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- Virginia Panel Corporation
product
Tool, Press Kit, i2 PCB Headers
910121199
Tool, Press Kit, i2 PCB HeadersAids in pressing fit pins into the header.
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PCMCIA Adapter Card
4625-3
VECTOR Electronics and Technology, Inc.
PCMCIA Universal Adapter Card accesses the PCMCIA 68 pin connector, extending all signals, power and ground lines to header outside the drive housing
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Mini-ITX Embedded Board with 8th/9th Gen Intel® Core™ i7/i5/i3 Processors
AmITX-CF-I
The AmITX-CF-I is a Mini-ITX motherboard supporting the 8th/9th Gen Intel® Core™ i9/i7/i5/i3, Pentium® and Celeron® processor in the LGA1151 package, and the Intel Q370/H310 chipset. The AmITX-CF-I is specifically designed for customers who need high-level processing and graphics performance with a long product life solution. This model supports ubiquitous high-speed data transfer interfaces PCIe 3.0, USB 3.1 Gen2 and SATA 6 Gb/s (SATA III), with dual-channel DDR4 2400/2666 MHz non-ECC memory up to 32 GB in two SODIMM slots. The AmITX-CF-I features DVI, DP and HDMI ports, LVDS header, dual Gigabit Ethernet ports, USB 3.0 ports, USB 2.0 ports, SATA 6 Gb/s ports, and audio with Line-out, Line-in and Mic-in connectors. Expansion is provided by one PCIe x16, one M.2, and one mini-PCIe slot. The onboard pin header provides GPIO, USB and RS-232 support. The board is equipped with SPI AMI EFI BIOS, supporting embedded features such as hardware monitor and watchdog timer.
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SparkFun MicroB USB Breakout
This simple board breaks out a micro-B USB connector's VCC, GND, ID, D- and D+ pins to a 0.1" pitch header. If you want to add the popular micro-B USB to your project, but don't want to put up with soldering the tiny connector, this is the board for you.
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Serial Parallel Interface
Model 2313
* Provides 128 high-power TTL I/O lines that can sink 48 mA or source 24 mA. * Easily interfaces to TTL or CMOS signals and contact closures. * User can configure the data bytes as inputs or outputs.* Transfer data as bits, bytes as data strings or transparently.* Separate headers for RS-232 and RS-485 signals. * Optional 2313 Flat Ribbon Cables mount DE-9 male or female connectors on the rear panel. * Optional Relay Driver boards with 64 or 128 Relay Drivers.
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Serial Parallel Interface
Model 2303
* 2303 Board provides 40 high-power TTL I/O lines that can sink 23 mA or source 24 mA. * Easily interfaces to TTL or CMOS signals and contact closures. * User can configure the data bytes as inputs or outputs.* Transfer data as bits, bytes as data strings or transparently.* Dual Serial headers support conections with baud rate switch inputs or to a Serial Flat Ribon Cable Assembly. * Optional Relay Driver board drives 24-40 relays. * 114732 Board has the DIN connector on circuit side for use with the X3DVR Relay Driver Board or for piggyback mounting.* All other specifications are the same as listed above for the 2303.
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Low Cost Emulator
EB-XAG49
* Emulates P51XG49 Microcontrollers * Real-Time Operation up to 30MHz * 3.3V or 5V Voltage Operation * Source-Level Debugger for C and Assembler * MS-Windows Debugger Software * Reduced Set of C-Compiler and Assembler * Support for ROMless and ROMed Microcontrollers * 64K of Code Memory * Performance Analyzer * Real-Time and Conditional Breakpoints * 44-pin PLCC Emulation Header and Signal Testpoints * Serially Linked to IBM PC at 115 Kbaud
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Board
Arduino Leonardo with Headers
The Arduino Leonardo is a microcontroller board based on the ATmega32u4 (datasheet). It has 20 digital input/output pins (of which 7 can be used as PWM outputs and 12 as analog inputs), a 16 MHz crystal oscillator, a micro USB connection, a power jack, an ICSP header, and a reset button. It contains everything needed to support the microcontroller; simply connect it to a computer with a USB cable or power it with a AC-to-DC adapter or battery to get started.
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Program Header and Cover
Series 680
Program Headers and Covers. Complete versatility for programming within the unit itself...thus eliminating the need for DIP switches in many situations. Available pre-programmed from Aries, or do it yourself using Aries hand tool No. T-680. Consult Data Sheet No. 22002 for programming tool information.
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Pin Converters
Blackhawk provides several different emulation pin converters to fit Texas Instruments standard JTAG target headers. This includes 14-pin TI, 20-pin cTi & ARM, 10-pin ARM, 60-pin XDS560 Trace and System Trace. All pin converters are available from the our Online Store or an authorized Blackhawk reseller.
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DIP Header with Screw Machine Contacts
Series 625
DIP Headers with Screw Machine Contacts. Aries offers a full line of DIP headers, available with either screw machine or coined contacts in a variety of styles. Consult Data Sheet No. 12032 for coined contacts.
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GPIB Serial Interface
Model 4804B
* Provides RS-232C single-ended and RS-422/RS-485 differential serial signals. * Functions as a GPIB-to-Serial Interface (G-Mode) or as a Serial-to-GPIB Controller for a single device (S-Mode).* Over 600 Kbytes/second GPIB data transfer rate.* Transparent data transfer.* GPIB Address can be set by SCPI commands, by an external rocker switch or by a serial command.* On board voltage regulator for operation from 5 to 15 Vdc power.* Dual GPIB headers support GPIB connections with a GPIB Connector/Address Switch Assembly or with a GPIB Flat Ribbon Cable.
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JTAG Emulators
XDS100v2 Series
The XDS100-class JTAG Emulator is an ultra-low-cost entry level JTAG debugger for TI devices. Blackhawk offers two models, each with two JTAG target connections. One model includes TI JTAG connections for 14-pin TI and 20-pin cTI JTAG headers. The other model provides ARM 10-pin and 20-pin JTAG connections. Both models are identical in software and device support except for the the target connections, so pick the one that matches your target board connection.
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Single row PCB connector
RBA Series
Smiths Interconnect's RBA series is a rugged stick header that can be cut to sizes up to 27 positions
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NI TB-2645B Terminal Block for NI 2532B as 1-Wire Dual 16x16 Matrix or 2-Wire 16×16 Matrix Topology Without Column Protection Resistors
782385-11
The TB-2645B provides the necessary routing to configure the PXI-2532B or PXIe-2532B PXI Matrix Switch Module as a 2-wire 16x16 or 1-wire dual 16x16 matrix. You can directly connect the TB-2645B to the front panel I/O connectors of the PXI-2532B or PXIe-2532B. This terminal block includes ribbon cable headers to connect signals to the PXI Matrix Switch Module. The TB-2645B also provides optional isolation resistors to protect the reed relays from capacitive loads.
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MAX31855 J-Type Thermocouple Sensor Breakout
SEN-30001-JDP
Breakout board for the MAX31855J digital thermocouple interface IC. Measured temperature range is -210C-1200C with known thermal characteristics and output resolution of 0.25C. This sensor supports a larger operating range (specifically in the negative range) than its predecessors, the MAX6674 and MAX6675, though it is not pin-pin compatible. This board is interfaced with a 0.1" 1x5 pin header and four mounting holes for standoffs and 4-40 screws. It does not contain a mini thermocouple connector.
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Board
Arduino Mega 2560 Rev3
The Arduino Mega 2560 is a microcontroller board based on the ATmega2560. It has 54 digital input/output pins (of which 15 can be used as PWM outputs), 16 analog inputs, 4 UARTs (hardware serial ports), a 16 MHz crystal oscillator, a USB connection, a power jack, an ICSP header, and a reset button. It contains everything needed to support the microcontroller; simply connect it to a computer with a USB cable or power it with a AC-to-DC adapter or battery to get started. The Mega 2560 board is compatible with most shields designed for the Uno and the former boards Duemilanove or Diecimila.
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Basic Quad J-Type Analog Thermocouple Amplifier
SEN-30103-J0
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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Connectors, Jumper - Black
INT-10901
Jumper for 0.1" (2.54mm) spaced headers. These are also known as a 'shunt'. These mate with the 0.1" square-pin headers and are the 'open' frame style. RoHS compliant.
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Arduino CAN Shield
IFB-10003-IWP
CAN (Controller Area Network) communication has become ubiquitous in industry. It is used in automotive applications (part of OBD and many other datalinks), on-highway trucks (J1939), industrial machinery and instrumentation, and equipment applications (factory automation). This shield is designed to provide a CAN 2.0 front-end interface for 5V Arduino modules (Uno, Mega, etc). The module uses SPI to communicate to the Arduino, and requires an aditional chip select pin. An optional interrupt line to the MCP2515 and two LEDS are also provided. The chip select and interupt lines are selected via zero ohm resistors and have several configuration options for flexibility stacking additional shields. A set of stackable headers is included with this board, not installed. An optional on-board voltage regulator may be used to supply 7.5V to the Arduino's 'Vin' pin (which is regulated to 5V by the Arduino's on-board LDO). The CAN shield regulator supports a wide input range of 9V to 32V. This makes it possible to cleanly build a stand-alone CAN node (remote sensor) without the need for a separate Arduino power supply!
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Pin-Line™ Header with Screw Machine Contacts
Series 0625
Pin-Line Headers with Screw Machine Contacts. Aries Pin-Line headers are available with a variety of screw machined contacts. Consult Data Sheet No. 12034 for strip-line headers with coined contacts. Break feature allows header to be cut to the number of positions desired.
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GPIB Parallel Interface
Model 4803
* 4803 Board provides 40 high-power TTL I/O lines that can sink 48 mA or source 24 mA. * Easily interfaces to TTL or CMOS signals and contact closures. * User can configure the data bytes as inputs or outputs.* Transfer data as bits, bytes as data strings or transparently.* Dual GPIB headers support connections to a GPIB Connector/Address Switch Assembly or to a GPIB Flat Ribbon Cable Assembly.* Optional Relay Driver board drives 24-40 relays.
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CB-50 I/O Connector Block with DIN Rail Mounting without cable
776164-90
50-Pin Male IDA to 50-Pin Female Screw Terminal, DIN Rail, Terminal Block - The CB-50 provides 50 screw terminals for connection to I/O signals from your 50-pin NI data acquisition devices. The CB-50 includes one 50-pin header for direct connection to 50-pin cables. It features a protective plastic base and hardware for mounting on a DIN Rail.
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Header, I2 Micro ICon, Receiver, 60 Pin, For PCB Mounting
510109206
The 60 pin header for i2 Micro iCon Hybrid contains solderless pins and enables a direct connection from the i2 receiver to a PCB such as a PXI card.
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NI TB-2643B Terminal Block for NI 2532B as 1-Wire Dual 4x64 Matrix or 2-Wire 4×64 Matrix Topology Without Column Protection Resistors
782385-07
The TB-2643B provides the necessary routing to configure the PXI-2532B or PXIe-2532B PXI Matrix Switch Module as a 2-wire 4x64 or 1-wire dual 4x64 matrix. You can directly connect the TB-2643B to the front panel I/O connectors of the PXI-2532B or PXIe-2532B. This terminal block includes ribbon cable headers to connect signals to the PXI Matrix Switch Module. The TB-2643B also provides optional isolation resistors to protect the reed relays from capacitive loads.
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SparkFun Breadboard Power Supply Stick, 5V/3.3V
13032
This is a very simple board that takes a 6-12V input voltage and outputs a selectable 5V or 3.3V regulated voltage. All headers are 0.1" pitch for simple insertion into a breadboard.
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Board-to-FPC Connector for 5G Millimeter-Wave Antenna Modules
Panasonic Industrial Devices Sales Company of America
Panasonic's Board-To-FPC Connector for 5G Millimeter-Wave Antenna Modules offer good SI/EMI/EMS characteristics for high-frequency applications and features our industry-leading Tough Contact construction that achieves high contact reliability and retention force. Tough against shock impact by misalignment, the fully-shielded structure in both socket and header significantly improves EMI characteristics necessary for RF applications such as 5G.
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MAX31855 J-Type Thermocouple Sensor Breakout
SEN-30001-J
Breakout board for the MAX31855J digital thermocouple interface IC. Measured temperature range is -210C-1200C with known thermal characteristics and output resolution of 0.25C. This sensor supports a larger operating range (specifically in the negative range) than its predecessors, the MAX6674 and MAX6675, though it is not pin-pin compatible. This board is interfaced with a 0.1" 1x5 pin header, has a vertical mini thermocouple connector and four mounting holes for standoffs and 4-40 screws.
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ArgoBot Kit
ROB-00001
The ArgoBot Full Kit is a fully assembled robot and controls development platform. It is based on the Digilent chipKIT WF32(TM), a WiFi enabled development platform, and configured for LabVIEW targeting. Most importantly ArgoBot was designed with FIRST Robotics Competition teams in the front of our minds! Named after the FRC Team 1756 mascot, Argos, the ArgoBot development platform includes a fully-assembled, ready to drive mini WiFi enabled robot (about 8" x 5" x 4"), as well as tons of FRC controls tutorials and example code (LabVIEW VIs). Features included on the ArgoBot will look very familiar to anyone who has worked with National Instruments products (Compact RIO and RoboRIO) in the past. This includes three 5V Digital I/O modules (with jumpered pull-ups), three 5V analog inputs, and an I2C header. Example VIs have been streamlined to enable a 1-click configuration style to accelerate your development process. We also added a 2-channel motor driver that is used to supply the ArgoBot drive motors. Our ultimate goal is that everything you can build, control or implement on ArgoBot can be easily leveraged on your FRC bot! Complimenting its many electrical features, ArgoBot is easy to work with and easy to maintain. The chassis is a polycarbonate (the extremely tough stuff that is easy to drill and modify but easily takes bumps and bruises without cracking) case that is fully intact - meaning that ArgoBot doesn't just come with a case... it is a case! Clean-up and organization is simple - just close the case and turn off the power switch.
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PCI-104 8-Port, 4-port, And 2-port Multi-Protocol RS-232, RS-422, RS-485 Serial Communication Boards
104i-COM-8SM Family
The 104i-COM-8SM (PCI-104) family of multi-port, multi-protocol (RS-232, RS-422, RS-485), serial communication boards deliver up to eight high-speed serial communication ports for use in a wide variety of applications. The boards were developed for use by system integrators and manufacturers in the design of industrial and commercial systems. Based on the XR17D158, the boards have eight enhanced 16550 UARTs, each with a set of modem signals (CTS, RTS, RI, DTR, DSR, CD) in RS-232 mode. Each UART has both a 64 byte transmit and a 64 byte receive FIFO. Ports are accessed via two 40-pin IDC type right angle header connectors. 2 and 4-port versions are available, as well as RS-232 only models.
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Basic Quad J-Type Analog Thermocouple Amplifier
SEN-30103-J1
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.