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ON Semiconductor RSL10 User Manual

ON Semiconductor RSL10 User Manual

Solar cell multi-sensor platform
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EVBUM2623/D
RSL10 Solar Cell
Multi-Sensor Platform
User's Guide
Introduction
T h e
R S L 1 0
S o l a r
(RSL10−SOLARSENS−GEVK) is a comprehensive development
platform for battery−free IoT applications for smart building, smart
home, and Industry 4.0 verticals. Based on the industry's lowest power
®
Bluetooth
Low Energy radio (RSL10), the board features sensors for
environmental and motion sensing (BMA400−a smart 3−axis
accelerometer, BME280− a smart environmental sensor, and the
NCT203
wide−range digital temperature sensor).
The board also features a low weight, low profile 47 mF storage
capacitor of; a programming and debug interface; and a connected
solar cell.
Since the device harvests energy from a low current source, it is
important to minimize leakage of the overall system during operation
and standby. Along with other energy efficient devices, an ultra−low
quiescent current LDO (NCP170) on the board significantly minimize
leakage.
© Semiconductor Components Industries, LLC, 2019
August, 2019 − Rev. 1
C e l l
M u l t i −S e n s o r
Figure 1. RSL10 Solar Cell Multi−Sensor Platform
P l a t f o r m
EVAL BOARD USER'S MANUAL
1
www.onsemi.com
Publication Order Number:
EVBUM2623/D

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Summary of Contents for ON Semiconductor RSL10

  • Page 1 IoT applications for smart building, smart home, and Industry 4.0 verticals. Based on the industry’s lowest power ® Bluetooth Low Energy radio (RSL10), the board features sensors for environmental and motion sensing (BMA400−a smart 3−axis accelerometer, BME280− a smart environmental sensor, and the NCT203 wide−range digital temperature sensor).
  • Page 2 1.6 V. following sensors are present on the board. For more information about the power regulation section, • BMA400, 3−Axis Smart Accelerometer refer to Continuous Harvesters and ON Semiconductor’s • BME280, Environmental Sensor (temperature, Low−Power Technology...
  • Page 3: Normal Operations

    In normal lighting conditions, the LED will blink faster Every transmission is signed with a LED pulse (LED D4 than once per second. located just at the Left of RSL10). Operating Conditions In case no transmission is seen or if the device looks to be The device has been tested under the following lighting hooked in out−of−...
  • Page 4 3. Download and install “ON Semiconductor IDE CMSIS pack in a folder, for example, Installer” from C:\cmsis_packs Figure 5. 4. Download the B−IDK CMSIS pack from same folder as the RSL10 CMSIS pack (see 3.a https://www.onsemi.com/B−IDK and save it in the above) www.onsemi.com...
  • Page 5 EVBUM2623/D Importing the CMSIS−Packs 2. Refer to Chapter 3 of RSL10 SDK Getting Started 1. Launch the RSL10 ON Semiconductor IDE Guide (step 3a) for step−by−step instruction on importing the CMSIS packs. NOTE: Please import the RSL10 CMSIS pack first as 3.
  • Page 6 Build Configurations The project provides two build configurations that can be selected and build using the Build Selector in the Toolbar. Figure 9. Build Configuration Selection Button in the RSL10 SDK Debug Sending of trace messages over UART slows down the...
  • Page 7 EVBUM2623/D Release project provides configuration header This configuration should be used for power consumption app_config.h located in the include folder of measurements and production builds. project. This header can be opened by using CMSIS • Configuration wizard editor as shown in Figure 10. The Optimized for speed, no debug symbols ( -O2 ).
  • Page 8 RSL10 SDK Getting Started Guide Section for instructions on how to create debugging configurations and flash the program onto RSL10. Bluetooth is a registered trademark of Bluetooth SIG. Cortex is a registered trademark of Arm Limited (or its subsidiaries) in the US and/or elsewhere.
  • Page 9 LIMITATIONS OF LIABILITY: ON Semiconductor shall not be liable for any special, consequential, incidental, indirect or punitive damages, including, but not limited to the costs of requalification, delay, loss of profits or goodwill, arising out of or in connection with the board, even if ON Semiconductor is advised of the possibility of such damages. In no event shall ON Semiconductor’s aggregate liability from any obligation arising out of or in connection with the board, under any theory of liability, exceed the purchase price paid for the board, if any.

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