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Weather Radar Receiver
This is an example of a custom four-channel C-Band Receiver uses a single conversion technique to translate incoming 5.56 GHz radar signals to a 60 MHz IF. The Receiver is divided into two polarization sections, each with a dedicated channel for the received signal and a second channel for a reference signal originatingfrom the transmitter. There are two identical circuits in the Receiver, one reserved for vertically polarized signals, and the second for horizontal signals.
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Surveillance Radar Systems
The radar hardware components and the processing system are state of the art technology, along with the systems and application software.
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IR Targeting Sights
L3 Cincinnati Electronics’ NightConqueror high-performance thermal imagers have been selected as the imager of choice for new platforms and as an upgrade to many existing legacy vehicles for U.S. and foreign militaries. These modules carve out a true path to horizontal technology insertion across numerous battle platforms. They are true "drop-in replacements" that in every way meet or exceed the older unit's form, fit and function. L3 Cincinnati Electronics' upgraded legacy platforms provide flexibility and synergy in a variety of applications, addressing many of today’s most difficult mission profiles.
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High 1.73 (49.00) - 8.00 (227.00) Bead Probe
BTP-1HL-8
Current Rating (Amps): 6Average Probe Resistance (mOhm): 10Test Center (mil): 75Test Center (mm): 1.91Full Travel (mil): 250Full Travel (mm): 6.35Recommended Travel (mil): 167Recommended Travel (mm): 4.24Mechanical Life (no of cycles): 500,000Overall Length (mil): 1,300Overall Length (mm): 33.02
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Radar: functionality & basics
Learn what radar means, what radar sensors can perform and how radar technology works. In our brief insight into the basics of radar sensing.
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Elevated 2.67 (76.00) - 7.00 (198.00) Bead Probe
BTP-72HC-7
Current Rating (Amps): 3Average Probe Resistance (mOhm): 15Test Center (mil): 50Test Center (mm): 1.27Full Travel (mil): 250Full Travel (mm): 6.35Recommended Travel (mil): 167Recommended Travel (mm): 4.24Overall Length (mil): 1,700Overall Length (mm): 43.18
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Light 0.83 (24.00) - 2.00 (57.00) Bead Probe
BTP-1HF-2
Current Rating (Amps): 6Average Probe Resistance (mOhm): 10Test Center (mil): 75Test Center (mm): 1.91Full Travel (mil): 250Full Travel (mm): 6.35Recommended Travel (mil): 167Recommended Travel (mm): 4.24Mechanical Life (no of cycles): 500,000Overall Length (mil): 1,300Overall Length (mm): 33.02
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High 0.75 (21.00) - 8.00 (227.00) Long Travel Bead Probe
BPLT-25F-8
Current Rating (Amps): 8Average Probe Resistance (mOhm): 8Test Center (mil): 100Test Center (mm): 2.54Full Travel (mil): 350Full Travel (mm): 8.89Recommended Travel (mil): 317Recommended Travel (mm): 8.05Mechanical Life (no of cycles): 500,000Overall Length (mil): 1,460Overall Length (mm): 37.08Full Travel Remark: Standard Spring: 400 mil / 10,16 mm, Alternate Spring 400 mil / 10,16 mm, High Spring: 400 mil / 10,16 mm, Ultra High Spring: 350 mil / 8,89 mm
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High 1.73 (49.00) - 8.00 (227.00) Bead Probe
BTP-1HF-8
Current Rating (Amps): 6Average Probe Resistance (mOhm): 10Test Center (mil): 75Test Center (mm): 1.91Full Travel (mil): 250Full Travel (mm): 6.35Recommended Travel (mil): 167Recommended Travel (mm): 4.24Mechanical Life (no of cycles): 500,000Overall Length (mil): 1,300Overall Length (mm): 33.02
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Acoustic Target Impact Localization System
ATILS
In peace time, for training purposes, artillery units conduct their frequent target practicing.Both the skills of the gunners and the forward observers need to be improved, their communication cycle to be shortened.Forward observing is a dangerous task during war time, causing a justification to find other ways to localize impacts and adjust fires.Furthermore, the sheer lack of a line of sight, because of topography and/or weather, also thrives the need for other solutions to determine the impact coordinates.
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Utility Detection Radar
DS2000
There’s a lot going on underground that you need to know about before you ever start to dig. The Leica DS2000 Utility Detection Radar finds all potential threats, including non-conductive pipes and fibre optics, increasing safety by lowering the risk of accidently hitting underground assets. Increase safety, speed up work and lower asset management costs with the ability to prevent hazardous outages and collect more information. The DS2000 betters your business by making it safer, faster and more efficient.
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Radar: Funktionsweise & Grundlagen
Was ist Radar? Was leisten Radarsensoren und wie funktioniert die Radartechnik? Erfahren Sie mehr in unserem kurzen Einblick in die Grundlagen der Radarsensorik.
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Weather Radar
Honeywell Aerospace Technologies
Weather has long been one of the biggest barriers to the success of a commercial flight or military mission. As weather patterns become increasingly unpredictable, pilots can rest assured knowing that Honeywell’s weather radar solutions will help them navigate the skies safely and efficiently in even the most hazardous conditions.
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Radar Level Transmitter
DR7400
Drexelbrook DR7400 is a loop powered FMCW 26 GHz radar that offers State-of-the-Art components. The DR7400 operates over a larger bandwidth: This ensures excellent resolution and high accuracy in agitated and corrosive liquids.
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Radar Antenna Positioners
CAES is a leading designer and manufacturer of custom radar antenna positioners for military airborne, ground, and naval applications.
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Ultra High 1.16 (33.00) - 9.70 (275.00) Long Travel Bead Probe
BPLT-25HL-9.7
Current Rating (Amps): 8Average Probe Resistance (mOhm): 8Test Center (mil): 100Test Center (mm): 2.54Full Travel (mil): 350Full Travel (mm): 8.89Recommended Travel (mil): 317Recommended Travel (mm): 8.05Mechanical Life (no of cycles): 500,000Overall Length (mil): 1,460Overall Length (mm): 37.08Full Travel Remark: Standard Spring: 400 mil / 10,16 mm, Alternate Spring 400 mil / 10,16 mm, High Spring: 400 mil / 10,16 mm, Ultra High Spring: 350 mil / 8,89 mm
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Real-Time Target Machines
Speedgoat offers a range of high performance multi-core, multi CPU target computers (target machines) with i3 and i7 CPUs up to 4.2 GHz, and up to 20 cores. Each is optimized for a different application area, from mobile controller prototyping (RCP) to multi-target rack systems for Hardware-in-the-Loop (HIL).
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SHORT-RANGE RADAR
GIRAFFE 1X
GIRAFFE 1X is a small and lightweight yet highperforming 3D radar that is easily integrated in almost any type of mobile platform, fixed structure or C2 system. The system is designed to deliver key capabilities as part of short-range surveillance and Ground Based Air Defence (GBAD).
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Targets
Targets from group A are developed to support mostly testing infrared imaging systems understood as thermal imagers. These targets can be used also in testing visible/near infrared cameras or SWIR cameras but such application is not optimal. IR targets are mostly used in DT systems for testing thermal imagers and in MS systems for testing multi-spectral systems.
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SparkFun Pulsed Radar Breakout
A111
Does your project require high-precision, cutting-edge distance measurement? Or maybe speed, motion, or gesture-sensing? We're not talking about simple ultrasonic or even infrared here, but 60GHz radar! Well say hello to the SparkFun A111 Pulsed Radar Breakout! The A111 is a single-chip solution for pulsed coherent radar (PCR) and comes complete with an integrated antenna and an SPI interface capable of clock speeds of up to 50MHz. Though the A111's primary use case is distance-sensing, it also supports applications in gesture, motion, material, and speed-detection at distances of up to two meters.
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Target simulators
Simat simulator is an advanced hardware simulator capable to simulate in infrared range several targets on quasi uniform background. In detail Simat simulator is a modular image projector capable to simulate in infrared range variable intensity, variable angular size, variable spectrum, spatially and temporally dynamic airborne type targets on quasi uniform background. Basically the aim of Simat to enable simulation typical airborne targets like aircrafts or helicopters for infrared imaging sensors used for surveillance of these targets. Optionally Simat can be modernized to enable simulation in both IR and UV/visible ranges as the projectors are built using broadband reflective optical elements.
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Pulse Radar Sensors
Non-contact pulse radar level transmitters are available in general purpose and intrinsically safe models for liquids and internisically safe models for solids with light, medium, and heavy dust.
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Radar Detectors
Drive Smarter® and Safer. Instant-on detection recognizes radar signals from the front and rear of your vehicle. Advanced technology reduces false alerts for a peaceful drive.
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Collision avoidance radar sensor
OndoSense reach WA (E)
With its wide detection range, the OndoSense reach WA (Wide Angle) is particularly suited for detecting obstacles such as vehicles, people or objects as well as for positioning robots and machines. It detects static and moving objects even at close range from 0.1 meters and can be easily integrated even in confined spaces, thanks to its very small design. With up to 4 adjustable sensor zones, the OndoSense reach WA is ideal for flexible monitoring of security areas or collision avoidance of mobile robots or other vehicles. Thanks to innovative radar technology, the radar sensor always reliably detects objects of any nature, even outdoors or in difficult environments with dirt, smoke, steam, rain or poor lighting conditions. And as a result of its high measuring rate of 200 Hz, it always reliably detects obstacles even with fast movements.
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Innovative Multiple - Object Tracking Radar
iMOTR
We have advanced the multiple-object tracking radar concept with an innovative application to meet today’s test range needs. The iMOTR features enhanced clutter suppression capabilities to deliver clearer, more accurate assessments of object launch trajectory and flight path data on airborne and low flying objects. This tracking information can then be handed-off to other radars or data collection sensors in real-time. The system is also better equipped to provide precision time, space, and position information (TSPI) data of multiple objects in flight over a wider field of regard than the current test range radars in service.
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High 3.12 (88.00) - 8.00 (227.00) Bead Probe
BTP-72HC-8
Current Rating (Amps): 3Average Probe Resistance (mOhm): 15Test Center (mil): 50Test Center (mm): 1.27Full Travel (mil): 250Full Travel (mm): 6.35Recommended Travel (mil): 167Recommended Travel (mm): 4.24Overall Length (mil): 1,700Overall Length (mm): 43.18
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Adaptive Target Recognition System
Information System Technologies Inc.
ISTI’s adaptive target recognition, detection and classification system for sonar imagery can learn in-situ from expert operators’ feedback in order to yield better accuracy and flexibility in making decisions in new environmental and operating conditions. The developed system is based on the intuitive concept of image retrieval, where images submitted to the system are matched to learned images via a similarity measure. An information-based selective sampling measure chooses the new patterns to be used in the in-situ learning.
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High 2.84 (81.00) - 8.00 (227.00) Bead Probe
BTP-25F-8
Current Rating (Amps): 8Average Probe Resistance (mOhm): 8Test Center (mil): 100Test Center (mm): 2.54Full Travel (mil): 250Full Travel (mm): 6.35Recommended Travel (mil): 167Recommended Travel (mm): 4.24Mechanical Life (no of cycles): 500,000Overall Length (mil): 1,300Overall Length (mm): 33.02
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Synthetic Aperture Radar Image Processing
L3Harris Geospatial Solutions, Inc
Accurately and reliably monitoring the Earth is critical to many geophysical and geospatial applications. However, most sensors cannot capture data at night or through clouds, dust or smoke.




























