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Sub-systems
Our self-contained, in-house components design and fabrication capacities ensure the breadth of sub-assemblies offered from rapid prototyping and proof of concept to full production. Ducommun has produced many high performance millimeterwave band sub-assemblies for commercial and military system applications. Among them, the K and Ka band directional Doppler Radar front ends are in production. Several hundreds of sets have been delivered. In addition, Ducommun has delivered Ka through W band engineering prototypes for plasma detection system, automotive Radar, speed Radar, automatic test set, radio telescope, missile terminal guidance, telecommunication system etc. applications.
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Prototyping Adapters/Interposers
Prototyping adapters breakout from any package type to 2.54mm pitch pins or a larger pitch SMT footprint to solder to your development board. Our extensive design library means that many are available for fast delivery or next day from RS Components.
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USRP-2974, 10 MHz to 6 GHz, x86 Processor, GPS-Disciplined OCXO, USRP Software Defined Radio Stand-Alone Device
785606-01
The USRP-2974 is built on the LabVIEW reconfigurable I/O (RIO) architecture with an onboard Intel Core i7 processor running the NI Linux Real-Time OS. The USRP-2974 is a USRP Software Defined Radio Stand-Alone Device, meaning that you can target the onboard processor with LabVIEW Communications System Design Suite to deterministically perform processing. The USRP-2974 is also equipped with a GPS-disciplined 10 MHz oven-controlled crystal oscillator (OCXO) Reference Clock. You can prototype a range of advanced research applications that include stand-alone LTE or 802.11 device emulation; Medium Access Control (MAC) algorithm development; multiple input, multiple output (MIMO); heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.
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Doppler Radar Target Simulators
Automotive radar sensors play a vital role in the current development of autonomous driving. Their ability to detect objects even under adverse conditions makes them indispensable for environment-sensing tasks in autonomous vehicles. As their functional operation must be validated in-place, a fully integrated test system is required. Radar Target Simulators (RTS) are capable of executing end-of-line, over-the-air validation tests by looping back a received and afterward modified radar signal and have been incorporated into existing Vehicle-in-the-Loop (ViL) test beds before. However, the currently available ViL test beds and the RTS systems that they consist of lack the ability to generate authentic radar echoes with respect to their complexity. The paper at hand reviews the current development stage of the research as well as commercial ViL and RTS systems. Furthermore, the concept and implementation of a new test setup for the rapid prototyping and validation of ADAS functions is presented. This represents the first-ever integrated radar validation test system to comprise multiple angle-resolved radar target channels, each capable of generating multiple radar echoes. A measurement campaign that supports this claim has been conducted.
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USRP-2944, 10 MHz to 6 GHz, Reconfigurable USRP Software Defined Radio Device
783149-01
The USRP-2944 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. Built on the LabVIEW reconfigurable I/O (RIO) architecture, USRP RIO delivers an integrated hardware and software solution, so researchers can prototype faster and significantly shorten time to results. You can prototype a wide range of advanced research applications that include multiple input, multiple output (MIMO); synchronization of heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding.
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Prototyping
Our offering includes research expertise and prototyping services in the field of micro- and nanotechnology, for applications in electronics, photonics, sensor technology and biotechnology, among others. Our flexible R&D infrastructure enables us to meet cross-industry specifications and provide tailored solutions for our customers.
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Supported Test Systems
TTCI is a leading solutions provider of application development for test systems from Seica, Keysight, Teradyne, Digitaltest, and XJTAG. We offer a wide variety of testers and test solutions to meet your needs. Our Seica Pilot and Digitaltest Condor flying probe systems can handle all of your low- to mid-volume production, prototypes, and PC boards with accessibility issues. The Keysight 3070 and Teradyne TestStation can address your larger production runs and fixture requirements. In addition, we can also address your functional and boundary scan needs.
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SparkFun Solder-able Breadboard
Large
This is the Large SparkFun Solder-able Breadboard. A bare PCB that is the exact size as our full-size breadboard with the same connections to pins and power rails. This board is especially useful for preserving a prototype or experiment you just created on a solderless breadboard by soldering all the pieces in place.
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PXI FlexRay Interface Module
PXI FlexRay Interface Modules provide two fully functional FlexRay interfaces, allowing an individual electronic control unit (ECU) to be connected to the interface when other cold-start nodes are not available. You also can use the interfaces individually to connect two separate FlexRay networks while maintaining full performance on each interface. PXI FlexRay Interface Modules work well in applications such as hardware-in-the-loop (HIL) simulation, rapid control prototyping, bus monitoring, and automation control.
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Wireless Network Emulators
Keysight’s industry-leading range of wireless network emulators and device test solutions enable the entire mobile device ecosystem to accelerate the market introduction of new wireless devices by streamlining the workflow from early prototyping, development, and design verification to conformance, carrier acceptance, and high-volume manufacturing.
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Services
At Pure Engineering, we specialize in providing custom solutions to help our clients overcome their most challenging problems. Our services range from rapid prototyping to mass production of consumer products and are backed by our deep understanding of low power design, RF complexities, design for manufacturing, and product life cycles. Our team is skilled in a variety of areas, including strategic planning, product development, and architecture design. We use engineering principles to assess the feasibility and suitability of technology for a given design and can create proof-of-concepts, prototypes, and subject matter experts to solve design challenges. We also have expertise in the Internet of Things (IoT) and have experience developing low-power systems that run on batteries and efficiently transfer data. Additionally, we have extensive experience in Bluetooth Low Energy (BLE) technology, creating sensors that connect to modern phones and computers and creating custom protocols using off-the-shelf hardware. Whether you need help with a specific aspect of your project or support throughout the development process, we are here to assist you.
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PCI-8513, 1‑Port, Software‑Selectable/FD CAN Interface Device
780684-01
1‑Port, Software‑Selectable/FD CAN Interface Device—The PCI‑8513 is a controller area network (CAN) flexible data-rate (FD) interface for developing applications with the NI‑XNET driver. NI‑XNET software-selectable CAN interfaces offer the best flexibility for CAN development with onboard transceivers for high-speed/FD, low-speed/fault-tolerant, and single-wire CAN as well as any external transceiver. The PCI‑8513 excels in applications requiring real‑time, high‑speed manipulation of hundreds of CAN frames and signals such as hardware‑in‑the‑loop simulation, rapid control prototyping, automation control, and more. The NI‑XNET device‑driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts.
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Rapid Prototyping
Prototyping is a crucial step in the larger product design and development process. Prototypes allow organizations to stress-test their ideas, evaluate form factor and appearance, assess feasibility and production requirements, and ultimately produce a solid proof of concept. But prototyping can be a surprisingly challenging undertaking: it requires sourcing different materials and parts, possibly incorporating mechanical engineering alongside industrial design, and combining skillsets to produce a single, tangible prototype.
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Vehicle Multiprotocol Interface Device
The Vehicle Multiprotocol Interface Device excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware-in-the-loop (HIL) simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI-XNET device-driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex models and applications.
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Multifunction I/O
526
Four 24-bit quadrature encoder inputsFour 16-bit analog outputsEight 16-bit analog inputsEight digital I/OSingle supply (5 V) input powerProgrammable interrupt timerVersatile watchdog timerxPC Target Real-time rapid prototyping softwareavailable through MathWorks
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Sensor Evaluation Kits
Panasonic Industrial Devices Sales Company of America
Accelerate prototyping and testing by utilizing Panasonic's Sensor Evaluation Kits for all your design needs. Discover today why Panasonic Sensors are the premier choice for creating unique IoT solutions.
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Engine Mounted Gearboxes (EMADs)
Engine mounted accessory drives (EMADs) — Our EMADs are manufactured with care and precision, using TRIUMPH Geared Solutions or customer designs to meet the engine manufacturers’ specifications. Low profile casings help minimize engine frontal area and facilitate engine installation. EMADs provide power for fuel pumps, alternators, and lubricant and scavenge pumps. TRIUMPH Geared Solutions contributes to prototype EMAD design and manufacture, such as for the F119 and YF120 engines. Triumph Geared Solutions EMADs have also gone into service on many military and civilian engines.
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PXI-8511, 1‑ or 2-Port, Low-Speed/Fault Tolerant PXI CAN Interface Module
780686-02
1‑ or 2-Port, Low-Speed/Fault Tolerant PXI CAN Interface Module—The PXI‑8511 is a fault-tolerant Controller Area Network (CAN) interface for developing applications with the NI‑XNET driver. The PXI‑8511 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimize message latency and freeing host processor time for processing complex models and applications.
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Vehicle Multiprotocol Interface Module
C Series
C Series Vehicle Multiprotocol Interface Modules use hardware-selectable NI-XNET Transceiver Cables (TRC) to communicate High-Speed/Flexible Data‑Rate CAN, Low-Speed/Fault Tolerant CAN, and/or LIN. Using the NI-XNET driver, you can create applications that require real-time, high-speed manipulation of hundreds of CAN and/or LIN frames and signals. The NI-XNET device-driven DMA engine enables the onboard processor to move frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time. C Series Vehicle Multiprotocol Interface Modules work well in applications such as hardware-in-the-loop (HIL) simulation, rapid control prototyping, bus monitoring, and automation control.
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Semiconductor Functional Verification Tools
Trek5
Breker’s solutions enable test reuse across simulation, emulation, prototyping and actual silicon, eliminating redundant effort across the development flow. The Breker “Trek” suite solves challenges across the functional verification process for large, complex semiconductors.
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PathWave EM Design (EMPro)
Electromagnetic (EM) simulation brings you insight before physical prototyping. Customize EM simulations for speed and accuracy. Integrate EM analysis with your circuit simulations.
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Evaluation Kits:
Grid-EYE® AMG8834EVAL Evaluation Kit
Panasonic Industrial Devices Sales Company of America
Panasonic is pleased to announce the availability of the Grid-EYE AMG8834EVAL Evaluation Kit featuring TrackMe Software for its' Grid-EYE Infrared Array Sensor, which integrates a ”nanopower” Bluetooth® Smart Module and a microcontroller. The AMG8834EVAL Kit is intended for prototyping the Grid-EYE Sensor which is a 64 pixel IR camera in a surface mount package measuring 11.6mm x 8mm x 4.3mm, which integrates the MEMS Sensor, lens and I2C interface.
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Custom & OEM Products
Applicos can provide custom hardware and software for many applications within the Analog/Mixed Signal area. We offer a unique combination of full-service assistance throughout the entire product realization process, from conceptualization to prototyping and manufacturing.
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Design for Test
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.
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LIN Interface Device
LIN Interface Devices are bus interfaces for developing applications with the NI-XNET driver. The NI-XNET device-driven DMA engine couples the LIN bus to host memory to minimize message latency. You can import, edit, and use signals from LDF databases in integrated LIN databases. LIN Interface Devices work well for applications requiring real-time, high-speed manipulation of many LIN frames and signals, such as hardware-in-the-loop simulation, rapid control prototyping, bus monitoring, and automation control.
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Cables
Adapter Cables connect your Spectrum card or instrument with your device under test, your sensor, your transmitter or receiver, your external machine, your prototype equipment or simply with a probe for measuring. To fulfill a lot of different requirements Spectrum is offering adapter cables between different types of connections and with different length. These adapter cables are manufactured for Spectrum following Spectrum's specification.
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Thermal Testing And Analysis
Response Dynamics Vibration Engineering, Inc.
We have consulted on thermal issues ranging from conduction issues in TECs, thermal radiation modeling, and countless air cooled system issues relating to system performance, vibration, and acoustics noise. We use a wide array of thermocouple instrumentation, thermal imaging, flow measurements, as well as finite element analysis and analytic modeling to measure, design, and debug thermal and related issues. We often work on customer products in our Response Dynamics lab where we characterize the system, engineer solution options, and prototype solutions. We then work with the customer to work the winning solution into their quality control and manufacturing process.
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PXI Prototyping Module, 2-Slot, 25-Pin D-Type
40-225A-302
The 40-225A PXI Prototyping Modules are stripped down versions of the 40-220A PXI Breadboard series. These are very basic, low cost prototype modules. They have no PXI interface but do have access to fused power supplies from the PXI backplane.
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Pre-Bonded Metalbacked PCB
Teledyne Labtech's significant in-house resources have the capability to satisfy the most exacting demands of complex pre-bonded PTFE Microwave PCB. Our extensive machine shop facilities allows Teledyne Labtech to offer a complete sourcing solution from low volume prototypes to high volume production requirements. Teledyne Labtech can also offer pre-bonded metalbacked PCB with integrated wave-guide transitions and co-planar wave-guides.
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PXI, CPCI Development And Prototyping Board
TE2100
Team Solutionsí PXI Development and Prototype board is the fastest road for system integrators to deliver a PXI customized product and provides design engineers with a speedy avenue to release PXI based prototypes and products.





























