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LAN (supporting POE) Expansion Board
OP-SB89
OP-SB89 is an expansion board for Ethernet LAN, inserting into a slot of battery drive portable data communication analyzer (LE-8200A/LE-8200). It supports the PoE (Power Over Ethernet) standard, and able to analyze the communications and power consumption at the same time.
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Large Board Stencil Printer
MC1200
Manncorp's MC1200 SMT large board stencil printer fills application requirements of large-board assemblers with print areas ranging from two feet to nearly four feet in length, making them ideal for LED, backplane and multi-panel assemblies. These big-board printers, priced at one-half to as much as two-thirds less than competing large-board printers, are ideal replacements for slower and less accurate manual printers.
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LED Pick And Place
MCLEDV4-1800
Assemble LED lighting products, including long tube boards and flexible strips, at rates reaching 15,000 LEDs per hour with a high-speed, dedicated LED placer. The MCLEDV4-1800 has an 1800 mm (70.8") max board length and features full, on-the-fly vision alignment.
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Lightning "Emulator" Shield
SEN-39002
Arduino shield, ideal for AS3935 lightning sensor development. The lightning "emulator" generates a RF signal that mimics lightning strikes. This board is in an Arduino Uno form factor, and only uses GPIO and I2C, so can be stacked on many form factors (developed on an Uno and Mega).
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LilyPad Light Sensor
The LilyPad Light Sensor is a sewable breakout board with an ALS-PT19 light sensor built in and ready to use right away. Each sensor outputs voltage between 0V and 3.3V depending on the level of ambient light shining on it. As more light is applied on the sensor, more current will flow from the board through the signal tab to the microcontroller you connect the sensor to. If the sensor receives no light, no current will flow through it. In a typical indoor lighting situation, the sensor will output around 1 to 2V. Adding this board into your next e-textile or wearable project will really open up the possibilities by being able to incorporate light level sensing capabilities.
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LilyPad Simple Power
The LilyPad Simple Power is a simple e-textile board with a 500mA charge rate that lets you connect and charge a lipo battery and switch it on or off, that's it! We provide you with a JST connector and a slide switch, you supply the battery and sewing skills! With this LilyPad Simple Power, you should find no trouble in added a bit of power to your next wearable circuit.
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Load Cell Amplifier Signal Conditioner with DB9 Connectors
MODEL LCA-9PC
The LCA-9PC Module provides low-cost, dedicated signal conditioning for a single bridge type load cell or torque sensor. Model LCA-9PC comes with DB9 male and female connectors, which require soldering to user-furnished mating female or male wire connectors. On- board jumper selections include sensitivities from 0.5 mV/V to 10 mV/V, bandwidths from 100 Hz to 30 kHz, and amplified outputs of 0 to ±5V, 0 to ±10V, 0-16 mA, 0-20 mA or 4-20 mA. Zero and span adjustments are via precision 25-turn low-tempco metal film otentiometers.The units can be operated next to the sensor with 4-wire hookup or at distances up to 1 km (3300 feet) with 6-wire hookup. An onboard 87.325 kΩ resistor allows easy shunt calibration at the push of a button. Provision is also made for a user-furnished calibration resistor. Power requirements are 11.8 to 26V DC with load currents from 10 to 60 mA, the latter applying when the unit provides 10V DC excitation to a 350 ohm load cell and delivers a 20 mA analog output.
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Load Cell Amplifier Signal Conditioner with Removeable Terminals
MODEL LCA-RTC
The LCA-RTC Module provide low-cost, dedicated signal conditioning for a single bridge type load cell or torque sensor. Model LCA-RTC comes with removable screw-clamp terminal connectors, which accept wires without soldering.On- board jumper selections include sensitivities from 0.5 mV/V to 10 mV/V, bandwidths from 100 Hz to 30 kHz, and amplified outputs of 0 to ±5V, 0 to ±10V, 0-16 mA, 0-20 mA or 4-20 mA. Zero and span adjustments are via precision 25-turn low-tempco metal film potentiometers.The units can be operated next to the sensor with 4-wire hookup or at distances up to 1 km (3300 feet) with 6-wire hookup. An onboard 87.325 kΩ resistor allows easy shunt calibration at the push of a button. Provision is also made for a user-furnished calibration resistor. Power requirements are 11.8 to 26V DC with load currents from 10 to 60 mA, the latter applying when the unit provides 10V DC excitation to a 350 ohm load cell and delivers a 20 mA analog output.
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LOADED BOARD TEST PROBES
SERIES-70
ElectricalMAXIMUM CURRENT: 5 amps continuousat working travel, non-inductiveRESISTANCE: At 35mA test current70 18 mOhms mean73 60 mOhms mean74 40 mOhms meanMaterials and FinishesPLUNGER: Heat treated beryllium copperor steel hardened to 55-60RC70 24Kt gold plated over nickel73 24Kt gold plated over nickel74 Rhodium plated over nickelBARREL: Nickel silver70 24Kt gold plated ID and OD over nickel73 No Finish74 24Kt gold plated ID and OD over nickel
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Low capacitance SIL reed relays
Series 103
Low Capacitance SIL relays. Requires a board area of 0.25 x 1.0 inches (6.4mm x 25.4mm). Form A with one fifth the usual switch to coil capacitance
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Low Light USB Camera Board (Color)
See3CAM_CU30 - 3.4 MP
See3CAM_CU30 is a 3.4 MP UVC-compliant Low Light USB camera board based on AR0330 sensor from ON Semiconductor®. This Low Light Board Camera is backward compatible with USB 2.0 and supports compressed MJPEG formats at frame rates equal to USB 3.0. This sensor enables a superior low light performance. It has a dedicated, high-performance Image Signal Processor chip (ISP) that performs all the Auto functions (Auto White Balance, Auto Exposure control) in addition to complete image signal processing pipeline that provides best-in-class images, videos and the MJPEG compressions.
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Low Profile PCI 8 Reed Relay Output
8012H
Optimized for sensing 24V inputs, the 8012H Low Profile PCI digital interface provides eight Reed relay outputs (SPST) and eight optically isolated inputs supporting 10-30V. Reed relays are well suited for low current applications. The relays are normally open, and close when energized. The board is MD1 Low Profile and Universal Bus (3.3V and 5V) compatible.
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Low Profile PCI 8 Reed Relay Output
8012
The 8012 Low Profile PCI digital interface provides eight Reed relay outputs (SPST) and eight optically isolated inputs. Reed relays are well suited for low current applications. The relays are normally open, and close when energized. The board is MD1 Low Profile and Universal Bus (3.3V and 5V) compatible.
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Low Profile PCI Express 4-Port
7402e
The 7402e low profile PCI Express serial interface provides four serial ports, each individually field-configurable for RS-422 or RS-485 communications. The board uses a 16C954 UART with 128-byte Tx/Rx FIFOs that enables data rates to 921.6K bps for reliable high-speed communications in data intensive applications. This high-performance UART includes 9-bit framing support and is register compatible with legacy 16550 software applications. In addition, the board derives a 62.5 MHz clock from the PCI Express link. This ultra-high speed clock is divided by a flexible 8-bit clock prescalar with 1/8 steps to provide support for the widest range of standard and non-standard baud rates.
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Low Profile PCI Express 4-Port
7406e
The 7406e low profile PCI Express serial interface provides four RS-232 serial ports. For maximum compatibility with a wide range of peripherals, the board supports all standard RS-232 modem control signals. The serial ports utilize a 16C954 UART with 128-byte Tx/Rx FIFOs that enables data rates to 921.6K bps for reliable high-speed communications in data intensive applications. This high-performance UART includes 9-bit framing support and is fully software compatible with legacy 16550 applications. In addition, the board derives a 62.5 MHz clock from the PCI Express link. This ultra-high speed clock is divided by a flexible 8-bit clock prescalar with 1/8 steps to provide support for the widest range of standard and non-standard baud rates.
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Low Profile PCI Express 8-Port
7803e
The 7803e low-profile PCI Express serial interface provides eight RS-232 serial ports. For maximum compatibility with a wide range of peripherals, the board supports all standard RS-232 modem control signals. The serial ports utilize 16C954 UARTs with 128-byte Tx/Rx FIFOs that enables data rates to 921.6K bps for reliable high-speed communications in data-intensive applications. This high-performance UART includes 9-bit framing support and is fully software compatible with legacy 16550 applications. In addition, the board derives a 62.5 MHz clock from the PCI Express link. This ultra-high speed clock is divided by a flexible 8-bit clock prescalar with 1/8 steps to provide support for the widest range of standard and non-standard baud rates.
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LTE US Version - 4G, Cat.1, GNSS Tracker
Wio LTE
Wio Tracker (Wireless Input Output) is an open source gateway which enable faster IoT GPS solutions. It is Arduino and Grove compatible development boards that helps you track nearly any moving thing on the planet and then upload that data wirelessly. The Wio LTE is the LTE version of Wio Tracker, so now we’ve got 2 versions of Wio Tracker and the LTE (4G) version will make some differences.
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LUTHER & MAELZER BARE AND LOADED BOARD TEST PROBES
SERIES LMP 60
MechanicalMINIMUM CENTERS: .100 (2.54)FULL TRAVEL: .160 (4.06)WORKING TRAVEL: .107 (2.72)OPERATING LIFE: 1,000,000 cyclesElectricalMAXIMUM CURRENT: 5 amps continuousat working travel, non-inductiveRESISTANCE: At 35 mA test current,35 mOHMS meanMaterials and FinishesPLUNGER: Heat treated berylliumcopper, 24 Kt gold plated over nickelBARREL: Nickel silver, 24 Kt goldplated over nickel
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LUTHER & MAELZER BARE BOARD TEST PINS
SERIES LMP 78
Materials and Finishes MATERIAL: Heat treated beryllium copper FINISH: 24 Kt gold plate over hard electroless nickel
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LUTHER & MAELZER BARE BOARD TEST PINS
SERIES LMP VZ
Materials and Finishes MATERIAL: Heat treated beryllium copper and music wireFINISH: 24 Kt gold plate over hard electroless nickel
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LVDS Board
MSXB 045
The MSXB 045 LVDS board works with multiple iDSC 1816 boards to provide synchronization for many channels of data. An MSXB 045 board in each of two or more networked PCs, that each contain one or more iDSC 1816 boards, allows the whole networked system to work as a single synchronized system with possibly hundreds of conditioned channels.
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LVDS To DVI-D Converter Board
AX93221
*Input supports 18/36/24/48-bit LVDS through 40-pin LVDS connector*Output supports DVI-D connector*Size: 60 x 50 mm*Applied for PICO821 and PICO822
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Machine Vision Cameras
Manta Series
High-performance industrial cameras with a large choice of sensors, modular options and built-in image optimization. VGA to 12 Megapixels. CCD and CMOS (Sony, CMOSIS). Up to 125 fps. NIR versions, board level option.
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Magnetic Rotary 3 Click
Magnetic Rotary 3 Click is a compact add-on board for accurate magnet-position sensing. This board features the AS5147, an SPI-configurable high-resolution rotary position sensor for fast absolute angle measurement over a full 360-degree range from ams AG. The AS5147 position sensor suppresses the influence of any homogenous external stray magnetic field, equipped with a revolutionary integrated dynamic angle error compensation (DAEC™) with almost zero latency. It also comes with onboard headers reserved for incremental and commutation signals of their respective A/B/I and U/V/W signals alongside embedded self-diagnostics, including magnetic field strength too high, magnetic field strength too low or lost magnet, and other related diagnostic features. This Click board™ has been designed to support BLDC motor commutation for the most challenging automotive applications.
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MANUAL TEST FIXTURE KITS
SERIES 5590
Built with unique design features: Ease of assembly and disassembly All side panels are removable Side panel material is delrin for easy machining for connectors, switches etc.Light weight and durable construction2" Between Probe plate and lid plate allowing more room for tall board components
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MAX31855 J-Type Thermocouple Sensor Breakout
SEN-30003-J
Breakout board for the MAX31855J digital thermocouple interface ICs by Maxim. 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" 2x5 pin header (8-pins used), has four vertical mini thermocouple connectors and four mounting holes for standoffs and 4-40 screws. The SEN-30003 is interfaced via 3 or 4-wire SPI with a data-ready output for specific operating modes. An LDO and a high-speed level shifter are included to allow interfacing with microcontroller devices between 3.0V and 5V (all Arduinos, Raspberry PI, etc) without sacrificing device performance (many other level shifters reduce data rates to below 500 kHz).
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MAX31855 K-Type Thermocouple Sensor Breakout
SEN-30003-K
Breakout board for the MAX31855K digital thermocouple interface ICs by Maxim. Measured temperature range is -270C-1372C 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" 2x5 pin header (8-pins used), has four vertical mini thermocouple connectors and four mounting holes for standoffs and 4-40 screws.
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MAX31855 T-Type Thermocouple Arduino Shield
SEN-30004-T47
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.
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Maximum Demand Controller
Nippen Electrical Instruments Co.
NIPPEN Maximum Demand Controller offer demand monitoring with date and time of occurrence. The present and predictive demand are displayed separately. The Maximum Demand Controller (MDC) has 4 relays to facilitate tripping of non essential loads.The trip setting is done according to the contract demand offered by the Electricity Board. Demand control is done by 1) Step Demand Control 2) Forecast Demand Control