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SPI
assures volume and area of paste application.
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ARINC 429 Card
SET-1623
The SET 1623 ARINC Card has 32 Tx/Rx Channels. These 32 Tx/Rx channels are structured in 4 banks (P0.x to P3.x) 8 channels each. Each bank is controlled by a dedicated SPI (SPI0 to SPI3) located on RTI.
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Channelized Down-Converter
DCV Series 5” x 2.5” x 0.6”
*Connectorized Package *Wide Choice of Frequency Ranges *Integrated Filters *Gain Control *L-Band to 70 MHz IF Range Available *L-Band to 140 MHz IF Range Available *CAN, RS-232, I2C, or SPI Control *Internal / External References *Custom Designs Available *Low Power Consumption *Low Phase Noise *Low Spurs
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Evaluation Kit
ROM-3310 Development Kit
*Evaluation kit for ROM-3310*Lower power TI sitara AM3352 1GHz processor*On board DDR3 512MB memory / 4GB Flash*HW WDT for system protection*Supports 1 GbE, 1 USB 2.0, 1 USB 2.0 OTG, 2 CANbus, 10 GPIO, 4 UART,1 I2C, 1 I2S, 1 SPI, 1 SDIO*Cable pack & Panel included*Evaluative image & test utilities built-in
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AOI & SPI, Test Systems
SigmaX SPI
Most defects in the circuit-board assembly are due to the solder paste or the process of printing solder paste. Since the transition to lead-free soldering, a whole new spectrum of problems has emerged in older paste printing and its due processes. Incomplete coalescence of ball grid array (BGA) spheres and solder paste deposits are failure modes that have increased in frequency since the transition to lead-free soldering. The SigmaXs inspection technology is unaffected by varying materials, surface conditions, or colors. The system profiles the board to generate accurate 3D shapes far superior to other brands and technologies.
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Multi Protocol Analyzer
LE-3500R
LE-3500R/LE-2500R adopted TTL port as its standard besides RS-232C, RS-422, and RS-485 while having the same feature such as small and light body of LE-3500/LE-2500. You can monitor I2C or SPI without expansion board.
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Function Generators
Respective dual channels function/arbitrary waveform generator. Sine wave output up to 160MHz, full-band resolution of 1μHz. Pulse waveform up to 50MHz (or 40MHz), adjustable time of rising, falling and duty ratio. Sampling rate of 500MSa/s and vertical resolution of 16bit. 6-bit high-precision frequency meter compatible with TTL level signal. Arbitrary wave storage of 8~32M points, 7GB non-volatile waveform storage. Multi modulation function::AM,FM,PM, ASK,FSK,PSK, BPSK, QPSK,OSK,PWM, QAM, SUM . 16bit digital arbitrary wave (TTL level) DARB. 16th Harmonic Generation Function. Protocol output: I2C, SPI, UART (TTL level). 8 Inch high-resolution TFT color LCD,WVGA(800×480). Standard interface: USB Host, USB Device, LAN, 10MHz clock source input/output. Frequency sweep and burst output. Easy-to-use multi-functional knob and numeric keypad
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Mixed Signal Oscilloscopes
A Mixed Signal Oscilloscope (MSO) is a combination Logic Analyzer and Oscilloscope. Since all inputs sample simultaneously, it is easy to see the timing relationships of the digital and analog components of your circuit. The extra channels also allow for more complex triggering. All of our MSOs have Oscilloscope triggering, Logic Analyzer triggering, SPI triggering and I2C triggering.
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Arduino CAN Shield
IFB-10003-ANP
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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Xilinx Zynq ARM + FPGA SoM
TE0715-7030
Sundance Multiprocessor Technology Ltd.
TE0715s are industrial-grade Xilinx Zynq-7000 System on Modules with 4 MGT Links , a gigabit Ethernet transceiver, 8 Gbit (1 Gbyte) DDR3 SDRAM with 32-bit width, 32 Mbyte SPI Flash memory for configuration and operation, and powerful switch-mode power supplies for all on-board voltages. A large number of configurable I/Os is provided via rugged high-speed stacking strips.
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Open Standard Module (OSM)
ROM-2620
Advantech ROM-2620 OSM 1.1 Computer-on-Module is powered by NXP i.MX 8ULP SoC which includes up to 2 Arm Cortex-A35 cores in combination with one Cortex-M33 real timeprocessor and Vivante GC7000 nanoULTRA/GC328 graphics engine. It provides USB2.0, Fast Ethernet, MIPI-CSI, I2C, SPI, GPIO, PWM and MIPI DSI display for embedded applications
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InfiniiVision Oscilloscopes
3000A X-Series
100 MHz to 1 GHz, DSO and MSO modelsView time-correlated digital content with16 digital channels (MSO)Modulate signals within the scope with WaveGen, built-in 20 MHz function generator (optional)Quickly characterize signals with the built-in 3-digit voltmeter and 5-digit counter option Decode serial busses faster with hardware-based serial analysis options for CAN, LIN, IC, SPI, RS232 and more Protect your investment with full upgradability
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Universal ByteBlaster
SKU-002-01
The Universal ByteBlaster supports target systems ranging from 1.2V to 5V. The ByteBlaster supports Altera, Xilinx, Lattice, and Atmel FPGA/CPLDs (selectable via 4-position dip-switch), and implements Master 2IC or SPI functionality. The ByteBlaster’s functionality can me customized and adjusted to support customer’s special needs.
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Wide Band Filters (multi-octave)
ERF-5W™ Series (Single & Dual)
The new ERF-5W™ filter takes Pole/Zero’s MINI-ERF® technology to a higher level of RF power handling, with 5W (average) in-band power handling, and covering the entire military tactical radio tuning range of 30-520 MHz in one integrated package. This tunability is accomplished by the use of three poles of selectivity, multiple internal tunable filters along with high performance PIN diode RF band select switches. The tunable filters are designed to minimize size and power consumption, while maintaining high RF power handling and linearity characteristics. Serial control is accomplished via a standard Serial Peripheral Interface (SPI)-based bus.
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4 Channel DAC FMC Module
DACNF04 – HPC
Sundance Multiprocessor Technology Ltd.
The RFM-DACNF04 is a four channel Digital to Analog converter FMC which complies with VITA 57.1-2010. Each channel provides 16-bit input and one DC coupled single-end analog output with DC – 250KHz sampling speed based on Linear Technology’s LTC2704-16. The 16-bit input data for each channel is provided through SPI from the FPGA on the FMC carrier board. A single-ended TTL level trigger output is provided from the FPGA.
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SparkFun MicroMod GNSS Carrier Board (ZED-F9P)
With GNSS you are able to know where you are, where you're going, and how to get there anywhere on Earth within 30 seconds. This means the higher the accuracy the better! GNSS Real Time Kinematics (RTK) has mastered dialing in the accuracy of their GNSS modules to just millimeters, and that's why we had to put it on this board! With the flexibility of the MicroMod's M.2 connector, you can easily test and swap out different MicroMod processor boards for your application. Simply match up the key on your board's beveled edge connector to the key on the M.2 connector and secure the boards with a screw. This means solderless access to the ZED-F9P modules features via UART1, UART2, SPI, and I2C ports!
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Block Up-Converter
BUC Series 5” x 2.5” x 0.6”
*Connectorized Package *Compact, Rugged Design *C, X, Ku, K, and Ka-Bands Available *L-Band Inputs (950-2150 MHz) *Internal or External Filters Available *Variable Attenuation Control via CAN +5V Logic, SPI, RS232, or I²C
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Accelerometor, Gyro, Magnetometer Breakout Board
SEN-38001
The LSM9DS1 is a highly configurable, flexible and precise motion sensing solution from ST Microelectronics - the latest in a wide-ranging inertial product line. It integrates a 3-axis accelerometer, 3-axis gyroscope and 3-axis magnetometer into a single IC , giving you a full nine degrees of freedom (9-DOF) in a tiny 3mm x 3.5mm package. Even with support components, square mounting pattern and connection breakouts for both SPI and I2C, this board is barely the size of a quarter.
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Ultra-Low Power Computing Module
CM22303
LinkedHope Intelligent Technologies Co.,Ltd.
CM22303 uses Intel® 7th generation Kaby Lake-Y platform and Core M Ultra low-power SoC processors, and integrates the full functions of CPU, GPU and South/North Bridge on a single chip. The processor provides powerful computing and display performance with dual-core and four threads configuration. Its turbo frequency can boost up to 3.6 GHz and the display output resolution can be up to 4K. CM22303 has an amazing thermal design power consumption of only 4.5W (TDP) and can be used for a variety of high-performance fanless designs. SPI BIOS is designed on board to support dual-channel low voltage on board memory (up to 16GB), Gigabit Ethernet, TPM module and other functions. With high-performance and low power consumption, it can be widely used in the field of low power embedded systems. Meanwhile, CM22303 adopts COM Express standard and is compatible with Type10 pin out definition, and also provides rich peripheral interfaces such as USB3.0/2.0, PCIe, SATA, HD Audio etc.
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Channelized Up-Converter
UPCV Series 5” x 2.5” x 0.6”
*Connectorized Package *Wide Choice of Frequency Ranges *IF to Ka-Band Solutions Available *Integrated Filters *Gain Control *USA, RS232 or SPI Control *Internal / External References *Low Power Consumption *Low Phase Noise *Low Spurs
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CyberOptics SE Series
SE Series
The CyberOptics SE Series offers the most accurate and repeatable, high speed 3D solder paste inspection in the market today. Utilizing the most advanced sensing technology, CyberOptics SPI products will provide manufacturers the reliability needed to compliment your overall screen print process improvement strategy.
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ARM LPC2294 Based Board
MS 2500
- JTAG interface- Boot Flash interface- External Flash interface for data storage- External Bus interface- SPI Interface- I2C interface- Serial port interface- CAN Interface- LPC2694 based processor board- MIL1553B Bus Interface (Dual Redundancy)
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MAX31856 Thermocouple Sensor Arduino Shield
SEN-30007-T
Quad channel thermocouple Arduino shield based on the MAX31856 universal digital thermocouple interface IC. This is an exciting update of the MAX31855, with improvements in resolution (19 vs 14 bits), on-board temperature reference (6 vs 4 bits), and compensation (fully compensated vs nonlinear correction required). The MAX31856 is interfaced via 4-wire SPI with options for interrupt triggering. An LDO and a high-speed level shifter are included on ALL device pins to allow interfacing with to any Arduino - both 3.3V and 5.0V variants - without sacrificing device performance in any operating condition.
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MAX31856 Thermocouple Sensor Arduino Shield
SEN-30007-J
Quad channel thermocouple Arduino shield based on the MAX31856 universal digital thermocouple interface IC. This is an exciting update of the MAX31855, with improvements in resolution (19 vs 14 bits), on-board temperature reference (6 vs 4 bits), and compensation (fully compensated vs nonlinear correction required). The MAX31856 is interfaced via 4-wire SPI with options for interrupt triggering. An LDO and a high-speed level shifter are included on ALL device pins to allow interfacing with to any Arduino - both 3.3V and 5.0V variants - without sacrificing device performance in any operating condition.
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SparkFun Qwiic Micro:bit Breakout
The SparkFun Qwiic micro:bit Breakout is a board that connects to the BBC micro:bit and expands the capabilities of the development platform by providing access to more pins and allowing for connections to the I2C and SPI buses. This breakout board for the micro:bit’s edge connector allows intermediate and advanced users to connect the micro:bit to breadboards and other Qwiic sensors, motors, LEDs and more.
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Standard Serial Page EEPROM
Serial Page EEPROM is a high-density, page-erasable SPI EEPROM memory that combines flexibility, performance, and ultra-low power. The Serial Page EEPROM with proprietary NVM cell technology delivers fast erase/write performance with high cycling endurance and robust retention. The new architecture allows fast wake up and byte flexibility, as well as block management and fast quad output, while keeping current surge and energy budget at very low levels.
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Transceiver
TCVR Series
*4-wire SPI (3.3 V Logic) digital interface *-45 C° to +85 C° *4 W linear power T*ransceiver pair support dual polarization *Low EVM% *Outdoor unit IP68 compliant *Compliant to RTCA-DO-160G *Concept/Eval Unit Tested to 1024-QAM
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High Flexibility Test Controller Card
TCC 1800-UE
The TCC1800-UE Test Controller Card is a generic control board for production testing of printed circuit boards (PCBs). The board is controlled by a command language on a PC to which it is connected via Ethernet.The TCC1800-UE is designed to work with positive voltages up to 24V. The card provides extensive IO: Analog and digital interfacing, counters, PWM outputs, bidirectional I/O, ethernet-, CAN, USB, SPI and I2C interfacing.
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Dual MAX31865 PT-100 RTD to Digital Breakout
SEN-30202-PT100
Dual channel breakout board for the MAX31865 RTD-to-Digital converter from Maxim. Two breakout hardware configurations are available standard, designed to interface with either the PT100 or PT1000 platinum RTDs. For non-standard applications, including thermistors, custom hardware configurations can be accommodated. Contact Technical Support for more information. RTD devices may be wired in 2, 3 or 4-wire configurations using the 4-pin screw terminal input. The MAX31865 breakout 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.
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Training Board
JT 2156
The JT 2156 training board has been devised to demonstrate all the latest features and test techniques available to users of JTAG Technologies’ ProVision & JTAG Live application development systems. As well as a modern ARM Core processor, the design also includes an Altera Cyclone FPGA, DDR Memory, Ethernet PHY, and several SPI and I2C peripheral parts. The JT2156 is shipped with a comprehensive self-study manual for getting to know the in-depth features of ProVision and/or JTAGLive Studio. For Altium users the design also serves as an example of how to adapt the Nano board into a realistic custom design.
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AOI & SPI Test Systems
Xceed AOI
Most defects in the circuit-board assembly are due to the solder paste or the process of printing solder paste. Since the transition to lead-free soldering, a whole new spectrum of problems has emerged in older paste printing and its due processes. Incomplete coalescence of ball grid array (BGA) spheres and solder paste deposits are failure modes that have increased in frequency since the transition to lead-free soldering. The Xceed enables true 3D measurement and provides the most accurate and repeatable inspection results with the minimum false calls. It’s designed with Advanced Signal Processing which gives results in noise-less, clear, and accurate 3D images.