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Showing results: 571 - 585 of 631 items found.

  • Digital Low Resistance Tester

    TH2512 - Shenzhen Chuangxin Instruments Co., Ltd.

    The TH2512 series digital dc low resistance tester i s an intelligent, wide range, high-precision tester which suitable for transformer, inductor copper resistance, relay contact resistance, switches, connectors, wire resistance, contact resistance component solder contact resistance, PCB line, welding hole resistance and metal detection, etc. It’s applied to the production line and can use HANDLER interface and GPIB interface (option) output good/bad signal, in order to improve production line automation testing capability.

  • Automated Optical Inspection (AOI)

    TR7700 SII - Test Research, Inc.

    Featuring a large 4 MP color camera and capable of inspection speeds of up to 120 cm2/sec at 15 µm, the TR7700 SII automated optical inspection system offers TRI' trademark Dynamic Imaging technology for powerful pre/post reflow inspection in a slimmer, faster and more economical package. The system features an advanced, highly flexible RGB+W lighting system with ultra-low-angle lighting for better inspection of polarity and black components and is capable of inspecting 01005 fine pitch components in both lead-free and legacy PCB assemblies.

  • Loudspeaker Cable Testers

    EMO E450 - EMO Systems Canford Audio PLC

    The EMO E450 cable tester will test for continuity, cross connection, and open circuit in cables fitted with NL8FC 8-pole and NL4FC 4-pole Speakon connectors, 3-pin XLR connectors, and 2 or 3 pole A-gauge jacks. EP retrofit kits are available to allow cables fitted with EP 4, 5, 6, or 8 pin connectors to be tested. The EP connectors fit in two pre-punched holes on the rear of the tester accessed by removing the blanking panel. The kit's flying leads plug directly into connectors mounted on the tester's PCB.

  • VTAC, Insert, Receiver/ITA, SIM, Pass-Thru, 8 Pos, 1 Slot

    610151103 - Virginia Panel Corporation

    VTAC inserts are reversible and can be used as a Receiver or ITA insert.VPC's revolutionary high speed VTAC insert contains 8 gold-plated, self-aligning contacts and is designed to reduce crosstalk. With a data transfer rate of more than 12.5 Gbps per differential pair and a cycle life of over 150,000, VTAC has set the standard for high speed interconnect solution requirements. Sold in individual quantities.Use with VPC's right angle VTAC insert (p/n 610151104) or VPC's vertical header (p/n 610151107) to connect directly to a PCB.

  • Smart Load Manager

    Nippen Electrical Instruments Co.

    This is flush mounting micro controller based instrument with multilayer PCB having SMT components offering accuracy and reliability along with reduction in EMI and EMC interference. These are specially designed to simultaneously measure, display and communicate several electrical parameters. This meter is an Ideal data source for effective Energy management, SCADA, PLC, BMS etc to measure as many as 36 parameters on 23 display pages, which are true RMS. The readings are displayed on 3 line bright Red 7 segment LED, each row/ line having 4 14.2mm high LEDS.

  • Detector And FPA Testing

    Santa Barbara Infrared, Inc.

    The FPA Test Set (FPATS) interface to the detectors under test (DUT’s) is via a custom pedestal plate which provides both a conductive heat path to both the individual DUT’s as well as the field of view limiting aperture plate. This custom pedestal plate protrudes through the customer provided DUT interface printed circuit board (PCB) and makes physical contact with the rear of the DUT packages and the aperture plate when the FPATS is in the closed position. The pedestal plate is mounted to the ambient source plate and its temperature is actively driven by this subsystem.

  • BME680 Environmental Sensor

    28061 - Parallax Inc.

    Raise your project’s environmental awareness with the BME680. The Bosch Sensortec BME680 Integrated Environmental Unit combines a gas sensor with air pressure, humidity, and ambient air temperature sensing functions within a single package for high performance air quality measurement.  Parallax Inc. places the BME680 on a compact PCB with a 6-pin male header. This capable sensor does not have to be difficult to use. The BME680 is supported by BlocklyProp visual programming as well as C libraries for the Propeller multicore microcontroller.  Code for other controllers is available from the Bosch Github repository.

  • IR Linear and 2D Sensor Array Modules

    Excelitas Technologies Corp.

    Excelitas offers Linear and 2D IR Imager Arrays based upon our Thermopile Technology. All Arrays are provided as plug-and-play Modules featuring a sensing chip, robust metal housing with focusing lens, a PCB with microprocessor for calibration and bus interface and a quick connector for streamlined plug-and-play integration. We offer 8-pixel, 16-pixel and 32-pixel Linear IR Imager Array Modules for field-proven effectiveness in scanning presence detection, non-contact temperature measurement, smart-home products, and office electronics. Custom solutions also available upon request.

  • Testsystems & Services

    Columbia Elektronik AB

    Testing is more than just finding defects on Printed Circuit Boards. It is also about how to predict defects before they occur. True economy can only be achieved when you see testing as an integrated part of manufacturing. To achieve this we provide Advanced Diagnostic Tools and Electronic Manufacturing Systems (EMS) that integrate testing with design, manufacturing and repair. Columbias expertise covers all aspects of PCB and sub-assembly production testing utilizing a full range of modern technologies: SPI, AOI, ICT, functional analog/digital testing and flying probe testing.

  • Power ICs - Smart Load Switches

    Vishay Intertechnology, Inc.

    Combining multiple functions in a single IC, Vishay smart load switches eliminate the need for external circuitry . A simplified GPIO interface allows for power distribution and sequencing of multiple sub-systems. Slew-rate-control devices provide a controlled supply ramp to reduce inrush current, while fault protection and isolation switches increase robustness with reverse current, overtemperature, current limiting, and short circuit protection features. The ICs offer quick output discharge and small footprints, while their integrated design saves PCB space compared to discrete solutions, reduces BOM counts, and lowers manufacturing costs.

  • 5D SPI

    Marantz Electronic Ltd.

    On Mek Solder Paset Inspection systems, items which are better inspected in 2D, such as area offset and bridging, are viewed in full colour. Using colour inspection the ISO-Spector S2 SPI can tell the difference between paste, solder mask, silk screen and other PCB features and the SPI system can intelligently give you accurate results. Volume and height measurement in 3D are combined with the 2D inspection in Real-time, to give a True colour 3D image. Other 3D SPI systems only inspect in the 3rd dimension, (Z axis) and make extrapolated assumptions about the 2D image.

  • Basic Quad J-Type Analog Thermocouple Amplifier

    SEN-30103-J0 - Playing With Fusion Inc

    Analog thermocouple amplifier board based on the AD849x from Analog Devices (successor of the AD597). This quad-channel thermocouple board converts the very low voltage signal from a thermocouple to a highly-linear, 0.005V/C output with either 0V or 1.245V offset (both configurations stocked) while removing unwanted noise from the signal. Many supply and output configurations are available with this board, though the PCB was designed with Arduino in mind. Specifically, the output header will plug directly into a standard Arduino Uno or Mega, with a pin-for-pin match for power supply, ground and analog outputs. With a 5V Arduino, temperatures from 0C to 1,000C are possible with the 0V offset board and -249C to 750C with the 1.245V offset board. If using a 3.3V microcontroller (Due, etc), the board must be supplied with no more than 3.3V to avoid damaging the microcontroller. Temperature measurement range is dependent on the supply voltage. It is possible to supply the board with higher voltages to allow temperature measurement over the entire operating range of the K-Type and J-Type thermocouples, allowing use with more capable data acquisition equipment.

  • Basic Quad J-Type Analog Thermocouple Amplifier

    SEN-30103-J1 - Playing With Fusion Inc

    Analog thermocouple amplifier board based on the AD849x from Analog Devices (successor of the AD597). This quad-channel thermocouple board converts the very low voltage signal from a thermocouple to a highly-linear, 0.005V/C output with either 0V or 1.245V offset (both configurations stocked) while removing unwanted noise from the signal. Many supply and output configurations are available with this board, though the PCB was designed with Arduino in mind. Specifically, the output header will plug directly into a standard Arduino Uno or Mega, with a pin-for-pin match for power supply, ground and analog outputs. With a 5V Arduino, temperatures from 0C to 1,000C are possible with the 0V offset board and -249C to 750C with the 1.245V offset board. If using a 3.3V microcontroller (Due, etc), the board must be supplied with no more than 3.3V to avoid damaging the microcontroller. Temperature measurement range is dependent on the supply voltage. It is possible to supply the board with higher voltages to allow temperature measurement over the entire operating range of the K-Type and J-Type thermocouples, allowing use with more capable data acquisition equipment.

  • Basic Quad K-Type Analog Thermocouple Amplifier

    SEN-30103-K0 - Playing With Fusion Inc

    Analog thermocouple amplifier board based on the AD849x from Analog Devices (successor of the AD597). This quad-channel thermocouple board converts the very low voltage signal from a thermocouple to a highly-linear, 0.005V/C output with either 0V or 1.245V offset (both configurations stocked) while removing unwanted noise from the signal. Many supply and output configurations are available with this board, though the PCB was designed with Arduino in mind. Specifically, the output header will plug directly into a standard Arduino Uno or Mega, with a pin-for-pin match for power supply, ground and analog outputs. With a 5V Arduino, temperatures from 0C to 1,000C are possible with the 0V offset board and -249C to 750C with the 1.245V offset board. If using a 3.3V microcontroller (Due, etc), the board must be supplied with no more than 3.3V to avoid damaging the microcontroller. Temperature measurement range is dependent on the supply voltage. It is possible to supply the board with higher voltages to allow temperature measurement over the entire operating range of the K-Type and J-Type thermocouples, allowing use with more capable data acquisition equipment.

  • Basic Quad K-Type Analog Thermocouple Amplifier

    SEN-30103-K1 - Playing With Fusion Inc

    Analog thermocouple amplifier board based on the AD849x from Analog Devices (successor of the AD597). This quad-channel thermocouple board converts the very low voltage signal from a thermocouple to a highly-linear, 0.005V/C output with either 0V or 1.245V offset (both configurations stocked) while removing unwanted noise from the signal. Many supply and output configurations are available with this board, though the PCB was designed with Arduino in mind. Specifically, the output header will plug directly into a standard Arduino Uno or Mega, with a pin-for-pin match for power supply, ground and analog outputs. With a 5V Arduino, temperatures from 0C to 1,000C are possible with the 0V offset board and -249C to 750C with the 1.245V offset board. If using a 3.3V microcontroller (Due, etc), the board must be supplied with no more than 3.3V to avoid damaging the microcontroller. Temperature measurement range is dependent on the supply voltage. It is possible to supply the board with higher voltages to allow temperature measurement over the entire operating range of the K-Type and J-Type thermocouples, allowing use with more capable data acquisition equipment.

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