262 +Example in TTN.
252 252  
264 +[[image:image-20240507150155-11.png||height="549" width="1261"]]
253 253  
254 -To use the **Image **widget, you should first add an image to your project. The image format must be PNG, and its resolution should not exceed 800x480 pixels. There are two ways to add an image file.
266 +Example Payload (FPort=2):  (% style="background-color:yellow" %)**0C EA 03 01 01 11 02 A8**
255 255  
256 -One way is to move your image into the folder "…/squareline project/assets/", as shown in the image below.
268 +==== (% style="color:blue" %)**Battery:**(%%) ====
257 257  
258 -[[image:image-20240928113424-9.png||height="355" width="505"]]
270 +Check the battery voltage.
259 259  
272 +* Ex1: 0x0CEA = 3306mV
273 +* Ex2: 0x0D08 = 3336mV
260 260  
261 -The other way is to click the "**ADD FILE INTO ASSETS**" button, then select an image from your computer to import. After adding, you can see the image in the "**assets**" panel in SquareLine Studio, as shown in the image below.
275 +==== (% style="color:blue" %)**Sound_ACK & Sound_key:**(%%) ====
262 262  
263 -[[image:image-20240928114139-10.png||height="559" width="810"]]
277 +Key sound and ACK sound are enabled by default.
264 264  
279 +* Example1: 0x03
265 265  
266 -==== **The relationship between widgets** ====
281 + Sound_ACK: (03>>1) & 0x01=1, OPEN.
267 267  
283 +**~ ** Sound_key:  03 & 0x01=1, OPEN.
268 268  
269 -Widgets commonly have two types of relationships: **parallel** and **parent-child**.
285 +* Example2: 0x01
270 270  
271 -* In a **parallel relationship**, widgets' positions are determined relative to a shared reference object.
272 -* In a **parent-child relationship**, any part of the child object outside the parent's boundaries is hidden by default. To make the child object fully visible, you must adjust its position to fit within the parent's range, as shown in Image 13.
287 + Sound_ACK: (01>>1) & 0x01=0, CLOSE.
273 273  
274 -[[image:1727486567182-334.png||height="318" width="278"]]
289 +**~ ** Sound_key:  01 & 0x01=1, OPEN.
275 275  
276 276  
277 -Move the label, **Label1** to make it a child of **Button1** as shown in the image below.
292 +==== (% style="color:blue" %)**Alarm:**(%%) ====
278 278  
279 -[[image:image-20240928112001-8.png||height="431" width="796"]]
294 +Key alarm.
280 280  
296 +* Ex1: 0x01 & 0x01=1, TRUE.
297 +* Ex2: 0x00 & 0x01=0, FALSE.
281 281  
282 -Then set the **X** and **Y** position of the label to **0** as shown in the image below. The label will appear on the button. If you move the button on the screen, the label will move along with it as part of the button.
299 +==== (% style="color:blue" %)**Temperature:**(%%) ====
283 283  
284 -[[image:Screenshot 2024-12-24 144005.png||height="360" width="290"]]
301 +* Example1:  0x0111/10=27.3℃
302 +* Example2:  (0xFF0D-65536)/10=-24.3℃
285 285  
304 +If payload is: FF0D :  (FF0D & 8000 == 1) , temp = (FF0D - 65536)/100 =-24.3℃
286 286  
287 -==== **Preview the screen** ====
306 +(FF0D & 8000:Judge whether the highest bit is 1, when the highest bit is 1, it is negative
288 288  
289 289  
290 -You can test the result by clicking on the **PLAY** button. The screen will change into play mode. See Image 14.
309 +==== (% style="color:blue" %)**Humidity:**(%%) ====
291 291  
292 -[[image:1727487368023-281.png]]
311 +* Humidity:    0x02A8/10=68.0%
293 293  
294 - Image 14: Simulating the project
313 +=== 2.4.3  Uplink FPORT~=3, Datalog sensor value ===
295 295  
296 296  
297 -For more information, please visit the official link: [[SquareLine Studio 1.4.2 Documentation ~| SquareLine Studio>>url:https://docs.squareline.io/docs/squareline/]].
316 +PB01 stores sensor value and user can retrieve these history value via downlink command. The Datalog sensor value are sent via FPORT=3.
298 298  
318 +[[image:image-20240510144912-1.png||height="471" width="1178"]](% style="display:none" %)
299 299  
300 -== 2.4 Integrate UI Code to ESP-IDF Project ==
301 301  
321 +* Each data entry is 11 bytes, to save airtime and battery, PB01 will send max bytes according to the current DR and Frequency bands.(% style="display:none" %)
302 302  
303 -To achieve the integrating, we first need to export the UI code, then make some modifications, and finally relocate the UI code to a specific position within the project.
323 +For example, in US915 band, the max payload for different DR is:
304 304  
305 -[[image:1727229798126-306.png]]
325 +1. **DR0**: max is 11 bytes so one entry of data
326 +1. **DR1**: max is 53 bytes so devices will upload 4 entries of data (total 44 bytes)
327 +1. **DR2**: total payload includes 11 entries of data
328 +1. **DR3**: total payload includes 22 entries of data.
306 306  
307 - image 15 export UI file
330 +(% style="color:red" %)**Notice: PB01 will save 178 set of history data, If device doesn't have any data in the polling time. Device will uplink 11 bytes of 0.**
308 308  
309 -[[image:1727229821582-258.png||height="333" width="662"]]
332 +See more info about the [[Datalog feature>>||anchor="H2.6A0DatalogFeature"]].
310 310  
311 - image 16 exported UI file
334 +(% style="display:none" %) (%%)
312 312  
313 -Create a empty directory entitled "ui" in path "basic_prj/app_components/ui/", and then copy all UI code exported to this directory.
336 +=== 2.4.4  Decoder in TTN V3 ===
314 314  
315 -[[image:image-20240928144830-11.png]]
316 316  
317 - image 17 open CMakeLists.txt
339 +In LoRaWAN protocol, the uplink payload is HEX format, user need to add a payload formatter/decoder in LoRaWAN Server to get human friendly string.
318 318  
319 -[[image:1727229892636-154.png||height="521" width="407"]]
341 +In TTN , add formatter as below:
320 320  
321 - image 18 modify CMakeLists.txt
343 +[[image:image-20240507162814-16.png||height="778" width="1135"]]
322 322  
323 -The last step of integrating is adding two lines of code in main.c file.
345 +(((
346 +Please check the decoder from this link:  [[https:~~/~~/github.com/dragino/dragino-end-node-decoder>>https://github.com/dragino/dragino-end-node-decoder]]
347 +)))
324 324  
325 -[[image:1727229926561-300.png]]
349 +(((
350 +
351 +)))
326 326  
327 - image 19 add "ui.h"
353 +== 2.5 Show data on Datacake ==
328 328  
329 -[[image:1727229955611-607.png]]
330 330  
331 - image 20 add "ui_init()"
356 +(((
357 +Datacake IoT platform provides a human friendly interface to show the sensor data in charts, once we have sensor data in TTN V3, we can use Datacake to connect to TTN V3 and see the data in Datacake. Below are the steps:
358 +)))
332 332  
360 +(((
361 +
362 +)))
333 333  
334 -== 2.5 Brief introduction of hello world project ==
364 +(((
365 +(% style="color:blue" %)**Step 1**(%%):  Be sure that your device is programmed and properly connected to the LoRaWAN network.
366 +)))
335 335  
368 +(((
369 +(% style="color:blue" %)**Step 2**(%%):  Configure your Application to forward data to Datacake you will need to add integration. Go to TTN V3 Console ~-~-> Applications ~-~-> Integrations ~-~-> Add Integrations.
370 +)))
336 336  
337 -The project consists of two screens. The first screen displays the company's logo, the project name, and a button to navigate to the next screen. The second screen presents some information about this HMI screen product through an image and includes a button to return to the previous screen.
372 +(((
373 +~1. Add Datacake:
374 +)))
338 338  
376 +(((
377 +2. Select default key as Access Key:
378 +)))
339 339  
340 -== 2.6 Test Result ==
380 +(((
381 +3. In Datacake console ([[https:~~/~~/datacake.co/>>url:https://datacake.co/]]) , add PB01:
382 +)))
341 341  
384 +(((
385 + Please refer to the figure below.
386 +)))
342 342  
343 -By pressing the button lying bottom right, the screen can switch to another as expected. This indicates that the UI file has been successfully integrated into the project and is now effective.
388 +[[image:image-20240510150924-2.png||height="612" width="1186"]]
344 344  
345 -[[image:1727488067077-684.png||height="402" width="574"]]
346 346  
347 - image 21 screen1
391 +Log in to DATACAKE, copy the API under the account.
348 348  
349 -[[image:1727488157579-949.png||height="397" width="572"]]
393 +[[image:image-20240510151944-3.png||height="581" width="1191"]]
350 350  
351 - image 22 screen2
352 352  
353 353  
354 -= 3. Example Project 1: LoRa Central Display =
397 +[[image:image-20240510152150-4.png||height="697" width="1188"]]
355 355  
356 -[[image:image-20240916101737-1.png||height="468" width="683"]]
357 357  
400 +[[image:image-20240510152300-5.png||height="298" width="1191"]]
358 358  
359 -= 4. Example Project 2: LoRaWAN RS485 Alarm =
360 360  
361 -= 5. The way to add a new panel to project =
403 +[[image:image-20240510152355-6.png||height="782" width="1193"]]
362 362  
405 +[[image:image-20240510152542-8.png||height="545" width="739"]]
363 363  
364 -**~1. Design a panel in SquareLine Studio, using image 5.1 below as a reference.**
407 +[[image:image-20240510152634-9.png||height="748" width="740"]]
365 365  
366 -[[image:image-20241121113445-1.png||height="584" width="934"]]
367 367  
368 - image 5.1 a panel about water_leak
410 +[[image:image-20240510152809-10.png||height="607" width="732"]]
369 369  
412 +[[image:image-20240510153934-14.png||height="460" width="1199"]]
370 370  
371 -**2. Export the ui file.** You need  to adjust the export path first, then click "Export->Export UI Files". This step had been introduced before. Then you can get the ui files as shown in image 5.2.
372 372  
373 -[[image:image-20241121141120-4.png||height="383" width="795"]]
415 +[[image:image-20240510153435-12.png||height="428" width="1197"]]
374 374  
375 - image 5.2 ui files exported
376 376  
418 +Copy and paste the [[TTN decoder>>https://github.com/dragino/dragino-end-node-decoder]] here and save.
377 377  
378 -**3. Delete or rename some file.** Here are the steps:
420 +[[image:image-20240510153624-13.png||height="468" width="1195"]]
379 379  
380 - Step1 Delete the 'components' directory.
381 - Step2 Delete 'filelist.txt'.
382 - Step3 Delete 'ui_helpers.c' and 'ui_helpers.h'.
383 - Step4 Rename 'ui_ScreenMain.c' in the 'screens' directory to 'ui_water_leak_style.c'.
384 - Step5 Rename the 'screens' directory to 'styles'.
385 385  
386 -[[image:image-20241121151934-10.png||height="303" width="792"]]
423 +Visual widgets please read the DATACAKE documentation.
387 387  
388 - image 5.3 rest file (1)
425 +(% style="display:none" %) (%%)
389 389  
390 -[[image:image-20241121142925-7.png||height="141" width="793"]]
427 +== 2.6  Datalog Feature ==
391 391  
392 - image 5.4 rest file (2)
393 393  
394 -**4. Open this project in vscode.**
430 +(% _msthash="315262" _msttexthash="32283004" _mstvisible="1" %)
431 +When user want to retrieve sensor value, he can send a poll command from the IoT platform to ask sensor to send value in the required time slot.
395 395  
396 -5. Add file include path about water_leak in extra_lib/CMakeLists.txt as shown in image 5.5, 5.6, and its format is similar to the tem_hum or door.
397 397  
398 -[[image:image-20241121181957-17.png||height="438" width="516"]]
434 +=== 2.6.1  Unix TimeStamp ===
399 399  
400 - image 5.5 extra_lib/CMakeLists.txt before add
401 401  
402 -[[image:image-20241121182239-18.png||height="520" width="518"]]
437 +Unix TimeStamp shows the sampling time of uplink payload. format base on
403 403  
404 - image 5.6 extra_lib/CMakeLists.txt after add
439 +[[image:image-20220523001219-11.png||_mstalt="450450" _mstvisible="3" height="97" width="627"]]
405 405  
406 -**6. Modify header file include in fonts and images directory.** Open the fonts/ui_font_Font12.c file, as shown in image 5.7, then modify the '#include "../ui.h"' to '#include "../ui_water_leak.h"', the image 5.8 is the modified image. Other font file need to be modified in same way.
441 +User can get this time from link:  [[https:~~/~~/www.epochconverter.com/>>url:https://www.epochconverter.com/||_mstvisible="3"]] :
407 407  
408 -[[image:image-20241121171629-11.png]]
443 +For example: if the Unix Timestamp we got is hex 0x60137afd, we can convert it to Decimal: 1611889405. and then convert to the time: 2021 – Jan ~-~- 29 Friday 03:03:25 (GMT)
409 409  
410 - image 5.7 before-modified font file
411 411  
412 -[[image:image-20241121171901-12.png]]
446 +[[image:1655782409139-256.png]]
413 413  
414 - image 5.8 modified font file
415 415  
416 -Open the images/ui_img_battery_empty_png.c file, as shown in image 5.9, then modify the '#include "../ui.h"' to '#include "../ui_water_leak.h"', the image 5.10 is the modified image. Other image file need to be modified in same way.
449 +=== 2.6.2  Poll sensor value ===
417 417  
418 -[[image:image-20241121172714-13.png]]
419 419  
420 - image 5.9 before-modified image file
452 +(((
453 +User can poll sensor value based on timestamps from the server. Below is the downlink command.
454 +)))
421 421  
422 -[[image:image-20241121172908-14.png]]
456 +(((
457 +Timestamp start and Timestamp end use Unix TimeStamp format as mentioned above. Devices will reply with all data log during this time period, use the uplink interval.
458 +)))
423 423  
424 - image 5.10 modified image file
460 +(((
461 +For example, downlink command [[image:image-20220621113526-13.png]] (% _mstvisible="3" style="display:none" %)
462 +)))
425 425  
426 -**7. Modify the ui_water_leak/CMakeLists.txt.** Open this file, and modify it from image 5.11 to image 5.12.
464 +(((
465 +Is to check 2020/12/1 07:40:00 to 2020/12/1 08:40:00's data
466 +)))
427 427  
428 -[[image:image-20241121180030-15.png]]
468 +(((
469 +Uplink Internal =5s,means PB01 will send one packet every 5s. range 5~~255s.
470 +)))
429 429  
430 - image 5.11 ui_water_leak/CMakeLists.txt before modification
431 431  
432 -[[image:image-20241121180517-16.png]]
473 +=== 2.6.3  Datalog Uplink payload ===
433 433  
434 - image 5.12 ui_water_leak/CMakeLists.txt after modification
435 435  
436 -**8. Modify ui_water_leak.h file.** The image 5.13, 5.14 show the code before modification, and the image 5.15, 5.16 show the code after modification.
476 +See [[Uplink FPORT=3, Datalog sensor value>>||anchor="H2.4.3A0UplinkFPORT3D32CDatalogsensorvalue"]]
437 437  
438 -[[image:image-20241122094200-23.png]]
478 +(% style="display:none" %) (%%) (% style="display:none" %)
439 439  
440 - image 5.13 ui_water_leak.h (1) before modification
480 +== 2.7 Button ==
441 441  
442 -[[image:image-20241122094320-24.png||height="852" width="554"]]
443 443  
444 - image 5.14 ui_water_leak.h (2) before modification
483 +* ACT button
445 445  
446 -[[image:image-20241122094600-25.png||height="1078" width="554"]]
485 +Long press this button PB01 will reset and join network again.
447 447  
448 - image 5.15 ui_water_leak.h (1) after modification
487 +[[image:image-20240510161626-17.png||height="192" width="224"]]
449 449  
450 -[[image:image-20241122094719-26.png||height="941" width="583"]]
489 +* Alarm button
451 451  
452 - image 5.16 ui_water_leak.h (2) before modification
491 +Press the button PB01 will immediately uplink data, and alarm is "TRUE".
453 453  
454 -**9. Modify ui_water_leak.c file.** The image 5.17, 5.18, 5.19 show the code before modification, and the image 5.20, 5.21, 5.22 show the code after modification.
493 +[[image:image-20240705095149-5.png||height="164" width="162"]](% style="display:none" %)
455 455  
456 -_ui_flag_modify( ((lv_obj_t *)(e->user_data)), LV_OBJ_FLAG_HIDDEN, _UI_MODIFY_FLAG_TOGGLE);  This code replaces 4 lines of code in ui_water_leak.c, so it is pasted here for convenience.
457 457  
458 -[[image:image-20241122102929-27.png||height="619" width="426"]]
496 +== 2.8 LED Indicator ==
459 459  
460 - image 5.17 ui_water_leak.c (1) before modification
461 461  
462 -[[image:image-20241122112838-30.png||height="551" width="628"]]
499 +(((
500 +The PB01 has a triple color LED which for easy showing different stage.
501 +)))
463 463  
464 - image 5.18 ui_water_leak.c (2) before modification
503 +Hold the ACT green light to rest, then the green flashing node restarts, the blue flashing once upon request for network access, and the green constant light for 5 seconds after successful network access
465 465  
466 -[[image:image-20241122110815-29.png||height="725" width="712"]]
505 +(((
506 +(% style="color:#037691" %)**In a normal working state**:
507 +)))
467 467  
468 - image 5.19 ui_water_leak.c (3) before modification
509 +* When the node is restarted, hold the ACT (% style="color:green" %)**GREEN**(%%) lights up , then the (% style="color:green" %)**GREEN**(%%) flashing node restarts.The (% style="color:blue" %)**BLUE**(%%) flashing once upon request for network access, and the (% style="color:green" %)**GREEN**(%%) constant light for 5 seconds after successful network access(% style="color:#0000ff" %)**.**
510 +* During OTAA Join:
511 +** **For each Join Request uplink:** the (% style="color:green" %)**GREEN LED** (%%)will blink once.
512 +** **Once Join Successful:** the (% style="color:green" %)**GREEN LED**(%%) will be solid on for 5 seconds.
513 +* After joined, for each uplink, the (% style="color:blue" %)**BLUE LED**(%%) or (% style="color:green" %)**GREEN LED** (%%)will blink once.
514 +* Press the alarm button,The (% style="color:red" %)**RED**(%%) flashes until the node receives the ACK from the platform and the (% style="color:blue" %)**BLUE**(%%) light stays 5s.
469 469  
470 -[[image:image-20241122113158-31.png||height="872" width="677"]]
516 +(((
517 +
518 +)))
471 471  
472 - image 5.20 ui_water_leak.c (1) after modification
520 +== 2.9 Buzzer ==
473 473  
474 -[[image:image-20241122113259-33.png||height="874" width="724"]]
475 475  
476 - image 5.21 ui_water_leak.c (2) after modification
523 +The PB01 has** button sound** and** ACK sound** and users can turn on or off both sounds by using [[AT+SOUND>>||anchor="H3.3A0Setbuttonsoundandbuttonalarm"]].
477 477  
478 -[[image:image-20241122113359-34.png||height="804" width="746"]]
525 +* (% style="color:#4f81bd" %)**Button sound**(%%)** **is the music produced by the node after the alarm button is pressed.
479 479  
480 - image 5.22 ui_water_leak.c (3) after modification
527 + Users can use[[ AT+OPTION>>||anchor="H3.4A0Setbuzzermusic2807E429"]] to set different button sounds.
481 481  
482 -**10. Modify ui_water_leak_events.h file.** The image 5.23 show the code before modification, and the image 5.24 show the code after modification.
529 +* (% style="color:#4f81bd" %)**ACK sound **(%%)is the notification tone that the node receives ACK.
483 483  
484 -[[image:image-20241122134113-35.png||height="380" width="421"]]
531 += 3.  Configure PB01 via AT command or LoRaWAN downlink =
485 485  
486 - image 5.23 ui_water_leak_events_.h before modification
487 487  
488 -[[image:image-20241122134420-37.png||height="201" width="283"]]
534 +Users can configure PB01 via AT Command or LoRaWAN Downlink.
489 489  
490 -image 5.24 ui_water_leak_events_.h after modification
536 +* AT Command Connection: See [[FAQ>>||anchor="H6.FAQ"]].
491 491  
492 -**11. Modify ui_water_leak_events.c file.** The image 5.25 show the code before modification, and the image 5.26 show the code after modification.
538 +* LoRaWAN Downlink instruction for different platforms: [[IoT LoRaWAN Server>>doc:Main.WebHome]]
493 493  
494 -Step1. '#include "ui.h"'~-~->'#include "ui_water_leak.h"'
540 +There are two kinds of commands to configure PB01, they are:
495 495  
496 -Step2. add code  below in delete_object() function definition.
542 +* (% style="color:#4f81bd" %)**General Commands:**
497 497  
498 - panel_all * panel = find_upper_by_SensorPanel(&arr,((lv_obj_t *)(e->user_data~)~)~);
544 +These commands are to configure:
499 499  
500 - size_t index = panel->panel_obj_index;
546 +* General system settings like: uplink interval.
501 501  
502 - deleteElement(&arr, index);
548 +* LoRaWAN protocol & radio-related commands.
503 503  
504 -[[image:image-20241122135023-38.png||height="358" width="372"]]
550 +They are the same for all Dragino Devices which supports DLWS-005 LoRaWAN Stack(Note~*~*). These commands can be found on the wiki: [[End Device Downlink Command>>doc:Main.End Device AT Commands and Downlink Command.WebHome]]
505 505  
506 - image 5.25 ui_water_leak_events_.c before modification
507 507  
508 -[[image:image-20241122135258-39.png||height="403" width="559"]]
553 +* (% style="color:#4f81bd" %)**Commands special design for PB01**
509 509  
510 - image 5.26 ui_water_leak_events_.c after modification
555 +These commands are only valid for PB01, as below:
511 511  
557 +(% style="display:none" %) (%%)
512 512  
513 -**12Modify ui_water_leak_style.c file.**
559 +== 3.1  Downlink Command Set ==
514 514  
515 -Step1. '#include "../ui.h"'~-~->#include '"../ui_water_leak.h"'
516 516  
517 - add '#include "../../sort.h"'
562 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:500px" %)
563 +|=(% style="width: 130px; background-color: rgb(79, 129, 189); color: white;" %)**Command Example**|=(% style="width: 151px; background-color: rgb(79, 129, 189); color: white;" %)**Function**|=(% style="width: 92px; background-color: rgb(79, 129, 189); color: white;" %)**Response**|=(% style="width: 206px; background-color: rgb(79, 129, 189); color: white;" %)**Downlink**
564 +|(% style="width:130px" %)AT+TDC=?|(% style="width:151px" %)(((
565 +
518 518  
519 - add '#include "ui.h"'
567 +View current TDC time
568 +)))|(% style="width:92px" %)(((
569 +1200000
570 +OK
571 +)))|(% style="width:206px" %)Default 1200000(ms)
572 +|(% style="width:130px" %)AT+TDC=300000|(% style="width:151px" %)Set TDC time|(% style="width:92px" %)OK|(% style="width:206px" %)(((
573 +(((
574 +0X0100012C:
575 +01: fixed command
576 +00012C: 0X00012C=
520 520  
521 -[[image:image-20241122141536-41.png||height="361" width="612"]]
578 +300(seconds)
579 +)))
522 522  
523 - image 5.27 ui_water_leak_style.c (1) before modification
581 +(((
582 +
583 +)))
584 +)))
585 +|(% style="width:130px" %)ATZ|(% style="width:151px" %)Reset node|(% style="width:92px" %) |(% style="width:206px" %)0x04FF
586 +|(% style="width:130px" %)AT+FDR|(% style="width:151px" %)Restore factory settings|(% style="width:92px" %) |(% style="width:206px" %)0X04FE
587 +|(% style="width:130px" %)AT+CFM=?|(% style="width:151px" %)View the current confirmation mode status|(% style="width:92px" %)(((
588 +0,7,0
524 524  
525 -[[image:image-20241122142129-42.png||height="386" width="613"]]
590 +OK
591 +)))|(% style="width:206px" %)Default 0,7,0
592 +|(% style="width:130px" %)AT+CFM=1,7,1|(% style="width:151px" %)(((
593 +Confirmed uplink mode, the maximum number of retries is seven, and uplink fcnt increase by 1 for each retry
594 +)))|(% style="width:92px" %)(((
595 +OK
596 +)))|(% style="width:206px" %)(((
597 +05010701
526 526  
527 - image 5.28 ui_water_leak_style.c (1) after modification
599 +05: fixed command
528 528  
601 +01:confirmed uplink
529 529  
530 -Step2. modify 'void ui_ScreenMain_screen_init(void)'~-~->'panel_with_type create_water_leak(uint8_t index)'
603 +07: retry 7 times
531 531  
532 - delete code as shown in image 5.29
605 +01: fcnt count plus 1
606 +)))
607 +|(% style="width:130px" %)AT+NJM=?|(% style="width:151px" %)(((
608 +Check the current network connection method
609 +)))|(% style="width:92px" %)(((
610 +1
611 +OK
612 +)))|(% style="width:206px" %)Default 1
613 +|(% style="width:130px" %)AT+NJM=0|(% style="width:151px" %)Change the network connection method to ABP|(% style="width:92px" %)(((
614 +Attention:Take effect after ATZ
615 +OK
616 +)))|(% style="width:206px" %)(((
617 +0X2000: ABP
618 +0x2001: OTAA
619 +20: fixed command
620 +)))
621 +|(% style="width:130px" %)AT+RPL=?|(% style="width:151px" %)View current RPL settings|(% style="width:92px" %)(((
622 +0
623 +OK
624 +)))|(% style="width:206px" %)Default 0
625 +|(% style="width:130px" %)AT+RPL=1|(% style="width:151px" %)set RPL=1    |(% style="width:92px" %)OK|(% style="width:206px" %)(((
626 +0x2101:
627 +21: fixed command
628 +01: for details, check wiki
629 +)))
630 +|(% style="width:130px" %)AT+ADR=?|(% style="width:151px" %)View current ADR status|(% style="width:92px" %)(((
631 +1
632 +OK
633 +)))|(% style="width:206px" %)Default 0
634 +|(% style="width:130px" %)AT+ADR=0|(% style="width:151px" %)Set the ADR state to off|(% style="width:92px" %)OK|(% style="width:206px" %)(((
635 +0x2200: close
636 +0x2201: open
637 +22: fixed command
638 +)))
639 +|(% style="width:130px" %)AT+DR=?|(% style="width:151px" %)View the current DR settings|(% style="width:92px" %)OK|(% style="width:206px" %)
640 +|(% style="width:130px" %)AT+DR=1|(% style="width:151px" %)(((
641 +set DR to 1
642 +It takes effect only when ADR=0
643 +)))|(% style="width:92px" %)OK|(% style="width:206px" %)(((
644 +0X22000101:
645 +00: ADR=0
646 +01: DR=1
647 +01: TXP=1
648 +22: fixed command
649 +)))
650 +|(% style="width:130px" %)AT+TXP=?|(% style="width:151px" %)View the current TXP|(% style="width:92px" %)OK|(% style="width:206px" %)
651 +|(% style="width:130px" %)AT+TXP=1|(% style="width:151px" %)(((
652 +set TXP to 1
653 +It takes effect only when ADR=0
654 +)))|(% style="width:92px" %)OK|(% style="width:206px" %)(((
655 +0X22000101:
656 +00: ADR=0
657 +01: DR=1
658 +01: TXP=1
659 +22: fixed command
660 +)))
661 +|(% style="width:130px" %)AT+RJTDC=10|(% style="width:151px" %)Set RJTDC time interval|(% style="width:92px" %)OK|(% style="width:206px" %)(((
662 +0X26000A:
663 +26: fixed command
664 +000A: 0X000A=10(min)
665 +for details, check wiki
666 +)))
667 +|(% style="width:130px" %) |(% style="width:151px" %)(((
668 +(((
669 +~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_
533 533  
534 -[[image:image-20241122145620-44.png||height="757" width="671"]]
671 +Retrieve stored data for a specified period of time
672 +)))
535 535  
536 - image 5.29 ui_water_leak_style.c (2)
674 +(((
675 +
676 +)))
677 +)))|(% style="width:92px" %) |(% style="width:206px" %)(((
678 +0X3161DE7C7061DE8A800A:
679 +31: fixed command
680 +61DE7C70:0X61DE7C70=2022/1/12 15:00:00
681 +61DE8A80:0X61DE8A80=2022/1/12 16:00:00
682 +0A: 0X0A=10(second)
683 +View details 2.6.2
684 +)))
685 +|(% style="width:130px" %)AT+DDETECT=?|(% style="width:151px" %)View the current DDETECT setting status and time|(% style="width:92px" %)(((
686 +1,1440,2880
687 +OK
688 +)))|(% style="width:206px" %)Default 1,1440,2880(min)
689 +|(% style="width:130px" %)AT+DDETECT=(((
690 +1,1440,2880
691 +)))|(% style="width:151px" %)(((
692 +Set DDETECT setting status and time
693 +((% style="color:red" %)When the node does not receive the downlink packet within the set time, it will re-enter the network(%%))
694 +)))|(% style="width:92px" %)OK|(% style="width:206px" %)(((
695 +0X320005A0: close
696 +0X320105A0: open
697 +32: fixed command
698 +05A0: 0X05A0=1440(min)
699 +)))
537 537  
701 +== 3.2  Set Password ==
538 538  
539 -Step3. The image 5.30, 5.31 show the change.
540 540  
541 -[[image:image-20241122152026-45.png||height="277" width="828"]]
704 +Feature: Set device password, max 9 digits.
542 542  
543 - image 5.30 ui_water_leak_style.c (3) before modification
706 +(% style="color:#4f81bd" %)**AT Command: AT+PWORD**
544 544  
545 -[[image:image-20241122152542-46.png||height="293" width="830"]]
708 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:372px" %)
709 +|(% style="background-color:#4f81bd; color:white; width:155px" %)**Command Example**|(% style="background-color:#4f81bd; color:white; width:128px" %)**Function**|(% style="background-color:#4f81bd; color:white; width:89px" %)**Response**
710 +|(% style="width:155px" %)AT+PWORD=?|(% style="width:124px" %)Show password|(% style="width:86px" %)(((
711 +123456
712 +OK
713 +)))
714 +|(% style="width:155px" %)AT+PWORD=999999|(% style="width:124px" %)Set password|(% style="width:86px" %)OK
546 546  
547 - image 5.31 ui_water_leak_style.c (3) after modification
716 +(% style="color:#4f81bd" %)**Downlink Command:**
548 548  
718 +No downlink command for this feature.
549 549  
550 -Step4. Copy partly the code in ui_water_leak.c, paste at extra_lib/sort.h(The process is shown in image 5.32, 5.33).
551 551  
552 -[[image:image-20241122153958-47.png]]
721 +== 3.3  Set button sound and ACK sound ==
553 553  
554 - image 5.32 ui_water_leak_style.c (4)
555 555  
556 -[[image:image-20241122154755-49.png||height="864" width="513"]]
724 +Feature: Turn on/off button sound and ACK alarm.
557 557  
558 - image 5.33 ui_water_leak_style.c (4)
726 +(% style="color:#4f81bd" %)**AT Command: AT+SOUND**
559 559  
728 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:372px" %)
729 +|(% style="background-color:#4f81bd; color:white; width:155px" %)**Command Example**|(% style="background-color:#4f81bd; color:white; width:128px" %)**Function**|(% style="background-color:#4f81bd; color:white; width:89px" %)**Response**
730 +|(% style="width:155px" %)(((
731 +AT+SOUND=?
732 +)))|(% style="width:124px" %)Get the current status of button sound and ACK sound|(% style="width:86px" %)(((
733 +1,1
734 +OK
735 +)))
736 +|(% style="width:155px" %)(((
737 +AT+SOUND=0,1
738 +)))|(% style="width:124px" %)Turn off the button sound and turn on ACK sound|(% style="width:86px" %)OK
560 560  
561 -Step5. Delete event function in code which was just pasted in extra_lib/sort.h(The process is shown in image 5.34).
740 +(% style="color:#4f81bd" %)**Downlink Command: 0xA1 **
562 562  
563 -[[image:image-20241122155650-50.png||height="922" width="513"]]
742 +Format: Command Code (0xA1) followed by 2 bytes mode value.
564 564  
565 - image 5.34 ui_water_leak_style.c (5)
744 +The first byte after 0XA1 sets the button sound, and the second byte after 0XA1 sets the ACK sound.** (0: off, 1: on)**
566 566  
746 +* **Example: **Downlink Payload: A10001  ~/~/ Set AT+SOUND=0,1  Turn off the button sound and turn on ACK sound.
567 567  
568 -Step6. Add some lines of code in extra_lib/sort.h as shown in image 5.35.
748 +== 3. Set buzzer music type(0~~4) ==
569 569  
570 -[[image:image-20241122161934-51.png]]
571 571  
572 - image 5.35
751 +Feature: Set different alarm key response sounds.There are five different types of button music.
573 573  
753 +(% style="color:#4f81bd" %)**AT Command: AT+OPTION**
574 574  
575 -Step7. Add a line of code in extra_lib/sort.h as shown in image 5.36.
755 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:372px" %)
756 +|(% style="background-color:#4f81bd; color:white; width:155px" %)**Command Example**|(% style="background-color:#4f81bd; color:white; width:128px" %)**Function**|(% style="background-color:#4f81bd; color:white; width:89px" %)**Response**
757 +|(% style="width:155px" %)(((
758 +AT+OPTION=?
759 +)))|(% style="width:124px" %)(((
760 +Get the buzzer music type
761 +)))|(% style="width:86px" %)(((
762 +3
576 576  
577 -[[image:image-20241122162852-53.png||height="330" width="529"]]
764 +OK
765 +)))
766 +|(% style="width:155px" %)AT+OPTION=1|(% style="width:124px" %)Set the buzzer music to type 1|(% style="width:86px" %)OK
578 578  
579 - image 5.37
768 +(% style="color:#4f81bd" %)**Downlink Command: 0xA3**
580 580  
770 +Format: Command Code (0xA3) followed by 1 byte mode value.
581 581  
582 -Step8. Add some code in ui_water_leak_style.c as shown in image 5.38 from line534 to line 576 in detail.
772 +* **Example: **Downlink Payload: A300  ~/~/ Set AT+OPTION=0  Set the buzzer music to type 0.
583 583  
584 -panel_with_type union_sensor;
774 +== 3.5  Set Valid Push Time ==
585 585  
586 -union_sensor.panel_type = WATER_LEAK_TYPE;
587 587  
588 -......
777 +Feature: Set the holding time for pressing the alarm button to avoid miscontact. Values range from** 0 ~~1000ms**.
589 589  
590 -lv_obj_set_x(union_sensor.panel_union.door.ui_PanelSensorDoor, x_by_index(index));
779 +(% style="color:#4f81bd" %)**AT Command: AT+STIME**
591 591  
592 -lv_obj_set_y(union_sensor.panel_union.door.ui_PanelSensorDoor, y_by_index(index));
781 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:372px" %)
782 +|(% style="background-color:#4f81bd; color:white; width:155px" %)**Command Example**|(% style="background-color:#4f81bd; color:white; width:128px" %)**Function**|(% style="background-color:#4f81bd; color:white; width:89px" %)**Response**
783 +|(% style="width:155px" %)(((
784 +AT+STIME=?
785 +)))|(% style="width:124px" %)(((
786 +Get the button sound time
787 +)))|(% style="width:86px" %)(((
788 +0
789 +OK
790 +)))
791 +|(% style="width:155px" %)(((
792 +AT+STIME=1000
793 +)))|(% style="width:124px" %)Set the button sound time to 1000**ms**|(% style="width:86px" %)OK
593 593  
594 -return union_sensor;
795 +(% style="color:#4f81bd" %)**Downlink Command: 0xA2**
595 595  
596 -[[image:image-20241122171211-54.png||height="635" width="792"]]
797 +Format: Command Code (0xA2) followed by 2 bytes mode value.
597 597  
598 - image 5.38
799 +* **Example: **Downlink Payload: A203E8  ~/~/ Set AT+STIME=1000  
599 599  
801 +**~ Explain: **Hold the alarm button for 10 seconds before the node will send the alarm packet.
600 600  
601 -**13. Modify sort.c file.**
602 602  
603 -Add a line of code ~-~-'#include "ui_water_leak.h"' as shown in image 5.39 line 16.
804 +
604 604  
605 -[[image:image-20241122173718-56.png||height="378" width="579"]]
606 -
607 - image 5.39 sort.c (1)
608 -
609 -There are still some changes need to be done in sort.c, and omit here for the moment.
610 -
611 -
612 612  = 6. FAQ =
613 613  
614 -== 6.1 ==
808 +== 6.1 ==
615 615  
616 616  
617 617  = 7. Order Info =
... ... @@ -618,13 +618,12 @@
618 618  
619 619  == 7.1  Part Number ==
620 620  
621 -
622 622  Part Number: (% style="color:#4472c4" %)LTS5
623 623  
817 +
624 624  
625 625  == 7.2  Packing Info ==
626 626  
627 -
628 628  **Package Includes**:
629 629  
630 630  * LTS5 HMI Touch Screen
... ... @@ -631,19 +631,20 @@
631 631  * 5V,2A DC Power Adapter.
632 632  * USB Type C Program Cable
633 633  
827 +
634 634  = 8. Support =
635 635  
636 -
637 637  * Support is provided Monday to Friday, from 09:00 to 18:00 GMT+8. Due to different timezones we cannot offer live support. However, your questions will be answered as soon as possible in the before-mentioned schedule.
638 638  * Provide as much information as possible regarding your enquiry (product models, accurately describe your problem and steps to replicate it etc) and send a mail to [[support@dragino.com>>url:file:///D:/市场资料/说明书/LoRa/LT系列/support@dragino.com]].
639 639  
833 +
640 640  = 9.  Reference material =
641 641  
642 -
643 643  * Datasheet
644 644  * Source Code
645 645  * Mechinical
646 646  
840 +
647 647  = 10. FCC Warning =
648 648  
649 649  
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