Last modified by Mengting Qiu on 2025/01/03 08:46

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1 **Table of Contents: **
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3 {{toc/}}
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8 = 1.  Can I use an external power adapter or solar panel to power motherboard? =
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11 [[image:image-20220820141238-1.png]] [[image:image-20220820141238-2.png]] [[image:image-20220820141238-3.png]]
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14 (((
15 The motherboard of the equipment is equipped with an 8500mAh Battery by default. To set the LoRaWAN End Node to a short uplink interval such as 1 minutes uplink interval. This 8500mAh battery is not enough for long time use.
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20 (% style="color:blue" %)**It is possible to power LSN50v2 or similar model via external Power. **(% style="color:red" %)**//There are two ways //:**
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24 == 1.1  Power it via external power (3.3v) and no need back up battery ==
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27 As shown below, the motherboard is by default power by 8500mAh battery via the battery cable.
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29 [[image:image-20220820141238-4.png]]
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32 User can remove the cable here and connect the (% style="color:blue" %)**external 3.3v DC power**(%%) to this connector.
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34 Recommand Spec for the power adapter:
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36 * **Output: 3.0 ~~ 3.6v DC**
37 * **Output Current: >500mA**
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39 (% style="display:none" %)
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41 Connector type is (% style="color:blue" %)**XH2.54 connector**(%%), So a match XH2.54 cable is ok.
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44 [[image:image-20220820141238-5.png]]
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47 Example photo for external 3.3v DC power** ( (% style="color:red" %)Need to cut the DC connector and wire it to XH2.54 cable, make sure the VCC and GND are not reverse)(%%)**(% style="color:red" %).
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50 [[image:image-20220820141238-6.png]]
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53 === 1.1.1  Powering the node with an external power supply (example: CS01-LB) ===
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55 Requires the following materials: DC power supply, DC power cable, motherboard power supply cable:
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57 [[image:1721024999841-801.png||height="214" width="157"]] [[image:1721025013842-155.png||height="212" width="116"]] [[image:1721025035210-674.png||height="212" width="133"]]
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59 Firstly, you need to connect the wires of the DC power connector to the power supply wires of the motherboard using tin-ring tubes. The operation steps are as follows:
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61 Note: Connect the red and black wires of the motherboard power cable to the corresponding red and black wires of the DC power supply:
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63 [[image:1721025065081-261.png]]
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65 [[image:1721025073997-891.png||height="395" width="373"]]
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68 After soldering the tin ring tube, as follows:
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70 [[image:1721025103705-211.png||height="350" width="197"]]
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72 Route both the CS01 acquisition module and the DC power cable through the M16 housing as follows:
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74 [[image:1721025132642-539.png||height="303" width="673"]]
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77 Connect the four-pronged wires from the acquisition module and the DC power cable to the motherboard as follows:
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79 [[image:1721025161869-874.png||height="339" width="754"]]
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81 Interconnect the DC power cable with the 220v to 3.3v power supply as follows:
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83 [[image:1721025177978-347.png||height="262" width="755"]]
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86 == 1.2  Use the Dragino Solar Recharge Kit with external 5~~12v DC ==
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88 [[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/How%20to%20calculate%20the%20battery%20life%20of%20Dragino%20sensors%3F/#H3.SolarPanel2B3000mAhLi-ionbattery >>https://wiki.dragino.com/xwiki/bin/view/Main/How%20to%20calculate%20the%20battery%20life%20of%20Dragino%20sensors%3F/#H3.SolarPanel2B3000mAhLi-ionbattery]]
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90 [[image:image-20240206191721-1.png]]
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93 == 1.3  Power it via 12v solar panel and add rechargeable battery ==
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96 Dragino has a recharge kit for this purpose. User can see this link for reference:
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98 [[https:~~/~~/shop.dragino.com/index.php?rt=product/product&product_id=126>>url:https://shop.dragino.com/index.php?rt=product/product&product_id=126]]
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100 [[image:image-20220820141238-7.png]]
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103 == 1.4  Water Proof Notice: ==
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107 (% style="color:red" %)**Note: Both options mean an extra cable needs to pass throug the enclosure. In the current enclosure, the best is to drill a hole on the enclosure to pass and use glue to fill it for outdoor use purposes.**
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110 )))
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