Filter Results By:

Products

Applications

Manufacturers

Microcontroller

a computer on a chip.

See Also: Arduino


Showing results: 256 - 260 of 260 items found.

  • SMARC V2.0 SoM With I.MX8M Quad/Dual 1.5 GHz/1.3 GHz (Industrial) SoC, 4GB RAM, 64GB EMMC, CAN, MIPI CSI/DSI And HDMI 2.0

    SCM180 - Axiomtek Co., Ltd.

    The SCM180 is a SMARC v2.0 system on module with a choice of quad- or dual-core Arm® Cortex®-A53 processors. The ultra low power, high performance, RISC-based module measures only 82 x 50 mm and utilizes the powerful i.MX 8M processor. Its scalability, optimized pinout schematic and low profile design offers high level of versatility to help system integrators drive their important projects forward. The SCM180 is unique among other SMARC modules of its kind because it features Trusted Platform Module (TPM) for optimum security. With a discrete, dedicated microcontroller designed to support hardware encryption and decryption, the SCM180 delivers enhanced security for an added layer of protection. It also offers a choice of operating temperature ranges and can operate reliably in harsh environments. The SCM180 is suitable for a wide range of smart, portable/mobile-integrated IoT applications including robotics, automotive, factory automation, smart agriculture, casino gaming, medical, retail, surveillance and more. With its NXP artificial intelligence core technologies-enabled capabilities, the SMARC module can be programmed to support smart automation and machine-learning application requirements.

  • Combination Board Tester

    ATE QT2256-640 PXI - Qmax Test Technologies Pvt. Ltd.

    Most commercial ATEs does only functional test and do not carry out DC/AC parameter testing, which are very essential in increasing the fault coverage and for achieving near zero field returns. The testing challenges get worse when the boards are equipped with BS compatible components, DSP chips and CPUs or micro controller based boards. ATE QT2256-640 PXI system is designed as a combination board tester capable of testing highly complex and PCBs employing various techniques on a single platform. It can be easily upgraded to 640 digital channels and with programmable UUT power supplies, IEEE or PXI external instrumentation, Bus cycle signature system, ICE and integrated Boundary scan Test AC/DC parametric testing. The ATE is interfaced to an external host PC using a PCI express interface card allowing a maximum data transfer rate. Most commercial ATEs does only functional test and do not carry out DC/AC parameter testing, which are very essential in increasing the fault coverage and for achieving near zero field returns. The testing challenges get worse when the boards are equipped with BS compatible components, DSP chips and CPUs or microcontroller based boards.

  • High Level Language Debugger and Emulator Tool

    Universal Debug Engine - Programmierbare Logik & Systeme GmbH

    With Universal Debug Engine (UDE®) PLS offers on top solutions for software development of systems-on-silicon including debug support for the 16 Bit and 32 Bit microcontrollers C16x, C166™, ST10F276, ST10F280, XC166, XC2000, XE166, XMC4500, C166S V2, SDA6000, TriCore™ from Infineon and STMicroelectronics, Power Architecture® MPC55xx, MPC560x, MPC563x, MPC57xx from NXP™, PowerPC PPC440SPe from AMCC, Power Architecture® SPC560, SPC563, SP574 from STMicroelectronics, ARM7™, ARM9™, ARM11™, Cortex™-M0, Cortex™-M0+, Cortex™-M3, Cortex™-M4, Cortex™-M7, Cortex™-R4, Cortex™-A8, Cortex™-A9, XScale™, SuperH™ SH-2A derivatives in a new multicore debug environment as well as technical support. The extensive feature list includes functions like: high speed and flexible target access via JTAG, cJTAG with OCDS L1, EmbeddedICE, OnCE, COP, DAP, DAP2, SWD support, OCDS L2 trace, MCDS trace, CoreSight™ trace, ETM trace, ETB trace, Nexus trace, ASC, SSC, 3Pin and CAN, in-system FLASH memory programming of FLASH / OTP with UDE MemTool, support of various RTOS, OSEK® and test automation tools.

  • ARINC825 Cards

    AIM GmbH

    AIM’s ARINC825 cards can work either with full functionality as an active CAN node for testing and simulating or in listening only mode for monitoring and recording purposes of Avionic CAN bus (ARINC825) applications on up to 4 electrically isolated CAN bus nodes concurrently. All nodes are in conformance with the ISO11898-1/-2 standard. They are accessible by software separately and can be used as 4 independent CAN bus nodes. An onboard IRIG-B time decoder allows users to accurately synchronize single or multiple modules to a common time source. All supported signals are available through front I/O and rear I/O interface. ARINC825 cards consist of FPGA based CAN interface controllers as well as a FPGA based 32-bit microcontroller core and a separate processor for IRIG-B synchronization with high resolution time stamping. All nodes are operating concurrently at CAN bus high speed bit rate of up to 1Mbit/s with the intelligence to process scheduling of CAN frames in real time onboard to significantly off-load the host processor.For embedded applications the AMC825-4 PMC module is available in a conduction cooled version. Using AIM’s family of PCI, CPCI (3U and 6U) and VMEbus carrier cards for PMC our clients have off the shelf solutions in a broad range of card formats. ARINC825 (CAN bus) modules are delivered with an Application Programming Interface (API) and Driver Software compatible with Windows, Linux and VxWorks.An ARINC825 Resource Component is available for AIM’s PBA.pro™ databus test and analysis tool including Tx and Rx simulation capabilities, a Chronological Bus Monitor and support for decoding of payload data within CAN messages. This allows to implement a powerful ARINC825 (CAN bus) analyzer or a complete test system in conjunction with other AIM avionics databus interfaces and PBA.pro™ supported 3rd party hardware.

  • Universal Programmer Superpro 6100N

    Xeltek

    Until now,Support 401 IC manufacturer, 103004 pcs devices and keeps growing.Features:Supports 87454 types of devices from 305 IC manufacturers (by 3/15/2013) and keeps growing.Supports EPROM、Paged EPROM、Parallel and Serial EEPROM、FPGA、PROM、FLASH(NOR & NAND)、BPROM、NVRAM、SPLD、CPLD、EPLD、Firmware HUB、Microcontroller、MCU;Supports devices with Vcc as low as 1.2V. Socket Adaptors available for DIP、SDIP、PLCC、JLCC、PGA、LGA、SOIC、SOJ、SOT、QFP、TQFP、PQFP、VQFP、MQFP、LQFP、TSOP、SOP、TSOPII、PSOP、SSOP、TSSOP、SON、EBGA、FBGA、FTBGA、VFBGA、μBGA、CSP、SCSP、QFN、HVQFN etc.High programming speed.Built with 144 universal pin-drivers. Universal adaptors are available for varies packages up to 144 pins. Quick new device support. Popular NAND FLASH Platform supported including Samsung (XSR1.0/1.6), QualComm, HYNIX(HIFFS), MTK(Solution V1.1), ICERA (v1.0/2.0), ST (7162、7141等), AMLOGIC(IF2/0), REALTEK, PICOCHIP, DataLight ( Flash FX Pro), Marvell(310/303/920/935…), BroadCom, ZTE, Intel (CE4100),UBI, LEADCORE(L1809OG), MSATR etc. Customer-specific NAND solution available.PC hosted mode and stand-alone dual modes. Under PC hosted mode the programmer is controlled by a PC via USB2.0 (high speed) to program a chip. Under stand-alone mode the programmer is controlled via a 6-KEY keypad and a 20 character by 4 line LCD display. A CF card is used to store the project files.User can operate multiple units to construct a concurrent multiprogramming system thank for the stand-alone mode. IC manufacturer approved programming algorithms are used for high reliability.Testing functions for logic devices.Advanced and powerful software functions.Production mode starts chip operation at the moment the chip is inserted in the socket properly.Project function simplifies processes such as device selection, file loading, device configuration setting, program option, and batch file setting into one touch step.Password can be set for project files and production volume controlBatch command combines device operations like program, verify, security into a single command at any sequence.Dynamic buffer makes it possible that each chip is programmed with different data file. Applications including serial number, MAC address etc.Log file is useful for quality tracking.Many safety mechanisms are built including self-diagnosis, wrong chip placement detection, poor-pin-contacting detection, ID checking, over-current and over-voltage protection etc.Windows XP/Vista/Win7/ Win8/Win10 compatibility.

Get Help