MEMS analogue accelerometers tolerate temperature fluctuations

Enhanced temperature performance, low cost, general purpose, analogue, surface mount accelerometers have been launched by Silicon Designs. There are eight models in the Model 1522 series ranging from ±2g to ±400g.

According to Silicon Designs, the Model 1522 series provides reliable vibration and acceleration measurements within more thermally demanding zero-to-medium frequency applications. These can be characterised by large or rapid temperature fluctuations or, where high or low temperature extremes must otherwise be maintained over an extended time frame. The accelerometers also provide superior bias and scale factor performance over an expanded operating temperature range of -55 to +125 degrees C, says the company, further responding to both AC and DC acceleration.

The Model 1522’s robust design combines a micro-machined capacitive sense element together with a custom integrated circuit (IC). The circuit includes both a sense amplifier and a ±4V differential output stage. An additional integral temperature sensor facilitates the self-correction of any previously characterised bias and scale factor temperature dependence for any one particular accelerometer. All accelerometer internal components are housed within a hermetically-sealed and nitrogen-damped LCC surface mount package. Units are also RoHS-compliant.

Each Model 1522 series accelerometer is made to be virtually identical within a given g-range, says Silicon Designs. Units are tested in-house, programmed, calibrated and verified within a climate chamber environment for continued measurement accuracy and reliability, particularly under thermally volatile conditions. Each accelerometer is marked with a serial number for traceability and is shipped with an initial test report. The test report lists measured bias, scale factor, bias and scale factor temperature coefficients, linearity, operating current and DV frequency response/phase plots.

The accelerometers are in production and available for immediate shipment.

Silicon Designs was founded in 1983 with the goal of improving the accepted design standard for traditional MEMS capacitive accelerometers. At that time, industrial-grade accelerometers were bulky, fragile and costly. The engineering team at Silicon Designs listened to customers who required more compact, sensitive, rugged and reasonably priced accelerometer modules and chips, which also offered high performance.

https://www.silicondesigns.com

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Fingerprint sensor authenticates via smartphone’s display

Believed to be the largest surface fingerprint-on-display (FoD) module, designed with organic printed electronics, a four-finger authentication module by Isorg will be demonstrated at CES 2020.

It is expected to bring higher data security to mobile devices, says the company. The company specialises in organic photodetectors (OPDs) and large-area image sensors and will demonstrate the full-screen Fingerprint-on-Display (FoD) module which supports up to four fingers simultaneously touching a smartphone display.

Isorg’s FoD module responds to demands from OEMs and end-users for higher security technologies that can support large surface area fingerprint sensing. Solutions currently available are restricted to single finger identification within a surface area of less than 10 x 10mm. Isorg’s FoD module supports one- to four-finger authentication across the entire dimensions of the six-inch (152mm) smartphone display (or even larger). The module is very thin, less than 0.3mm thick, so integration into smartphones is made easy for OEMs, added the company.

In addition to the image sensor, the module includes optimised thin film optical filters developed in-house and driving electronics, as well as software from Isorg’ industrial partners covering the interface with smartphone OS and the matching algorithm. The scalable FoD is compatible with foldable displays, added the company.

Isorg’s four-finger authentication capability paves the way for secure smartphone mobile banking and payments, personal health monitoring and remote home control applications, including enhanced data protection for wearables, such as access control. By enabling more identification data to be captured with multiple fingers, it significantly reduces the risk of false finger identity theft, in addition to the ease of use by being able to place fingerprints anywhere on the display.

Smartphone OEMs will be able to sample Isorg’s Fingerprint-on-Display module in spring 2020. In parallel, Isorg is also extending development of its FoD for application in the biometrics security market, aimed at meeting growing security needs in access control, border control and other identity access management areas, including mobile ID applications.

The live demo will take place at Eureka Park Tech West – Sands Expo, Level 1, Hall G booth #50463 at CES Las Vegas (7 to 10 January 2020)

http://www.isorg.fr

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Microchip delivers early access for RISC-V enables PolarFire SoC FPGAs

At this week’s RISC-V Summit in San Jose, California, USA, Microchip has announced an early access program for its PolarFire SoC.

Explaining the reason behind the programme, Microchip cited the trend towards compute-intensive gateways and edge devices which is driving the integration of traditional deterministic control applications with the additional embedded processing capabilities needed for smart and secure connected systems. The early access programme for the PolarFire SoC FPGA offers what is claimed to be the world’s first hardened real-time, Linux-capable, RISC-V-based microprocessor sub-system on the mid-range PolarFire FPGA family. According to Microchip, this brings low power consumption, thermal efficiency and defence-grade security to embedded systems.

Qualified customers can start designing now with Microchip’s Libero SoC 12.3 FPGA design suite and SoftConsole 6.2 integrated development environment (IDE) for the embedded developer. Customers can also debug embedded applications using Renode, a virtual model of the microprocessor sub-system.

The company believes that, in addition to driving innovation in the embedded space, as designers develop a new class of power-efficient applications, there will also be the opportunities to add “unprecedented capabilities” at the edge of the network for communications, defence, medical and industrial automation.

PolarFire SoC delivers power efficiency that is up to 50 per cent lower power than competitive devices in the industry, said Microchip. This reduces the bill of materials by eliminating the need for fans and heat sinks. It is believed to be the first SoC FPGA with a deterministic, coherent RISC-V CPU cluster and a deterministic L2 memory subsystem enabling Linux plus real-time applications.

The support of real-time and rich operating systems such as Linux is part of Microchip’s growing Mi-V RISC-V ecosystem, a comprehensive suite of tools and design resources developed by Microchip and third parties to support RISC-V designs. Ecosystem partners ready to support PolarFire SoC include WindRiver, Mentor Graphics, WolfSSL, ExpressLogic, Veridify, Hex-Five, and FreeRTOS as well as development tools from IAR systems and AdaCore.

http://www.microchip.com

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PV inverter is complemented with cloud-based monitoring apps

At EnerGaia 2019 in Montpellier, France, Delta Electronics will highlight the M70A solar PV inverter and PV monitoring apps.

The M70A solar PV inverter offers 77kVA maximum AC apparent power for ground-mounted and commercial solar rooftop systems.

The company has also developed MyDeltaSolar Cloud and PV monitoring apps for remote setup, monitoring, and control of solar photovoltaic systems.

The M70A is a three-phase string inverter with 77kVA maximum AC apparent power for ground-mounted and commercial solar rooftop systems. The design is compact and lightweight, making it easy to transport and install. There are six MPP trackers with three pairs of connectors each to allow system planners flexibility in arranging module strings and maximising yields. Module rows for ground-mounted systems require only minimal spacing as a result. Smart allocation of the MPP trackers can compensate potential shadowing, added Delta Electronics.

Even complex rooftop systems that have multiple sections with different alignments are easy to implement with the M70A, continued the company. If the system uses two strings per DC input, it does not require external string breakers.

Peak efficiency for the M70A is 98.8 per cent and it has a broad input voltage range from 200 to 1,100V DC. It can accommodate up to 18 strings via Amphenol connectors and string monitoring includes measurement of the I-V curve data at each individual string.

There are Type 2 surge protection devices pre-installed on the input and output sides and the inverter is supplied in a robust aluminum housing with IP65 protection.

The cloud monitoring service with free app for iOS and Android, MyDeltaSolar Cloud works with all Delta inverters and allows operators and installers to quickly set up and manage multiple systems and inverters. The system is available free of charge for five years with the purchase of a Delta solar inverter.

Users can monitor the performance of their Delta inverters in the MyDeltaSolar Cloud including current and voltage data. They can also see daily, monthly, and annual PV yields. No cabling is required to connect a wireless-enabled Delta inverter to the new Delta DC1 data collector. Delta’s M6A, M8A, and M10A inverters all ship with wireless communications pre-installed and Wi-Fi is an optional feature for the M70A.

Alternatively, installers can connect to the MyDeltaSolar Cloud via the inverter´s RS485 interface. Delta hosts the cloud software on its own secure servers to guarantee maximum data security and protection against external threats.

https://solarsolutions.delta-emea.com

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