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Showing results: 61 - 70 of 70 items found.

  • Automated Programmer Superpro Sb05

    Xeltek

    ※ Four Pick & Place nozzles, Eight socket pressing actuators and 2 tape feeders※ High throughput up to 2400UPH※ Embeded with eight ultra-high speed programmers SuperPro / 7500, each with up to 4 sockets, totally 32 sockets. Throughput 60 times higher than SuperPro / SB01 for eMMC devices※ Supports over 80,000 devices from over 300 IC manufacturers※ Supports tray, tape and tube input and output. Supports laser and ink marking※ Short change-over time※ Intelligent s/w cuts learning curve and setup time, makes task management an easy job※ Compact sizeHigh throughput:4 nozzles, 8 independent socket pressing actuators and 2 tape feeders. Up to 2400 UPH for devices with programming time less than 50 sec. Throughput 0.6 to 60 times higher than SuperPro/SB01, especially higher for large capacity devices like eMMC, NAND /NOR FLASH,SPI FLASH. Suitable for both small and large capacity devices. Prog. Time (S) 50 60 120 180 240 300 UPH (unit per hours) 1600 1600 840 560 420 336 Accurate positioning:Equipped with high performance servo system, precise CCD cameras and vision algorithm for device alignment and sockets / pick & place spots positioning.High performance programmers: 8 ultra-high speed universal gang programmers SuperPro/7500 resident. Each with up to 4 sockets, totally up to 32 sockets in the system. Supports up to 100,000 devices from over 300 IC manufacturers and growing.Varied I/O devices:Supports tray, tape and tube input and output. Supports laser and ink marking. Supports packing conversion and can work as a packing conversion machine alone.Short change-over time:I/O devices and socket adaptor are easy to be changed when programming task need to be changed. Socket positioning can be performed automatically. Projects can be loaded automatically with barcode scanning.Powerful and intelligent software:Setup data saved for next operation, log file and statistic reports for quality and yield traceability, flexible sockets prohibition strategy promises high yield rate for unattended operation, graphical user interface cuts learning curve, prevents chip over-lapping by socket checking before chip placing.Remote Control:Remote project loading, quality monitoring, volume control, file security.

  • spectrometers

    ASC-5216 - Avantes Inc.

    The ASC-5216 is the smallest OEM electronics board Avantes offers. It can be used with the Sony (ILX511, ILX554B) and Toshiba (TCD-1304) CCD detectors. Featuring the same powerful 5126 Coldfire processor as used in the AS-5216, it's equipped with a Hirose ST60-36p connector. It has 12 programmable IO ports (3 DI, 9 DO), 2 analog out ports and 2 analog in ports. One digital out port is used for controlling the flash rate of an external Xenon strobe (AvaLight-XE), one digital out port is used to control external TTL-shutter devices, one digital output is reserved for external control for flashing a laser source in LIBS applications. One digital in is used for external hardware triggering.

  • JTAG Debugger Software

    JSCAN - Navatek Engineering Corp.

    JSCAN lets you view and control JTAG pins in real-time without having to touch your board! With a simple click of your mouse, you can set pins HIGH or LOW and observe the results right on your PC.J-SCAN works independently of any logic inside the JTAG device, you do not need any special firmware, code or logic installed. View and control pins in real-time, program FLASH memories, create test macros, for system test, easy to use graphical interface and affordable.

  • JTAG USB Controller

    NetUSB-1149.1/E - Corelis, Inc.

    The NetUSB-1149.1/E (4 TAPs) is an advanced USB 2.0 and LAN-based controller that can be used in the testing and/or in-system programming (ISP) of devices, boards, or systems compliant with the IEEE-1149.1 standard. The NetUSB-1149.1/E controller supports concurrent (gang) testing and in-system programming of CPLDs and Flash devices at TCK rates of up to 80MHz.The controller connects to the computer either through the USB interface or LAN interface for easy installation at nearby or remote locations. Other features include signal delay compensation for long cable lengths to the UUT, TAP signals, and GPIO discrete signals which are individually programmable from 1.25V to 3.3V, programmable slew rate control and pre-power up test for shorts between power and ground traces on the UUT.

  • 3U CompactPCI Single Board

    CP32104 - LinkedHope Intelligent Technologies Co.,Ltd.

    CP32104 is a 3U CompactPCI single board, low power, small size, high integration, high reliability embedded computer module compliant with PICMG® CompactPCI specifications.CP32104 offers a variety of processor options enabling customers to choose such as D2550、N2600 and N2800. The onboard memory, flash and SATA make sure CP32104 with good anti-shock and vibration performance.The design and production of CP32104 are controlled by full life-cycle management, so CP32104 can be long time available, as ensures maximum support for the maintenance of long life programs.Benefit from its high performance/power ratio, CP32104 works stably in extended temperature range, and is an ideal selection for high reliability and high availability required applications, like harsh environment communication, network security, video/image processing and can also be an ideal control unit in variant devices and equipment.

  • SMARC Short Size Module with NXP i.MX 6 Multicore Arm® Cortex®-A9

    LEC-iMX6R2 - ADLINK Technology Inc.

    The SMARC ("Smart Mobility ARChitecture") is a versatile small form factor computer Module definition targeting applications that require low power, low costs, and high performance. The Modules will typically use ARM SOCs similar or the same as those used in many familiar devices such as tablet computers and smart phones. Alternative low power SOCs and CPUs, such as tablet oriented X86 devices and other RISC CPUs may be used as well. The Module power envelope is typically under 6W. The Modules are used as building blocks for portable and stationary embedded systems. The core CPU and support circuits, including DRAM, boot flash, power sequencing, CPU power supplies, GBE and a single channel LVDS display transmitter are concentrated on the Module. The Modules are used with application specific Carrier Boards that implement other features such as audio CODECs, touch controllers, wireless devices, etc. The modular approach allows scalability, fast time to market and upgradability while still maintaining low costs, low power and small physical size. To stress on its low power consumption feature, ADLINK has named SMARC products as LEC (Low Energy Computer on module) series.

  • Semiconductor Memory Tester

    T5851 - Advantest Corp.

    Advantest Corporation has introduced the T5851 system, designed to provide a cost-effective test solution for high-performance universal flash storage (UFS) devices and PCIe BGA solid-state drives (SSDs) memory ICs in high demand by makers of low-power, mobile applications such as smart phones, tablets and ultra-portable laptops. The flexible T5851 tester is available in both production and engineering models. This allows the system to be used for reliability and qualification testing as well as test-program development or, when equipped with an automated component handler such as Advantest''''s M6242, high-volume production. As a fully integrated, system-level test solution, the T5851 provides multi-protocol support in one tool while its tester-per-DUT architecture and proprietary hardware accelerator allow it to achieve industry-leading test times.

  • Measurement System For Testing & Binning Of Back-End LEDs

    TP121-TH - Gigahertz-Optik GmbH

    The photometric specifications of LEDs must meet very high tolerance requirements regardless of whether they are to be used in general, automotive or other specialist lighting applications. This is often a problem since the manufacturing tolerances of LEDs can be higher than those permitted in the end-use applications. Also, LED binning by LED manufacturers in order to classify LEDs based on their tolerances is performed with flash mode testing using pulsed current flow. However, end-use applications of the LEDs often operate in constant current mode and with significant thermal effects. The sophisticated LED processing industry therefore requires measurement devices that can be used for both manufacturer-compliant pulsed mode, as well as constant current operation mode. When the LEDs are run in constant current mode, the junction temperature has significant influence on the performance and lifetime of the LED. Therefore, test systems should be able to test the LEDs at specific junction temperatures.

  • RISC-based DIN-rail Fanless Embedded System With I.MX 6UL Processor, COM, LAN, DIO (2-in/2-out), 4 AI Channels (16-bit, 250 KS/s) And 2 PCIe Mini Card Slots

    IRU152 - Axiomtek Co., Ltd.

    The IRU152 is powered by the low-power NXP i.MX 6 UltraLite processer. It can withstand an extended operating temperature range of -40°C to +70°C and up to 2G of vibration for operating in harsh environments. Furthermore, it supports NI LabVIEW to allow users to design graphical user interfaces for their measurement applications quickly and efficiently. In order to provide data collection and device control, the IRU152 comes with various I/O connectors, including four analog input (AI) channels, one isolated RS-232/422/485 port, one isolated LAN and one isolated DIO (2-in/2-out). The four analog input channels have differential input configuration and overvoltage protection of 55V DC. The maximum sampling rate of IRU152 is up to 250 kS/s with a 16-bit resolution for low-speed high-resolution sensor monitoring and signal measurements. Apart from the abovementioned features, the IRU152 comes in two PCI Express Mini Card slots and one SIM card slot for Wi-Fi, 3G/4G and LoRa connections. The DIN-rail embedded system is equipped with onboard 512MB DDR3 SDRAM; besides, they have an 8GB eMMC flash memory. The extremely low power industrial IoT gateway has passed the Heavy Industrial certification and FCC part 15 to ensure the excellent quality and highly reliable performance.

  • 3U OpenVPX CPU Blade with Intel® Xeon® Processor E3v5 and E3v6 family

    MIC-6330 - Advantech Co. Ltd.

    Based on the Intel® Xeon® E3 Lv5 and Lv6 embedded platform, the MIC-6330 builds on the success of Advantech’s 6U VPX boards, and is the first 3U VPX product launched by Advantech. Together with the Intel® processor, the MIC-6330 offers intense computational ability in a very compact form factor. The MIC-6330 provides configurable connectivity (up to four ports) of PCI Express via the backplane to the highest performance mainstream peripherals and I/O cards, and vast I/O functions for extended interconnectivity and controllability. The MIC-6330 meets various computing needs, including vPro™ and workstation capabilities, by using the Intel® CM236/CM238 PCH. The MIC-6330 offers high storage capacity at up to SATA 6Gbps transfer speed. Four USB2.0 ports and one USB 3.0 port to the backplane fulfill requirements for extra I/O ports or storage, up to 5Gbps data rate. Four GbE ports (two ports configurable as SERDES) support system level IP connectivity, and the UART interfaces (RS-232/422/485 selectable) can be leveraged as an interface to legacy devices and consoles. Like Advantech’s 6U VPX products, the MIC-6330 supports multiple displays, and the maximum resolution of the MIC-6330 is 4K, empowered by the Intel® integrated graphics engine. The MIC-6330 also offers a High Definition Audio to the backplane interface for media demands. With the standard ruggedized convection cooled heatsink or the optional air-cooled heatsink, the MIC-6330 is tailored for harsh environmental applications and adaptable to various chassis designs. The industrial NAND Flash, and the soldered onboard DDR4 ECC memory chips are appropriate for a variety of vehicle applications for the maximum reliability. The MIC-6330 is sophisticated and suitable for various purposes. An onboard X8D XMC site with PCIE x8 gen.3 connectivity can host high speed offload or I/O mezzanines for project-specific applications. For applications that need the maximum expandability, the XMC interface can be modified to add another DisplayPort and the 2 more UART. The optional front I/O module facilitates the development and qualification process, and also enables the possibility of the front panel access.

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