Last modified by Xiaoling on 2025/06/10 18:03

From version 28.2
edited by BoYang Xie
on 2024/09/25 11:07
Change comment: There is no comment for this version
To version 5.1
edited by Edwin Chen
on 2024/09/16 09:57
Change comment: There is no comment for this version

Summary

Details

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40 40  * 5V DC power
41 41  * IP Rating: IP52
42 42  
43 +
43 43  == 1.3  Specification ==
44 44  
45 45  **LoRa**:
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67 67  * RGB color.
68 68  * Display Area: 120.7*75.80 mm
69 69  
71 +
72 +
70 70  == 1.4  Power Consumption ==
71 71  
72 72  * External 5V DC power adapter
73 73  
77 +
74 74  == 1.5  Storage & Operation Temperature ==
75 75  
76 76  * Operation Temperature: -20 ~~ 70°C  (No Dew)
77 77  * Storage Temperature: -30 ~~ 70°C  (No Dew)
78 78  
83 +
79 79  == 1.6  Applications ==
80 80  
81 81  * Smart Buildings & Home Automation
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85 85  * Smart Cities
86 86  * Smart Factory
87 87  
93 +
88 88  = 2.  Getting Start with Hello World =
89 89  
90 90  == 2.1  About this demo ==
91 91  
92 -In this Getting Start Example, we will show how to design a simple Display UI and upload it to LTS5. This UI has  a button , when user click the button. The Web UI will jump to a new page.
98 +In this Getting Start Example, we will show how to desing a simple Display UI and upload it to LTS5. This UI has  a button , when user click the button. The Web UI will jump to a new page.
93 93  
100 +
94 94  == 2.2  Install Software Running Environment ==
95 95  
96 -The ESP MCU can be developed using ESP-IDF, Arduino, or MicroPython. For this project, we utilize ESP-IDF for compilation and Visual Studio Code (VSCode) for editing.
103 +=== 2.2.1 Install Arduino IDE tool ===
97 97  
98 -=== 2.2.1 Install VSCode and ESP-IDF extension ===
99 -
100 -Firstly, download and install VSCode for your computer's operating system from the official website: [[Download Visual Studio Code - Mac, Linux, Windows>>url:https://code.visualstudio.com/download]].
101 -
102 -Next, you need to install the ESP-IDF extension within VSCode. The detailed operation steps are illustrated in image 1.
103 -
104 -[[image:1727229396732-319.png]]
105 -
106 - image 1 ESP-IDF extension install
107 -
108 -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]]
109 -
110 110  === 2.2.2 Install SquareLine Studio ===
111 111  
112 -The version we are utilizing for this software is 1.4.2. You can download it from the official link: [[SquareLine Studio - Download the current version of SquareLine Studio>>url:https://squareline.io/downloads#lastRelease]].
113 113  
114 -Please note that this software necessitates the registration of a license prior to usage, and various licenses come with distinct limitations. For instance, the free version imposes restrictions such as a limit of 1 component, 150 widgets, and 10 screens. However, for first-time downloads, you are granted unrestricted access for a period of 30 days without the need for immediate registration.
108 +== 2.3 Program in SquareLine and convert it to ESP32 software ==
115 115  
116 -== 2.3 Simple usage of SquareLine Studio and export UI code ==
117 117  
118 -After launching and logging in to this software, create a project as shown in the following image 2. The version of LVGL is 8.3.11.
111 +== 2.4 Upload Firmware to ESP32 ==
119 119  
120 -[[image:1727229550717-684.png]]
121 121  
122 -[[image:1727233636007-933.png]]
123 -
124 - image 2 create a SquareLine project
125 -
126 -Next, we need to make some settings for this project. By clicking in the specified order on image 3, we can see the page as shown in image 4.
127 -
128 -[[image:1727229582471-566.png]]
129 -
130 - image 3 project settings
131 -
132 -[[image:1727229618724-758.png]]
133 -
134 - image 4 modify project settings
135 -
136 -Now we can start to use this software. The steps for creating this UI are shown in image 5-10.
137 -
138 -[[image:1727229653254-680.png]]
139 -
140 - image 5 create a UI(1)
141 -
142 -[[image:1727231038705-173.png]]
143 -
144 - image 6 create a UI(2)
145 -
146 -[[image:1727229682537-381.png]]
147 -
148 - image 7 create a UI(3)
149 -
150 -We repeat the steps of screen1 in screen2. Then we get screen2 as shown in image 8.
151 -
152 -[[image:1727229715361-392.png]]
153 -
154 - image 8 create a UI(4)
155 -
156 -Finally, we add click event for screen change to button1 in screen1(shown in image 9) and button2 in screen2.
157 -
158 -[[image:1727229740592-843.png]]
159 -
160 - image 9 create a UI(5)
161 -
162 -The event settings of button1 are as image 10 shown. The event adding operation of button2 is similar to button1.
163 -
164 -[[image:1727229760857-521.png]]
165 -
166 - image 10 create a UI(6)
167 -
168 -== 2.4 Integrate UI Code to ESP-IDF Project ==
169 -
170 -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.
171 -
172 -[[image:1727229798126-306.png]]
173 -
174 - image 11 export UI file
175 -
176 -[[image:1727229821582-258.png]]
177 -
178 - image 12 exported UI file
179 -
180 -Create a empty directory entitled ‘ui’ in path “basic_prj/app_components/ui/”, and then copy all UI code exported to this directory.
181 -
182 -[[image:1727229845835-509.png]]
183 -
184 - image 13 open CMakeLists.txt
185 -
186 -[[image:1727229892636-154.png]]
187 -
188 - image 14 modify CMakeLists.txt
189 -
190 -The last step of integrating is adding two lines of code in main.c file.
191 -
192 -[[image:1727229926561-300.png]]
193 -
194 - image 15 add “ui.h”
195 -
196 -[[image:1727229955611-607.png]]
197 -
198 - image 16 add “ui_init()”
199 -
200 200  == 2.5 Test Result ==
201 201  
202 -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.
203 203  
204 -[[image:1727229990795-405.png]]
205 -
206 - image 17 screen1
207 -
208 -[[image:1727230012478-930.png]]
209 -
210 - image 18 screen2
211 -
212 212  = 3. Example Project 1: LoRa Central Display =
213 213  
214 -[[image:image-20240916101737-1.png||height="468" width="683"]]
215 215  
120 += 4. Example Project 2: LoRa to LoRaWAN RS485 Alarm =
216 216  
217 217  
218 -= 4. Example Project 2: LoRaWAN RS485 Alarm =
219 -
220 -
221 221  = 6. FAQ =
222 222  
223 -== 6.1 ==
125 +== 6.1 ==
224 224  
225 225  
226 226  = 7. Order Info =
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229 229  
230 230  Part Number: (% style="color:#4472c4" %)LTS5
231 231  
134 +
232 232  
233 233  == 7.2  Packing Info ==
234 234  
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238 238  * 5V,2A DC Power Adapter.
239 239  * USB Type C Program Cable
240 240  
144 +
241 241  = 8. Support =
242 242  
243 243  * 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.
244 244  * 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]].
245 245  
150 +
246 246  = 9.  Reference material =
247 247  
248 248  * Datasheet
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249 249  * Source Code
250 250  * Mechinical
251 251  
157 +
252 252  = 10. FCC Warning =
253 253  
254 254  
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