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Introducing the Cinterion JavaTM EHS6 Concept Board and STMicroelectronics X-NUCLEO-IKS01A1 Sensor Expansion Board

The Cinterion EHS6 Concept Board by Gemalto can now be linked to the STMicroelectronics MEMS and environmental sensor expansion board using JavaTM as the design environment. The Cinterion EHS6 Concept Board by Gemalto with its Arduino style connector, is now an ideal platform for evaluating the MEMS sensors on the STMicroelectronics NUCLEO expansion board.



Step 1. Evaluate your Idea

Step01 Block Diagram

With the JavaTM source code available for the Cinterion EHS6 Concept board, it is now possible to request the following measurements from ST’s X-NUCLEO-IKS01A1 expansion board.

  • Temperature and humidity from the HTS221 humidity sensor
  • Pressure from the LPS25H pressure sensor
  • Magnetic field measurements from the LIS3MDL 3D magnetometer
  • G-force and orientation from the LSM6DS0 3D accelerometer / gyroscope

The JavaTM application returns readings from the ST MEMs sensors through either an ‘easy to use’ SMS based communication method along with the option of AT command control, via USB, from a terminal. Both solutions are ideal introductions as a first step to your IoT design.
This development suite is to aid customers with the evaluation and design process with providing the tools and open source resources necessary for innovation.

Further support is available via the on-line Gemalto Developer Community, which has a comprehensive knowledge base on the Cinterion products from designers and the Gemalto Support Engineers. For designs going the next stage from the Cinterion EHS6 Concept Board to a bespoke design, Gemalto offer a range of support packages which include schematic checks and pre-compliance RF testing.

Step 2. Build it

Step01 Block Diagram

Whether it be using one of the Cinterion JavaTM Cellular Terminals from Gemalto or a PCB based Cellular module development, Anglia are able to supply the devices and offer engineering support to aid the design.
Along with associated devices such as antenna’s and SIM card holders plus services such as Anglia Airtime for your M2M managed services, Anglia are able to offer the complete solution for your IoT or M2M product.

Step 3. Get it to Market - quick!

Step01 Block Diagram

The Sensor Logic Application Enablement Platform from Gemalto provides the necessary building blocks to build an application from the Sensors to an enterprise application. Using the Sensor Logic Client embedded in Cinterion JavaTM based embedded intelligent devices, the necessary logic between the Sensors and the Sensor Logic Cloud is provided to form a complete, scalable end to end application. This building block approach simplifies the GSM device and connectivity which in turn reduces development cost and the time to market. Gemalto is accelerating the exciting growth of the Internet of Things, which in turn is enhancing today’s modern mobile lifestyle and simplifying the way we live and work in the world.

Step 4. Know How

To assist with the integration of JavaTM into Cinterion Modules from Gemalto, a ‘hands on’ training course is available. The course, delivered by Gemalto, teaches the designer or JavaTM programmer the development environment, and useful considerations when developing IoT applications with an intelligent Cellular Module.

About the Cinterion EHS6 Concept board by Gemalto:

The EHS6 Concept Board provides a simple environment with everything a developer needs to quickly transform ideas into cutting edge, market ready M2M applications. The Gemalto EHS6 Concept Board can be connected to Arduino-style sensor boards and includes the powerful Cinterion EHS6 M2M JavaTM module for global 2G and 3G cellular connectivity.

Key Features

  • On-board EHS6 Global 2G/3G wireless module with embedded JavaTM
  • 8 GPIO lines with level-shifters
  • GPIO state indicator LED’s
  • USB and Serial interface
  • On-board SIM card holder
  • Extension board connector for connecting Arduino style sensor boards
  • All Interfaces and supply voltages accessible via Extension Board connector
  • On-board simple battery charging circuit
  • Solder connection for optional rechargeable battery

About the ST X-NUCLEO-IKS01A1 expansion board:

The X-NUCLEO-IKS01A1 is a MEMS inertial and environmental sensor evaluation board system. It is compatible with the Arduino UNO R3 connector layout, and is designed around STMicroelectronics LSM6DS0 3-axis accelerometer + 3-axis gyroscope, the LIS3MDL 3-axis magnetometer, the HTS221 humidity sensor and the LPS25H pressure sensor.

Key Features

  • LSM6DS0: MEMS 3D accelerometer (±2/±4/±8 g) + 3D gyroscope (±245/±500/±2000 dps)
  • LIS3MDL: MEMS 3D magnetometer (±4/ ±8/ ±12/ 16 gauss)
  • LPS25H: MEMS pressure sensor, 260-1260 hPa absolute digital output barometer
  • HTS221: capacitive digital relative humidity and temperature
  • DIL 24-pin socket available for additional MEMS adapters and other sensors (UV index)
  • Free comprehensive development firmware library and example for all sensors compatible with STM32Cube firmware
  • Compatible with STM32 Nucleo boards
  • Equipped with Arduino UNO R3 connector

Anglia are offering customers a FREE Cinterion and STMicroelectronics evaluation board solution and access to the example source code, fill in the form below to register your interest now.

For FREE Evaluation boards please fill in the form below

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Free samples are subject to availability.

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