ATA’s Nanoradian-Class Rotational Sensors 10 November 2009.

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Presentation transcript:

ATA’s Nanoradian-Class Rotational Sensors 10 November 2009

Use or disclosure of this sheet is subject to the restriction on the title page of this document. ATA Overview Awards and Distinctions –2008 Minority Manufacturer of the Year –2004 SBA National Prime Contractor of the Year –2005 NM Innovator of the Year –USAF Small Business R&D Awards –SBA Administrator’s Award –Multiple Patented Technologies Operating Sites in New Mexico –ATA 1300 Britt Street, Albuquerque, NM Headquarters –Kirtland AFB – AFRL and Big Crow Support Sites –North Oscura Peak, WSMR AFRL Laser Test Facility –Las Cruces, NM WSMR Support Site Founded 1975 A-TECH Corporation, d.b.a. Applied Technology Associates Customers Include USAF, Sandia NL, US Army, MDA, NASA, US Navy, and Aerospace and Defense Companies Approximately 250 Employees ATA is an Established Technology Company with a Proven Track Record 2

Use or disclosure of this sheet is subject to the restriction on the title page of this document. ISO-9001 Certified Class 10,000 Clean Room Approved Vendor –Ball Aerospace –Lockheed Martin –Boeing –Raytheon Produced Space Qualified Hardware –Lockheed Martin –Boeing –Raytheon –Sandia National Laboratories ATA Overview Cont’d 3

Use or disclosure of this sheet is subject to the restriction on the title page of this document. 4 ATA has a history of inventing sensors in response to customer requests or internally identified needsOverview

Use or disclosure of this sheet is subject to the restriction on the title page of this document. MHD ARS Sensing Concept The MHD concept resulted from an Air Force request for alternate angular sensing techniques High Performance High Bandwidth: > 1,000 Hz Low Noise Floor: <100 nrad NEA (1-1kHz) High Dynamic Range: > 100 dB Low Cross-Axis Sensitivity Simple Design Small Size: 1.0 x 1.0 x 1.3” Low Weight: 100 grams Low Power: < 0.3 Watts Rugged Design: > 1,000 g

Use or disclosure of this sheet is subject to the restriction on the title page of this document. Augmenting Sensors with Other Technologies Radiation-tolerant design (100Krad environment) ATA designed and implemented FPGA processing architecture, collaborated in board design 6

Use or disclosure of this sheet is subject to the restriction on the title page of this document. 7 Microradian-Class Testing ATA has developed test facilities and techniques suitable for a range of motion profiles

Use or disclosure of this sheet is subject to the restriction on the title page of this document. ARS Specifications ModelARS-06ARS-15ARS-14ARS-24 Range+200 rad/s+10 rad/s+0.5 rad/s rad/s Scale Factor50mv/rad/s1 V/rad/s20 V/rad/s2120 V/rad/s -3dB Bandwidth kHz4 – 1kHz1 – 1 kHz1 – 675 Hz Rate Noise, 1-1kHz4.7 mrad/s27 μrad/s5 μrad/s1 μrad/s Displ. Noise, 1-1kHz50 μrad0.8 μrad50 nrad8 nrad Dimensions (inches)0.7 x 10.8 x 0.8 x 1.21 x 1.3 x 2.92 x 2 x 4 Mass (grams)

Use or disclosure of this sheet is subject to the restriction on the title page of this document. Frequency Response Magnitude

Use or disclosure of this sheet is subject to the restriction on the title page of this document. Frequency Response Phase

Use or disclosure of this sheet is subject to the restriction on the title page of this document. Rate Noise

Use or disclosure of this sheet is subject to the restriction on the title page of this document. Displacement Noise

Use or disclosure of this sheet is subject to the restriction on the title page of this document. 13 These radiation hardened DC accelerometer units can measure microradian-level tilts in the presence of strong background acceleration (0.25g rms +). 0.1 μ G Accelerometer

Use or disclosure of this sheet is subject to the restriction on the title page of this document. Seismically Stable Platform Tilt Sensor (1990) Noise -174 dB rad Corner 6.9 mHz

Use or disclosure of this sheet is subject to the restriction on the title page of this document. Northfinder Current effort underway to develop a 1 mrad Northfinder Based on modulating earth rate onto the ARS-14 by rotating a horizontal sensor in the earth’s rotation field