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Supplier: KRYTAR, Inc.
Description: Model 301S: SMC Jack and measures 1.45 inches long x 0.4 inches in diameter KRYTAR detectors are ideal for use in MIL-Spec environments requiring precision test and measurement in instrumentation, subsystem assemblies, radar or missile guidance systems, and lab testing.
- Frequency Range: 100 to 20,000 MHz
- Connector Type: SMA
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Supplier: KRYTAR, Inc.
Description: Model 301S: SMC Jack and measures 1.45 inches long x 0.4 inches in diameter KRYTAR detectors are ideal for use in MIL-Spec environments requiring precision test and measurement in instrumentation, subsystem assemblies, radar or missile guidance systems, and lab testing.
- Frequency Range: 100 to 20,000 MHz
- Connector Type: BNC
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Supplier: KRYTAR, Inc.
Description: Model 301S: SMC Jack and measures 1.45 inches long x 0.4 inches in diameter KRYTAR detectors are ideal for use in MIL-Spec environments requiring precision test and measurement in instrumentation, subsystem assemblies, radar or missile guidance systems, and lab testing.
- Frequency Range: 100 to 20,000 MHz
- Connector Type: SMC
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Supplier: KRYTAR, Inc.
Description: Model 201S: SMC Jack and measures 1.45 inches long x 0.4 inches in diameter KRYTAR detectors are ideal for use in MIL-Spec environments requiring precision test and measurement in instrumentation, subsystem assemblies, radar or missile guidance systems, and lab testing.
- Frequency Range: 10 to 20,000 MHz
- Connector Type: SMA
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The Q1 Laser Radar by Ommatidia offers high-precision measurements and advanced contactless vibrometry. With its 128 parallel channels, it delivers metrology-grade results for distances of up to 50 meters. Additionally, the Q1 features imaging vibrometry (read more)
Browse LiDAR Sensors Datasheets for Ommatidia LiDAR -
The Q1 Laser Radar by Ommatidia offers high-precision measurements and advanced contactless vibrometry. With its 128 parallel channels, it delivers metrology-grade results for distances of up (read more)
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Precision Shafting Applications span a variety of medical devices, commercial and military jets, tanks, missiles, UAVs, robots, and (read more)
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Radar Handbook, Third Edition > Chapter 9 Tracking Radar
[52] R. Mitchell et al., “Measurements of performance of MIPIR ( Missile Precision Instrumentation Radar Set AN/FPQ-6),” Final Rept., Navy Contract NOW61–0428d, RCA, Missile and Surface Radar Division, Moorestown, NJ, December 1964.
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http://calhoun.nps.edu/public/bitstream/handle/10945/3999/08Sep_Driessen.pdf?sequence=1
Missile Precision Instrumentation Radars MIT-LL .
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Flight Test Conference > Flight testing at the West Coast Offshore Operating Area
Three of these radars (FPQ-6, TPQ-18, and the HAIR) are in the MIPIR ( Missile Precision Instrumentation Radar ) class, and provide slightly higher accuracy than the FPS-16 class radars.
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AN/MPS-39 support of U.S. space launch activities
which is claimed to be the first radar designed specifically as a range instrumentation radar) [11, and MIPIR ( MIssile Precision Instrumentation Radar , AN/FPQ-6, AN/FPQ-14 and AN/TPQ-18) classes of radars.
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Exact Target Angular Coordinates from Biased Radar Measurements
[2] R. Mitchell et al., "Measurements and analysis of performance of MIPIR ( missile precision instrumentation radar set AN/FPQ-6)," Missile and Surface Radar Div., RCA, Moorestown, N.J., Final Rep., Navy Contract NOW 61-0428d, Fig. 82, p. 102, Dec. 1964.
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Motion Parameter Measurement of Multiple Air Targets for a Multi-frequency Continuous Wave Radar
The research and development of the MFCW radar has important significance to both the update of a high precision measurement radar such as a missile -range- instrumentation radar and the improvement of the radar performances including ECCM (Electronic Counter-countermeasures) performance.
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Phenomena of Scintillation Noise in Radar-Tracking Systems
With the increasing emphasis on precision in radar guidance in the space and missile age, complete instrumenta- tion was prepared to permit investigation of target-scintillation or target-noise phenomena.
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Radar Ballistic Instrumentation at White Sands Missile Range
The development and implementation of the AN/FPS-16 radar at White Sands Missile Range represents the product of years of engineering to create a precision radar instrumentation system.
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Abstracts of IRE Transactions
The development and im- plementation of the AN/FPS-16 radar at White Sands Missile Range represents the product of years of engineering to create a pre- cision radar instrumentation system.
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RIR 772 range instrumentation radar
The RIR 772 range instrumentation radar is an active radio frequency tracking system designed for precision tracking of rockets, missiles , aircraft and other types of airborne targets.
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