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Flash Memory

retains data absent of power. AKA: Flash Device


Showing results: 121 - 135 of 168 items found.

  • Electrical Safety Testers

    STW-9800 Series - Texio Technology Corp.

    * 200VA AC Test Capacity* 240 x 64 Ice Blue Dot Matrix LCD* Manual/Auto Mode* Function Key for Quick Selecting* High Intensity Flash for Caution & Status Indication* Safety Interlock Function* True RMS Current Measurement * High Resolution : 1μA for Measuring Current, 2V for Setting Voltage* PWM Switching Amplifier to Enhance the Power Efficiency and Reliable Testing* Max. 100 Memory Block for Test Condition (Step) Setting. And Each Step can be Named Individually* Remote Terminal on the Front Panel for“Start”and“Stop” Control by External* Interface: RS-232C, USB Devise, Signal I/O and GP-IB (Option: OPT.1)

  • 6U Compact PCI Express Board

    CP62201 - LinkedHope Intelligent Technologies Co.,Ltd.

    CP62201 is a 6U compactPCI Express board based on Intel 4th generation core i7/i5 processors, up to 4 cores/8 threads, with base frequency at 2.4GHz, and turbo frequency up to 3.4GHz. CP62201 supports up to 16GB onboard soldered low voltage DRAM with ECC, dual channel, up to 1600MHz. CP62201 supports up to 6 SATA storage ports, one of which connects up to 128GB onboard Flash storage. The populated memory and SSD enhance the anti-shock and vibration performance.CP62201 integrates Intel® HD Graphics 4600 controller, supporting a variety of display outputs, such as eDP, DP, HDMI, DVI and VGA. The output resolution of VGA is up to 2048x1536, while it can be up to “4K” with HDMI, DP or eDP outputs. CP62201 supports one VGA and two DVI, up to three independent or cloned displays.CP62201 uses high speed ZD connectors for transferring PCIe3.0 USB3.0 and SATAIII and other high speed interfaces.

  • 6U CPCI Processor Board

    CP67001 - LinkedHope Intelligent Technologies Co.,Ltd.

    CP67001 is a CompactPCI® processor board based on China local-manufactured Phytium FT1500A/4 4 cores ARM processor, with more than 10-year lifecycle. Designed with ARM v8 Architecture, 28nm process technology and fine-grained power optimization technologies, its CPU integrates 4 ARM cores with CPU clock speed up to 2.0 GHz. Combined with the maximum power consumption of 15w, CP67001 is highly applicable for making low-power-consumption solutions.Equipped with Intel82580, CP67001 supports 4x Gigabit Ethernet; 4x SATA 2.0 and 8x USB 2.0; 1x16 PCI Express for XMC and PMC; SM750 graphic controller with resolution up to 1920x1080p. CP67001, as a single board computer has up to 64GB flash memory, provides outputs including HDMI, DP, DVI and VGA, and provides 2 serial ports with one port supports RS232/RS422/ RS485 configurable through software. In addition, CP67001 supports GPIO and can meet customized demands in different situations.

  • Electrical Safety Testers

    STW-9900 Series - Texio Technology Corp.

    * 500VA AC Test Capacity* 240 x 64 Ice Blue Dot Matrix LCD* Manual/Auto Mode* Function Key for Quick Selecting* High Intensity Flash for Caution & Status Indication* Safety Interlock Function* Zero Crossing Turn-on Operation* Zero Crossing Turn-on Operation* True RMS Current Measurement * High Resolution : 1μA for Measuring Current, 2V for Setting Voltage* PWM Switching Amplifier to Enhance the Power Efficiency and Reliable Testing* Max. 100 Memory Block for Test Condition (Step) Setting. And Each Step can be Named Individually* Remote Terminal on the Front Panel for“Start”and“Stop” Control by External* Interface: RS-232C, USB Devise, Signal I/O and GP-IB (Option: OPT.1)

  • 6U VPX Computing Payload

    VP62108 - LinkedHope Intelligent Technologies Co.,Ltd.

    VP62108 is a 6U VPX computing payload based on Intel® 4th generation Core™ Processor. It supports Intel® 4th generation Haswell architecture i3/i5/i7 dual-core or quad-core embedded processor, up to quad-core i7 processor 4860EQ with a life cycle of more than 7 years.VP62108 provides four serial RapidIO (SRIO) x4 links for VPX data plane communications, two x8 PCIe links for VPX expansion plane communications and four Gigabit Ethernet links for VPX control plane communications. Its rich data exchange capability allows users to easily build the whole machine or system-level solutions.VP62108 supports up to DDR3L 16GB ECC memory and offers reliable data transmission. Its onboard solid state Flash managed by a SATA interface controller can be up to 64GB SLC or 128GB MLC. And the entire board uses the reinforced conduction-cooled design and has a wide operating temperature, allowing the user not to worry about its working stability in harsh environments. This feature makes VP62108 particularly suitable for critical mission areas.

  • 6U CompactPCI Quad Core Intel® Xeon® Processor Blade

    MIC-3397 - Advantech Co. Ltd.

    Advantech’s MIC-3397 is a 6U CompactPCI single board computer with a choice of server class processors based on the Quad-Core Intel® Xeon® E3-1125C v2(40W), with DH8900 chipset. The processor is based on Intel® 22nm 64 bit process technology, with up to 2.5GHz clock speeds 8MB L3 cache, Intel® Hyper-Threading, Virtualization, and Trusted Execution Technology, all of which enable the board for applications requiring higher levels of performance and security. The MIC-3397 supports dual channel ECC memory, up to 16GB DDR3 at 1333/1600MHz with max 8GB on board and 8GB SO-DIMM memory, three 2.5” Serial ATA interfaces (one on board optional with one 8 GB NAND flash, two to RTM),one Cfast slot, five Gigabit Ethernet ports (two on front panel, two to PCIMG2.16, two to RTM with one optional on the front panel), six USB2.0 ports (three on front panel, three to RTM), two VGA ports (one on front panel, one to RTM) on the 4HP model, three COM ports (one to front panel, two to RTM), one PS/2 port, and one PCIe2.0 x4 interface reserved for user define extensions on the rear transition module. MIC-3397 Series can be installed in a standard CompactPCI system slot as system master, or peripheral slot as stand-alone server blade without CompactPCI bus communication, it meets the needs of applications operating in harsh enviroments and is ideally suited for datacom, telecom and military applications. Its outstanding graphics capabilities make it a good choice for image-processing in medical, defense system and many other vertical segments applications.

  • Hardy Shaker

    HI-903 - Metrix

    This is our top of the line Hardy Shaker. It provides the ability to set the amplitude and change the frequency range without the amplitude changing. This automation makes conducting vibration tests easier. Tests can be conducted on multiple vibration transducers, and then the saved data can be transferred via USB Flash Drive to be displayed in an automated and customizable report using an Excel template on your computer. In manual mode, the vibration test level and test frequency can be set from 7 Hz to 10,000 Hz. The high accuracy instrument can display the vibration level in terms of g’s peak, velocity peak (in/sec or mm/s) or displacement peak-to-peak (mils or µm). The unit can support payloads up to 800 grams (see frequency limits in the manual). A built-in display reads the output sensitivity, which can be stored in memory. Complete testing sequences and data can be stored in memory for each tested sensor, the unit logs the data on the spot or stores it for later use. For testing of heavy transducers or at high frequencies, the HI-903 automatically corrects the sensitivity calculation for the effects of transducer mass loading. A built-in self-test program checks for accuracy of all calculations. The HI-903 has a built-in battery charger that can operate on 120 or 240 VAC. The unit comes in a rugged Pelican case.

  • High Performance Power Analyzer

    AFM-8A - Chuan Sheng Electronics Co., Ltd.

    AFM-8A has Developed for AFC*(Auto Frequency Control) high performance measurement and frequency update, its update up quickeer than 100mSec. multifunction power analyzer provides high-accuracy measurement and is designed for single phase and three phase application. It includes 4 Digital inputs, 4 Relay outputs, and a RS-485 Modbus RTU Communication port. The user can choose one more communication port, and 2 Analog outputs for output expansion.It provides measure voltage and current of the 2~63 harmonic, and it shows CO2 emissions, which is suitable for power monitoring, management and analyze power quality. It has TOU (time-of-use) function and 4MB Flash memory capacity, allowing users to record data for a long time. It also has a software line adjustment function to reduce the on-site line adjustment work.It has the functions of waveform capture and recording, power record, and event record, which can be used for multifunction power analyzer.

  • 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.

  • OpenVPX CPU Blade with Intel® Xeon® D-1500 family Processor

    MIC-6315 - Advantech Co. Ltd.

    The MIC-6315 is the 6U OpenVPX processor blade echoing to the customer’s requirements. Based on the Intel® Xeon® D-1500 processor family, the MIC-6315 supports to 12 cores/24 threads, to fulfill the computing requirements form the customer. The MIC-6315 provides various high speed interfaces to communicate with the system: dual Serial Rapid I/O on the Data Plane, a configurable PCIe gen. 3 x 16 port on the Expansion Plane, with another x8 and x4 PCie ports on the user-define plane, and there are two 40GBase-KR4 ports available on the user-define plane. These interfaces enable the possibility of high speed data communication to optimize the performance of the product. Serial Rapid I/O and PCI express have low latency, scalable, error recoverable deterministic interconnectivity to the mainstream peripherals and I/O cards to create a system with vast functions. To maintain the maximum memory throughput in the different harsh environments, the Advantech R&D teams dedicate themselves to optimize the layout of the product. The MIC-6315 is capable to support ECC in a dual channel design running up to 2133MT/s with 64GB capacity*, and has the default capacity of the onboard DDR4 with 32GB or 16GB. The MIC-6315 offers three types of the storage options: A 64GB onboard NAND flash as the native storage, and three M.2 sites with 1x SATA M.2, 2x NVME M.2 interfaces are supported at the same time. The MIC-6315 has a reinforced convection-cooled heatsink as the thermal solution. Two native ruggedized connectors are available on the front panel, and several common I/O port connectors can be used for debugging purpose at the same time. Compliant with the IPMI 2.0, the MIC-6315 uses Adavantech-code-based board management solution, and supports iKVM, remote control and upgrade. This Advantech BMC code uses the LTS kernel for stability and security, and enables the possibility of customization. The user can setup the PCIe switch configuration in the BIOS menu without any firmware or hardware modification.

  • Micro-Ohmmeters

    RMO-G Series - IBEKO Power AB

    The RMO-G is a portable micro-ohmmeter designed for contact resistance measurement of non-inductive test objects and applications with increased safety requirement. It tests medium and high-voltage circuit breakers, disconnecting switches, high-current bus bar joints, cable splices, and different high-current links. Due to its Both Sides Grounded and Remote Control functionalities, the instrument accurately measures even in the most demanding environments, providing additional safety to testing personnel.The RMO800G is the most powerful portable micro-ohmmeter on the market with 800 A output current. RMO200G is our best seller in the USA. A user can choose the appropriate model depending on the output current requirement, from 100 A (RMO100G) to 800 A (RMO800G).We use an unbreakable plastic case with IP67 protective rating (with closed lid) for instruments’ housing. Although very portable and lightweight, RMO-G micro-ohmmeters have very high output power capabilities. High output voltage enables a wider measurement range at higher test currents. Consequently, it enables the usage of thinner/longer test cables. RMO-G generates a true DC ripple-free (less than 1 % ripple) current with automatically regulated test ramps. During the testing, it increases current before measuring and decreases current after the measurement. This significantly decreases magnetic transients and ensures great accuracy.Special current clamps measure a current through groundings when the instrument tests in Both Sides Grounded conditions. The instrument itself powers these clamps. If even higher safety level is required, the Remote Control feature enables the operator to perform measurements from distant locations.RMO-G instruments can store up to 500 measurements in internal memory. Also, they have a built-in thermal printer and USB flash drive available as an option. An additional option is the built-in High Precision module suitable for measurement of very low resistance, in the range from 1 to 30 µΩ, with 0,01 µΩ resolution.Our free DV Win software communicates with the RMO-G micro-ohmmeters via USB or RS232 interface. It allows a user to run the test remotely from a PC. Also, a user can download test results, analyze and generate fully configurable test reports through the software.

  • Compute Module Development Kit 3

    Raspberry PI Foundation

    The Compute Module Development Kit 3 is a prototyping kit for those who wish to make use of the Raspberry Pi in a more flexible form factor, intended for industrial applications. The compute module contains the guts of a Raspberry Pi 3 (the BCM2837 processor and 1GB RAM) as well as a 4GB eMMC Flash device (which is the equivalent of the SD card in the Pi). The accompanying IO Board is a simple, open-source breakout board that you can plug a Compute Module into. The board hosts 120 GPIO pins, an HDMI port, a USB port, two camera ports and two display ports.

  • Ethernet to CAN Bus Gateway

    YAV90090 - 6TL Engineering

    • High-performance Arm Cortex-M3 MCU with 512 Kbytes Flash, 120 MHz CPU, ART Accelerator, Ethernet P/N STM32F207IEH6• USB 2.0 connector for serial data transfer (reserved for factory use)• Connections for CAN, and power supply via 4-pole Weidmüller connector• Reboot and reset of the device to factory defaults with a reset button• Plastic casing for benchtop operation• LEDs for device status and power supply• Voltage supply from 8 to 30 V

  • FPGA-Based Ultra-Fast Flash Programmer

    XJFlash - XJTAG Ltd.

    XJFlash is an FPGA-based advanced and innovative method that uses JTAG for high-speed in-system programming (ISP) of flash memories – all serial and parallel flash devices are supported. The most common use of XJFlash is programming the SPI/QSPI NOR flash used to configure an FPGA.

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