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PCI Express Graphics Cards With NVIDIA RTX 4000 SFF Ada
NVIDIA RTX 4000 SFF Ada
- NVIDIA Ada Lovelace Architecture- Half height, half length design- PCIe Gen4x16 interface- 20GB GDDR6 Memory, 160-bit Bandwidth- 6144 CUDA Cores, 19.2 TFLOPS SP Peak- 192 Tensor Cores, 106.8 TFLOPS- 4 x mDP (mini Display Port 1.4), 1 x USB-C
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Embedded MXM GPU Module with NVIDIA RTX™ A2000
EGX-MXM-A2000
- NVIDIA Ampere Architecture- Standard MXM 3.1 Type A (82x70mm)- PCIe Gen 4 x8 interface- 2560 CUDA® cores, 20 RT Cores, and 80 Tensor Cores- 8.25 TFLOPS peak FP32 performance
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Embedded MXM GPU Module With NVIDIA RTX™ ADA 2000
EGX-MXM-AD2000
- NVIDIA Ada Lovelace Architecture- Standard MXM 3.1 Type A (82x70 mm)- PCIe Gen 4 x8 Interface- 3072 CUDA® Cores, 24 RT Cores, and 96 Tensor Cores- 14.5 TFLOPS peak FP32 performance
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Embedded MXM GPU Module with NVIDIA® Quadro® Embedded RTX5000
EGX-MXM-RTX5000
The EGX-MXM-RTX5000 module features advanced NVIDIA® Turing™ GPU technology in MXM 3.1 Type B+ form factor. It’s compact, slim and reliable design makes it suitable for mission critical environment. EGX-MXM-RTX5000 supports 4 DP 1.4b displays offering a flexible and easy solution for medical and gaming applications.
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USB Graphics Adapter, Internal Mount, DB-15 connector
DB-UVGA16
- Mounts in DB9 cutout on chassis or in PCI slot- Uses internal USB pin header- Display resolutions up to: 1600 x 1200 (4:3), 1680 x 1050 (16:10)- Supports multiple display modes: Primary, Extended, Mirr
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Embedded MXM GPU Module with NVIDIA® Quadro® Embedded RTX3000
EGX-MXM-RTX3000
The EGX-MXM-RTX3000 module features advanced NVIDIA® Turing™ GPU technology in MXM 3.1 Type B form factor. It’s compact, slim and reliable design makes it suitable for mission critical environment. With Quadro® Turing™ TU106 processing cores, EGX-MXM-RTX3000 supports 4 DP1.4 displays offering a flexible and easy solution for medical and gaming applications.
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Embedded MXM GPU Module with NVIDIA® Quadro® Embedded P1000
EGX-MXM-P1000
The EGX-MXM-P1000 features advanced NVIDIA Quadro GPU with NVIDIA Pascal™ Architecture technology in MXM 3.1 Type A form factor. The EGX-MXM-P1000 has 512 NVIDIA CUDA cores and a peak single-precision floating-point performance of 1.8 TFLOPS. The EGX-MXM-P1000 has 4GB of GDDR5 memory and supports NVIDIA GPUDirect™ RDMA which helps increase data throughput by up to 80% and consequently system responsiveness by up to 60%*. Additionally, 4 UHD display outputs and an extended operating temperature range of -40°C to 85°C are supported. The embedded graphics product is suitable for mission-critical harsh-environment edge computing applications with size, weight, and power (SWaP) and network connectivity constraints.
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PCI Express Graphics Card With NVIDIA RTX 5000 Ada
NVIDIA RTX 5000 Ada
- NVIDIA Ada Lovelace Architecture- Full height, full length design- PCIe Gen4x16 interface- 32GB GDDR6 Memory, 256-bit Bandwidth- 12800 CUDA Cores, 65.3 TFLOPS SP Peak
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PCI Express Graphic Card with NVIDIA® Quadro® P2200
Quadro-E PEG P2200
The Quadro-E PEG P2200 perfectly balances performance, features, and compact form factor to deliver exceptional creative experience and productivity across a variety of 3D applications. The Pascal GPU with 1280 CUDA cores, 5GB GDDR5 onboard memory and support for up to four 5K (5120x2880 @ 60Hz) native displays accelerate product development and creation workflow demanding fluid interactivity for large, complex 3D workpieces.
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PCI Express Graphics Card With NVIDIA RTX 6000 Ada
NVIDIA RTX 6000 Ada
- NVIDIA Ada Lovelace Architecture- Full height, full length design- PCIe Gen4x16 interface- 48GB GDDR6 Memory, 384-bit Bandwidth- 18176 CUDA Cores, 91.1 TFLOPS SP Peak
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Embedded MXM GPU Modules with NVIDIA® Quadro® Embedded P2000
EGX-MXM-P2000
The EGX-MXM-P2000 features advanced NVIDIA Quadro GPU with NVIDIA Pascal™ Architecture technology in MXM 3.1 Type A form factor. The EGX-MXM-P2000 has 768 NVIDIA CUDA cores and a peak single-precision floating-point performance of 2.3 TFLOPS. The EGX-MXM-P2000 has 4GB of GDDR5 memory and supports NVIDIA GPUDirect™ RDMA which helps increase data throughput by up to 80% and consequently system responsiveness by up to 60%*. Additionally, 4 UHD display outputs and an extended operating temperature range of -40°C to 85°C are supported. The embedded graphics product is suitable for mission-critical harshenvironment edge computing applications with size, weight, and power (SWaP) and network connectivity constraints.
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Embedded MXM GPU Module with NVIDIA® Quadro® Embedded T1000
EGX-MXM-T1000
The EGX-MXM-T1000 module features advanced NVIDIA® Turing™ GPU technology in MXM 3.1 Type A form factor. It’s compact, slim and reliable design makes it suitable for mission critical environment. EGX-MXM-T1000 provides improved performance per watt. This MXM GPU module offers a flexible and easy solution for deep learning solutions for applications including medical, image processing, and gaming applications.
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PCI Express Graphics Card With NVIDIA RTX 4500 Ada
NVIDIA RTX 4500 Ada
- NVIDIA Ada Lovelace Architecture- Full height, full length design- PCIe Gen4x16 interface- 24GB GDDR6 Memory, 192-bit Bandwidth- 7680 CUDA Cores, 39.6 TFLOPS SP Peak
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PCI Express Graphic Card NVIDIA RTX 4000E Ada
NVIDIA RTX 4000E Ada
- NVIDIA Ada Lovelace Architecture- 5-year Longevity Support- Full height, full length design- PCIe Gen4x16 interface- 20GB GDDR6 Memory, 160-bit Bandwidth- 6144 CUDA Cores, 26.7 TFLOPS SP Peak
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PCI Express Graphic Card With NVIDIA RTX 2000E Ada
NVIDIA RTX 2000E Ada
- NVIDIA Ada Lovelace Architecture- 5-year Longevity Support- Half height, half length design- PCIe Gen4x8 Interface- 16GB GDDR6 Memory, 128-bit Bandwidth- 2816 CUDA Cores, 12 TFLOPS SP Peak- 88 Tensor Cores, 191.9 TFLOPS- 4 x mDP (mini Display Port 1.4)
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Embedded MXM GPU Module With NVIDIA RTX™ ADA 3500
EGX-MXM-AD3500
- NVIDIA Ada Lovelace Architecture- Standard MXM 3.1 Type B (82x105 mm)- PCIe Gen 4 x16 Interface- 5120 CUDA® Cores, 40 RT Cores, and 160 Tensor Cores- 23 TFLOPS peak FP32 performance
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Embedded MXM GPU Module With NVIDIA RTX™ ADA 5000
EGX-MXM-AD5000
- NVIDIA Ada Lovelace Architecture- Standard MXM 3.1 Type B (82x105 mm)- PCIe Gen4x16 interface- 9728 CUDA® Cores, 76 RT Cores, and 304 Tensor Cores- 42.6 TFLOPS peak FP32 performance- 16GB GDDR6 memory, 256-bit- 576GB/s maximal memory bandwidth- 5-year Availability
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Array Sensors
Array sensors use closely spaced beams of light to detect even the slightest differences in gray scale between the target and the background within their field-of-view. They are ideal for edge and diameter detection as well as detecting widths and gaps. SICK’s array sensors offer industry-leading reproducibility, in addition to compact, rugged metal housings for use in highly restricted or harsh environments.
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Embedded Graphics Controllers
Curtiss-Wright Defense Solutions
Whether you need a high-performance solution to see clearly in degraded visual environments or you're looking to add graphics processing without taking up another slot in your SWaP-constrained system, you'll find the perfect fit in our selection of embedded graphics cards.
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Triangular Array
W8AV
We have under-rated the power this system can handle to assure the user high reliability under heavy use such as in a 48 hour radio contest. Please contact us if you have any questions about the product and please send a picture and description of your station showing the Triangle Array control system installed and in use.The W8AV system has two components: a relay box that will be mounted midway between the three verticals and a control box that is connected with a 4-wire control cable inside the operating room.
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Photovoltaic Array Simulator
PV8900 Series
Keysight’s photovoltaic (PV) simulator includes the hardware and software to test a single maximum power point tracking (MPPT) inverter accurately. Test PV voltages up to 2000 V and 60 A with a single supply. DG9000 Series software licenses are available to test string inverter with 4-, 8-, or 12-MPPT channels. Most string inverter solutions test one MPPT channel at a time — leading to test inaccuracies. Keysight's DG9000 advanced PV inverter software can test up to 12 MPPT channels simultaneously.
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Array Antennas
An antenna array (or array antenna) is a set of multiple connected antennas which work together as a single antenna, to transmit or receive radio waves. The individual antennas (called elements) are usually connected to a single receiver or transmitter by feedlines that feed the power to the elements in a specific phase relationship. The radio waves radiated by each individual antenna combine and superpose, adding together (interfering constructively) to enhance the power radiated in desired directions, and cancelling (interfering destructively) to reduce the power radiated in other directions. Similarly, when used for receiving, the separate radio frequency currents from the individual antennas combine in the receiver with the correct phase relationship to enhance signals received from the desired directions and cancel signals from undesired directions. More sophisticated array antennas may have multiple transmitter or receiver modules, each connected to a separate antenna element or group of elements.
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Infrared Array Sensor
Grid-EYE Evaluation Kit
Panasonic Automotive & Industrial Systems Europe GmbH
Panasonic Automotive & Industrial Systems has launched this evaluation kit for its Grid-Eye infrared array sensor, which integrates a ”nanopower” Bluetooth Smart module and a microcontroller. The 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. The integrated Bluetooth module in the evaluation kit, the PAN1740, draws 4.9mA in transmit or receive operating modes, which means it can be powered by coin cell batteries. The IR sensor has 64 thermopile elements in an 8×8 grid format that detect absolute surface temperature without any contact.
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SINE M-19 Sinusoidal Array
The Sinusoidal Array SINE M-19 is a remarkable new test array that achieves 256 cycles per mm while maintaining a significant modulation. It is designed for testing high resolution optical systems such as microscopes. Because its maximum width is 7.5mm, the SINE M-19 is small enough to fit easily onto a standard microscope slide (the TM-G variation is mounted in glass).
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PCI Express Graphics Card With NVIDIA RTX 2000 Ada
NVIDIA RTX 2000 Ada
- NVIDIA Ada Lovelace Architecture- Half height, half length design- PCIe Gen4x8 interface- 16GB GDDR6 Memory, 128-bit Bandwidth- 2816 CUDA Cores, 12 TFLOPS SP Peak- 88 Tensor Cores, 191.9 TFLOPS- 4 x mDP (mini Display Port 1.4), 1 x USB-C
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Graphics Processor
VPX3-717
Curtiss-Wright Defense Solutions
The VPX3-717 is an industry-leading, rugged graphics processor based on the AMD Radeon E8860 GPU and packaged in a 3U OpenVPX form factor. Its V3-717 variant is designed for systems with Design Assurance Level (DAL) A process assurance where AC/AMC 20-152A is the means of compliance to apply DO-254, along with additional objectives for custom devices, COTS devices, and the board itself.
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Workhorse Waves Array
Teledyne Marine RD Instruments
Workhorse Waves Array is an innovative, cost-effective upgrade that allows you to take your Teledyne RDI ADCP to the next level. Via a simple upgrade, you can capture not only the industry’s most field-proven and dependable precision current profiling data, but highly accurate multi-directional wave measurements as well.
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Infrasonic Array
Geosonic
An Infrasonic Array works like a sonic antenna, it is able to detect the magnitude and the source of sound waves. The Geosonic array is able to detect also pressure waves that the human ears can’t hear. A typical pressure wave is that generated by an explosion or by any physical phenomena (natural or human created) that generates an air pressure wave, which means that the Geosonic array can be used to detect a lot of phenomena, like:
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FBG Arrays & Cables
Technica Optical Components, LLC
Our Fiber Bragg Grating Arrays are available in a wide range of optical specifications. Our optical FBG cables consist of an array of Fiber Bragg Grating sensors. All our Fiber Bragg Grating Arrays and Cable models are designed to make handling and deployment fast, easy and intuitive. Technica undertakes a rigorous development process before products release. We are committed to continuous improvements after release to insure performance to the highest of standards.





























