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onsemi RSL10 User Manual

Smart shot color camera evaluation board
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RSL10 Smart Shot Color
Camera Evaluation Board
User's Manual
Event−Triggered AI Imaging Platform,
)
Bluetooth
Low Energy Enabled
EVBUM2803/D
Description
The
RSL10
Smart
(SECO−RSL10−CAM−COLOR−GEVK) is a complete
ultra−low−power, event−triggered, node−to−cloud platform
that enables smart image capture for portable, low duty cycle
IoT
applications
including
event−triggered cameras. Based on the RSL10 SIP and the
ARX3A0 CMOS image sensor (Color and Mono), the
platform features multiple trigger modes including periodic
intervals, motion detection, and environmental sensor
triggers (e.g., changes in temperature and humidity).
The camera kit includes the following components:
Baseboard PCB
ARX3A0 Color 121° DFOV IAS Module
(
IAS1MOD−ARX3A0CSSC090110−GEVB)
ARX3A0 Mono 121° DFOV IAS Module
(IAS1MOD−ARX3A0CSSM090110−GEVB)
Micro USB Cable
By default, the color ARX3A0 IAS module is mounted
onto the PCB. To use the mono IAS module, swap the
module onto the baseboard PCB. The firmware supports
both module, and is capable of automatically identifying the
modules.
The RSL10 SIP serves as the processing hub of the
®
camera, and Bluetooth
connectivity enabling remote control and transfer of
captured image and sensor data to the provided RSL10 Smart
Shot mobile app (available on GooglePlayt , iOS
The mobile app is used to control the camera via BLE
interface, set trigger conditions for events, capture and store
the images captured by the camera, and finally act as a
gateway to provide node−to−cloud connectivity. Connected
to an Image Analytics/AI engine, located in the cloud, the
app is capable of detecting and identifying objects using an
AI cloud service. The mobile application returns the
captured image, along with the list of identified objects and
confidence levels.
© Semiconductor Components Industries, LLC, 2021
July, 2021 − Rev. 0
Shot
Color
Camera
asset
monitoring
·
·
Low Energy (Bluetooth LE)
®
).
EVAL BOARD USER'S MANUAL
The compact design form−factor of the camera can be
used for developing compact cameras with 360 fps mono
and
imaging based on the ARX3A0 CMOS image sensor.
ARX3A0 offers high sensitivity at both visible and NIR
wavelength, and has a super low power mode that consumes
3.2 mW when active. Additionally, ARX3A0 can be
programmed to monitor specific zones of its field of view,
automatically taking an image when the scene's contents
change. Embedded on the platform hardware, the
SPCV1100A from SunplusIT
processing features and JPEG image compression.
The impressive ultra−low−power operation of the RSL10
SIP and ARX3A0 is complemented by a dedicated
FAN53880 Power Management IC (PMIC) and additional
smart power management modes implemented in hardware.
Other devices enabling the efficient power management are
the NCP705 low Iq current linear dropout regulator and the
NCP1421 ultra−Low Iq boost regulator, when camera board
supplied from primary battery. Thanks to these features, the
RSL10 Smart Shot Camera supports an extended battery
lifetime of 5+ years – depending on the specific use case.
Key ON Semiconductor Parts used:
RSL10 SIP
IAS1MOD−ARX3A0CSSC090110−GEVB
IAS1MOD−ARX3A0CSSM090110−GEVB
LE25U20AQG
FAN53880
NCP705
NCP1421
NCP3901
FPF1003A
Applications
Asset Management
Smart Home/Buildings
Smart Agriculture
Smart Retail
1
www.onsemi.com
®
provides multiple color
Publication Order Number:
EVBUM2803/D

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Summary of Contents for onsemi RSL10

  • Page 1 RSL10 Smart Shot Camera supports an extended battery both module, and is capable of automatically identifying the lifetime of 5+ years – depending on the specific use case. modules. The RSL10 SIP serves as the processing hub of the Key ON Semiconductor Parts used: ® •...
  • Page 2 EVBUM2803/D Key Features Figure 1. Key Features www.onsemi.com...
  • Page 3 EVBUM2803/D System Overview Figure 2 depicts the system architecture of the RSL10 Smart Shot Camera. Figure 2. RSL10 Smart Shot Camera System Architecture • The platform consists of the following major blocks: Environmental Sensors from Bosch Sensortec– • RSL10 SIP Bluetooth Low Energy System in Package...
  • Page 4 NCP705 serves for step down conversion from 5V down to switched of programatically. 3.3V − used for RSL10 and PMIC supply. For battery A high−speed SPI interface between the SPCV1100A and operated mode, NCP1421 boost DCDC converter outputs the RSL10 SIP is used transfer the captured and processed 3.3V.
  • Page 5 Figures 4 and 5 depict the detailed block diagram for both power management part and signaling chain within the system. Figure 4. RSL10 Smart Shot Camera Block Diagram (Power Management) Figure 5. RSL10 Smart Shot Camera Block Diagram (Signals) www.onsemi.com...
  • Page 6 RSL10 Smart Shot Camera Software Development Install J−Link Version 6.32i or later from Environment https://www.segger.com/downloads/jlink (select J−Link The RSL10 Smart Shot Camera is available with a software and documentation pack) complete software development environment and source • Download and install “ON Semiconductor IDE code for the RSL10 SIP, including documentation ®...
  • Page 7 Once the above action is executed, user has acsses to All features of this demo application can be evaluated source codes for RSL10 SoC attached this platform. It’s split using the RSL10 Smartshot mobile application available for in two sample codes: Android devices.
  • Page 8 Entered after one−shot or continuous image capture perform firmware update. command is received over Picture Transfer Service. • • FOTA mode can be entered by pressing the on−board Low Latency connection parameter update is push button during normal operation. automatically initiated before image capture operation. www.onsemi.com...
  • Page 9 EVBUM2803/D Figure 9. State Diagram of the Application Hardware Requirements The smartshot color demo cam example code is compatible only with SECO−RSL10−CAM−COLOR−GEVK evaluation board. Figure 10. SECO−RSL10−CAM−COLOR−GEVK Evaluation Board www.onsemi.com...
  • Page 10 EVBUM2803/D BUILDING PROJECT Refer to RSL10 Firmware Over−The−Air User’s Guide CMSIS−Pack Dependencies from RSL10 Documentation Package for additional details This example in on FOTA implementation. ONSemiconductor.RSL10−SmartShot_BSP.2.1.0+1 depends on software components from the following Build Configurations CMSIS−Packs: This sample code contains two pre−configured build •...
  • Page 11 This binary contains application itself and it is also available as example project dependent on BLE stack functions from FOTA smartshot_bootloader/ • image. FOTA Application Image The application image with .fota extension is Figure 13. Layout of RSL10 Flash Memory with All Required Application Components www.onsemi.com...
  • Page 12 LED. Please refer for detailed description in section Firmware The srec_cat.exe utility must be available on your over the Air (FOTA) Updates in RSL10 Color Smart Shot computer. This program can be downloaded from project’s Camera Getting Started Guide.
  • Page 13: Application Description

    Application is utilizing the Deep Sleep Mode feature of connection in 1 minute advertising interval is set to low duty RSL10 to save power during idle time when no processing interval (852.5 ms) to save power. After peer device is required.
  • Page 14 0x00 − No time trigger ♦ Supported Time Triggers: 0x02 − Do not notify more than settable time. 0x00 − No time trigger This trigger setting configures sensor sample rate 0x02 − Do not notify more than settable time www.onsemi.com...
  • Page 15 Boolean, 10e0, Unitless, first User Description Read string “Motion Trigger” Read, Notify SINT32 0 (false) Acceleration Trigger Client Configuration Read, Write blob Notifications Disabled Value Trigger Setting Read, Write blob No Value Trigger Time Trigger Setting Read, Write blob No Time Trigger www.onsemi.com...
  • Page 16 “Humidity Trigger” Device Firmware Update Service (DFUS) initiate FOTA update. Refer to the RSL10 Firmware Over Allow an BLE Updater application from PC or Mobile The Air Users Guide listed in Additional Resources section phone to extract version information from the device and for more information about this service.
  • Page 17 ISP then the application must be build with the Power up fig.h under the Debugging Options category. ISP on boot debugging option. After flashing it into RSL10 Available options are: the ISP is powered up and allowed to update its firmware •...
  • Page 18: Installation

    INSTALLATION The RSL10 Smartshot app is available on Google Play and IoS. After successful installation, you can open the app. If opening the app for the first time, all permissions must be enabled, including manually turning on GPS and Bluetooth functionalities.
  • Page 19 AWS account, you can register for one here. To connect your AWS Account with the RSL10 Smartshot app, enter your accessKey and secretKey. After doing so, a screen with two rows will appear after click on the recognition icon, or you can find it in the option menu on the main (BLE discovery) screen.
  • Page 20 3. In the left options menu, choose “Access management” → “Users” and add new user (Programmatic access → Next → Attach existing policies directly) Figure 21. 4. Find “AmazonRekognitionReadOnlyAccess” and “AmazonRekognitionCustomLabelsFullAccess”, check the boxes and click on “Next: Review” www.onsemi.com...
  • Page 21 The PIR sensor and accelerometer take a picture when the Sensor Triggers movement is detected, respectively acceleration. To set The RSL10 Smartshot platform allows the use of 4 triggers for temperature and humidity, you have to enter a sensors to set triggers, which will take a picture when change...
  • Page 22 0 to 100%. If humidity been received with the blinking of the accelerometer icon. crosses the lower limit, the RSL10 Smart Shot Camera takes The minimal time between detection is 5 seconds. an image and displays the humidity icon in blue. Blue Temperature Detection indicates that the lower limit has been crossed.
  • Page 23 LIMITATIONS OF LIABILITY: onsemi 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 onsemi is advised of the possibility of such damages. In no event shall onsemi’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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