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DSC-11524-193Q

Description
Digital to Synchro or Resolver, Hybrid, DDIP-36
CategoryAnalog mixed-signal IC    converter   
File Size556KB,14 Pages
ManufacturerData Device Corporation
Download Datasheet Parametric View All

DSC-11524-193Q Overview

Digital to Synchro or Resolver, Hybrid, DDIP-36

DSC-11524-193Q Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
MakerData Device Corporation
Parts packaging codeDIP
package instructionDDIP-36
Contacts36
Reach Compliance Codecompliant
ECCN codeEAR99
Maximum angular accuracy4 arc min
Converter typeDIGITAL TO SYNCHRO OR RESOLVER
JESD-30 codeR-XDIP-P36
JESD-609 codee0
length48.1 mm
Maximum negative supply voltage-15.75 V
Minimum negative supply voltage-14.25 V
Nominal negative supply voltage-15 V
Number of digits16
Number of functions1
Number of terminals36
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package body materialUNSPECIFIED
encapsulated codeDIP
Package shapeRECTANGULAR
Package formIN-LINE
Peak Reflow Temperature (Celsius)NOT SPECIFIED
Certification statusNot Qualified
Maximum seat height5.69 mm
Signal/output frequency1000 Hz
Maximum supply voltage15.75 V
Minimum supply voltage14.25 V
Nominal supply voltage15 V
surface mountNO
technologyHYBRID
Temperature levelMILITARY
Terminal surfaceTIN LEAD
Terminal formPIN/PEG
Terminal pitch2.54 mm
Terminal locationDUAL
Maximum time at peak reflow temperatureNOT SPECIFIED
width15.24 mm
Base Number Matches1
DSC-11524
16-BIT HYBRID D/S AND D/R
CONVERTER PIN PROGRAMMABLE
FOR SYNCHRO OR RESOLVER OUTPUT
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®
FEATURES
• 15 mA RMS Output
• 11.8 VL-L Synchro, 11.8 VL-L
Resolver, or 6.81 VL-L Resolver Output
• 8 Bit/2 Byte Double-Buffered
Transparent Latches
• Pin Programmable for Synchro or
Resolver Output
• 16-Bit Resolution
• Complete D/S and D/R Converter
• Mate to DSC-36020 IBM® PC Card
• DC-Coupled Reference Accepts Any
Waveform
DESCRIPTION
The DSC-11524 is a versatile multiplying Digital-to-Synchro/Resolver converter.
The digital input represents an angle, and the output is pin programmable for
either Resolver, SIN/COS, or three-line synchro type output. The reference input
will accept any waveform, even a sawtooth for CRT drive. Because the reference
is DC coupled to the output, the DSC-11524 can be used in many configurations,
such as: a Digital-to-Synchro/Resolver converter using a sinusoidal reference as
an input; a Digital-to-SIN/COS DC converter using a DC reference; a polar-to-
rectangular converter using a reference input proportional to the radius vector; a
rotating cartwheel sweep generator for PPI displays using a sawtooth refer-
ence.
Packaged in a 36-pin DDIP, the DSC-11524 is a complete D/S and D/R con-
verter in one hybrid module. Hybrid technology results in low weight, low power
consumption, very high reliability, and a wide operating temperature range. The
DSC-11524 circuit design allows for higher accuracy and reduces the output
scale factor variation so that the output can drive displays directly. The output
line-to-line voltage can be scaled by external resistors. Other features include
high AC and DC common mode rejection at the reference input, and output short
circuit protection.
• Generates SIN/COS DC or Rotating
PPI Sweep
• High-Rel CMOS D/R Chip
• No +5 V Supply Required
• LVDT Simulation
APPLICATIONS
Because of its high reliability, small size and low power consumption the hybrid
DSC-11524 is ideal for the most stringent and severe industrial and military
ground or avionics applications. All units are available with MIL-PRF-38534 pro-
cessing as a standard option.
Among the many possible applications are computer-based systems in which
digital information is processed, such as simulators, flight trainers, flight instru-
mentation, fire control systems, radar and navigation systems, and PPI displays
including moving target indicators.
FOR MORE INFORMATION CONTACT:
Data Device Corporation
105 Wilbur Place
Bohemia, New York 11716
631-567-5600 Fax: 631-567-7358
www.ddc-web.com
Technical Support:
1-800-DDC-5757 ext. 7771
All trademarks are the property of their respective owners.
©
1998, 1999 Data Device Corporation
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