Filter Results By:

Products

Applications

Manufacturers

Boards

are a PCB format of instrument.

See Also: Modules, Cards


Showing results: 2371 - 2385 of 3348 items found.

  • USB 3 cable, 3 meter, A to Micro B Jackscrews

    156391-03 - NI

    4-Pin Male USB 3.0 Micro-B Jackscrew to 9-Pin Male USB 3.0 Type A Jackscrew or 9-Pin Male USB 3.0 Type A USB 3.0 Cable - The USB 3.0 Cable is the standard cable for USB3 Vision cameras and USB 3.0 interface boards. The USB3 Vision standard provides 400 MB/s bandwidth. The USB 3.0 Cable is offered in different lengths.

  • COM Express Type 2 Starter Kit

    ADLINK Technology Inc.

    The Starter Kit consists of a COM Express Type 2 core module with ATX size reference carrier board that offers one PCI Express graphics slot x16 , four PCI Express x1 slot, two PCI slots, Serial ATA, SDVO, VGA, LVDS, TV-out, USB 2,0, Gigabit LAN, and Super I/O. All necessary cables are included.

  • High Impact Shock Test System

    KRD16 series - CME Technology Co. Ltd.

    High impact shock test system meets MIL-S-901D standard which covers shock testing requirements for ship board machinery, equipment, systems, and structures, excluding submarine pressure hull penetrations. The purpose of these requirements is to verify the ability of shipboard installations to withstand shock loadings which may be incurred during wartime service due to the effects of nuclear or conventional weapons.

  • Design for Test

    Test Coach Corporation

    Test Coach offers Design for Test (DFT) consulting to assist customers with design review of prototype boards prior to release for production. Design for Test analysis is extremely important in ensuring that an assembly will achieve the highest possible test coverage. For ICT, this DFT will review the board to confirm that the bed-of-nails test fixture can be fabricated to test an assembly without sacrificing test coverage. As with ICT, Flying Probe benefits from DFT analysis by reviewing test point access and mechanical challenges that may affect the potential test coverage. Completing a DFT enables Test Coach to make recommendations to our customers that may be implemented on boards during the design phase which will allow for the most comprehensive coverage at time of test.

  • CompactPCI

    3U PMC Carrier - PCI EmbeddedComputer Systems

    This conduction cooled 3U CompactPCI single slot PMC provides an active interface between the CompactPCI bus (backplane) and a PCI Mezzanine Card (PMC). This product addresses the needs of aerospace, military, and rugged applications. It contains a thermal heat frame made of aluminum that fits together with conduction cooled PMC modules. Conduction cooling conducts heat away from the hot spots of the board and transfers the heat to the card edges and to the system chassis. No active ventilation is necessary inside of the system, which means the boards are sealed from the environmental influences found outside of the chassis. The heat frame and integrated wedge locks for the conduction cooling stiffens carrier and PMC module enabling the board to resist high shock and vibration.

  • CompactPCI

    6U PMC Carrier - PCI EmbeddedComputer Systems

    This conduction cooled 6U CompactPCI dual slot PMC provides an active interface between the CompactPCI bus (backplane) and a PCI Mezzanine Card (PMC). This product addresses the needs of aerospace, military, and rugged applications. It contains a thermal heat frame made of aluminum that fits together with conduction cooled PMC modules. Conduction cooling conducts heat away from the hot spots of the board and transfers the heat to the card edges and to the system chassis. No active ventilation is necessary inside of the system, which means the boards are sealed from the environmental influences found outside of the chassis. The heat frame and integrated wedge locks for the conduction cooling stiffens the carrier and PMC module enabling the board to resist high shock and vibration.

  • Flying Probe Tester

    Pilot 4D L4 - SEICA SpA

    The Pilot 4D L4 represents the best solution for those wishing to fully automate the flying probe test process, eliminating the need for continuous operator presence in order to manage the test system. Thanks to its integrated SMEMA conveyor, the Pilot 4D L4 can be combined with automatic load/unload magazines or lines, executing in-circuit, functional and visual tests of electronic boards in a completely automated mode. This is the ideal solution for medium and even high volume production test needs. The large test area can accommodate 21” x 24” boards (540 x 610 mm) board with split test. The ATE rack can be expanded with up to 1032 analog channels, connectable to an optional external bed of nails test fixture (TPM).

  • Flying Probe Tester

    Pilot 4D M4 - SEICA SpA

    The Pilot 4D M4 is a full-performance, double-sided, flying probe test system with an extremely high level of flexibility, making it the ideal solution for those with a wide variety of testing needs, from prototypes to small/medium production volume, through the repair of field returns and reverse engineering. The vertical, compact architecture and the excellent board clamping system ensure that there is no oscillation of the board under test, which in turn greatly facilitates the precise positioning of the probes on the test points.

  • Test Adapter / Extender

    Kontron

    The test adapter is used for measurement and testing of test specimen boards, which gives optimal access of signals, address lines as well as power from backplane assembly.

  • Surface Mount Package Emulation

    SMT Adapters - Ironwood Electronics

    Ironwood’s SMT package emulation adapters are often called “surface mount feet” or “emulator bases”. These adapters provide access and interconnections to surface mount lands. Typically, the adapters are soldered to the target board in place of the IC device and provide a pluggable array of pins interface for sockets, probing adapters, package converters, and even board-to-board connections. These adapters are often utilized as a base for many of our probing adapter products. We constantly innovate to provide the most reliable, cost effective interfaces available. For example, many of our PLCC, QFP and SOIC emulation bases use our proprietary shaped solder techniques, replacing expensive, and often fragile, J-lead and Gull Wing leads. Shaped solder parts are easily fluxed and reflowed onto the target system. Our emulator bases can present either a male or female interface at 1.27mm or 1mm or 0.8mm pitch gold plated array pins for pluggable connection.

  • MAX31855 K-Type Thermocouple Arduino Shield

    SEN-30004-K47 - Playing With Fusion Inc

    Four channel MAX31855 digital thermocouple Arduino Shield. Two versions of this shield are avaliable for each thermocouple type: either 'Ch 0-3' (CS pins use Uno/Mega IO pins 7-10) or 'Ch 4-7' (CS pins use Uno/Mega IO pins 3-6), with the only difference being which set of zero-ohm resistors are populated on the board. This allows use of other SPI devices that may be 'hard coded' to specific digital pins on the Arduino, or simply stacking one of each type together to get a total of eight thermocouple channels on one Arduino. The MAX31855K supports a measured temperature range of -270C-1372C with known thermal characteristics and output resolution of 0.25C. Included thermocouple connectors are type-specific to provide proper material continuity as close to the IC as possible. The SEN-30004 is interfaced via 3 or 4-wire SPI and a high-speed level shifter is included to allow the board to plug directly into an Arduino Uno or Mega

  • MAX31855 J-Type Thermocouple Arduino Shield

    SEN-30004-J03 - Playing With Fusion Inc

    Four channel MAX31855 digital thermocouple Arduino Shield. Two versions of this shield are avaliable for each thermocouple type: either 'Ch 0-3' (CS pins use Uno/Mega IO pins 7-10) or 'Ch 4-7' (CS pins use Uno/Mega IO pins 3-6), with the only difference being which set of zero-ohm resistors are populated on the board. This allows use of other SPI devices that may be 'hard coded' to specific digital pins on the Arduino, or simply stacking one of each type together to get a total of eight thermocouple channels on one Arduino. The MAX31855J supports a measured temperature range of -210C-1200C with known thermal characteristics and output resolution of 0.25C. Included thermocouple connectors are type-specific to provide proper material continuity as close to the IC as possible. The SEN-30004 is interfaced via 3 or 4-wire SPI and a high-speed level shifter is included to allow the board to plug directly into an Arduino Uno or Mega

  • MAX31855 J-Type Thermocouple Arduino Shield

    SEN-30004-J47 - Playing With Fusion Inc

    Four channel MAX31855 digital thermocouple Arduino Shield. Two versions of this shield are avaliable for each thermocouple type: either 'Ch 0-3' (CS pins use Uno/Mega IO pins 7-10) or 'Ch 4-7' (CS pins use Uno/Mega IO pins 3-6), with the only difference being which set of zero-ohm resistors are populated on the board. This allows use of other SPI devices that may be 'hard coded' to specific digital pins on the Arduino, or simply stacking one of each type together to get a total of eight thermocouple channels on one Arduino. The MAX31855J supports a measured temperature range of -210C-1200C with known thermal characteristics and output resolution of 0.25C. Included thermocouple connectors are type-specific to provide proper material continuity as close to the IC as possible. The SEN-30004 is interfaced via 3 or 4-wire SPI and a high-speed level shifter is included to allow the board to plug directly into an Arduino Uno or Mega

  • MAX31855 K-Type Thermocouple Arduino Shield

    SEN-30004-K03 - Playing With Fusion Inc

    Four channel MAX31855 digital thermocouple Arduino Shield. Two versions of this shield are avaliable for each thermocouple type: either 'Ch 0-3' (CS pins use Uno/Mega IO pins 7-10) or 'Ch 4-7' (CS pins use Uno/Mega IO pins 3-6), with the only difference being which set of zero-ohm resistors are populated on the board. This allows use of other SPI devices that may be 'hard coded' to specific digital pins on the Arduino, or simply stacking one of each type together to get a total of eight thermocouple channels on one Arduino. The MAX31855K supports a measured temperature range of -270C-1372C with known thermal characteristics and output resolution of 0.25C. Included thermocouple connectors are type-specific to provide proper material continuity as close to the IC as possible. The SEN-30004 is interfaced via 3 or 4-wire SPI and a high-speed level shifter is included to allow the board to plug directly into an Arduino Uno or Mega

  • Universal Multichannel System up to 1.5 kV

    CAEN S.p.A.

    - From 12 to 48 independently controllable High Voltage channels- 0 ÷ 1.5 kV (A1538D) and 0 ÷ 1/1.3/1.4 kV output voltage (A1515B)- Maximum Current 10 mA, 0.1 or 1/0.1, 3/0.3 mA (dual range boards)- Radiall Multipin, SHV or DB37 connectors- Available with either positive or negative polarity (A1538D and A7038)- Up to 2 nA / 100 pA current set / monitor resolution- Up to 20 mV / 2 mV voltage set / monitor resolution- Very low ripple, down to < 5 mVpp- 3 different channel grounding - Common Ground (AGxxxx) - Common Floating Return (Axxxx) - Full Floating (A1515B only)- Independently programmable for each channel: - Output voltage - Current limit - Ramp up/down - TRIP parameter- Current generator operation in overcurrent condition- Specific design for GEM and Vertex detector and dedicatedaccessories (A1515B boards only)

Get Help