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DR-11800D4-595

Description
Digital to Synchro or Resolver, Hybrid, CQIP28, 1 X 1 INCH, 0.210 INCH HEIGHT, HERMETIC SEALED PACKAGE-28
CategoryAnalog mixed-signal IC    converter   
File Size348KB,8 Pages
ManufacturerData Device Corporation
Download Datasheet Parametric View All

DR-11800D4-595 Overview

Digital to Synchro or Resolver, Hybrid, CQIP28, 1 X 1 INCH, 0.210 INCH HEIGHT, HERMETIC SEALED PACKAGE-28

DR-11800D4-595 Parametric

Parameter NameAttribute value
MakerData Device Corporation
Parts packaging codeQFP
package instruction1 X 1 INCH, 0.210 INCH HEIGHT, HERMETIC SEALED PACKAGE-28
Contacts28
Reach Compliance Codeunknown
ECCN codeEAR99
Maximum angular accuracy1 arc min
Converter typeDIGITAL TO SYNCHRO OR RESOLVER
JESD-30 codeS-CQIP-P28
length25.2 mm
Maximum negative supply voltage-16.5 V
Minimum negative supply voltage-13.5 V
Nominal negative supply voltage-15 V
Number of digits16
Number of functions1
Number of terminals28
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Package body materialCERAMIC, METAL-SEALED COFIRED
encapsulated codeQIP
Package shapeSQUARE
Package formIN-LINE
Certification statusNot Qualified
Maximum seat height5.08 mm
Signal/output frequency1000 Hz
Maximum supply voltage16.5 V
Minimum supply voltage13.5 V
Nominal supply voltage15 V
surface mountNO
technologyHYBRID
Temperature levelINDUSTRIAL
Terminal formPIN/PEG
Terminal pitch2.54 mm
Terminal locationQUAD
width20.32 mm
DR-11800
16-BIT DIGITAL-TO-RESOLVER CONVERTER
DESCRIPTION
The DR-11800 is a small size, high
accuracy, 16-bit digital-to-sine/cosine
converter. Available in accuracies up
to 1 arc minute, the DR-11800 is con-
tained in a 28-pin, one-square-inch
hermetically sealed package and
requires +15 Vdc and -15 Vdc power
supplies. The reference conditioner
allows for either 115 Vrms or 26 Vrms
reference input for a 6.8 Vrms sin/cos
output. Two registers for the input of
the 16-bit (CMOS/TTL) natural binary
angle data allow for compatibility with
an 8-bit or 16-bit data bus.
Internally, the DR-11800 has a multi-
plying digital-to-sin/cos converter
made of two function generators and
a quadrant select network. Quadrant
information is available from the two
most significant bits. The two function
generators use the remaining angular
data along with the buffered reference
voltage. Similar to a multiplying DAC
(digital-to-analog converter), the DR-
11800 uses high accuracy resistive
ladder networks and solid state
switching to control the attenuation of
the reference voltage. The output
buffer amplifiers allow for up to 2 mA
output drive.
FEATURES
28-Pin Square Package
1 Arc Minute Accuracy
0.03% Radius Accuracy
Microprocessor Compatible -
8- and 16-Bit
APPLICATIONS
High accuracy, high reliability, small
size, low power consumption and
MIL-PRF-38534 processing avail-
ability, make the DR-11800 suitable
for industrial and military ground or
avionics applications. Possible appli-
cations include digital remote posi-
tioning, resolver angle simulators,
flight trainer, flight instrumentation,
radar and navigational systems, and
PPI displays including moving target
indicators. Other applications are syn-
chro/resolver system development
and test, and wraparound test of syn-
chro/resolver-to-digital converters.
Double-Buffered Inputs
Pin-Programmable Reference
Input (for 26 and 115 Vrms)
DC-Coupled Reference and
Outputs
Requires Only ±15 V Power
Supplies
TTL and CMOS Compatible
Pin-for-Pin Replacement for
Natel’s HDR2406
+V
S
24
–V
S
25
HBE 9
(MSB) B1 1
B2 2
B3 3
B4 4
B5 5
B6 6
INPUT BUFFERS
B7 7
B8 8
16-BIT
HOLDING
REGISTER
16-BIT
HIGH
ACCURACY
MULTIPLYING
DIGITAL
TO SIN / COS
CONVERTER
8-BIT
INPUT
REGISTER
D
CK
Q1
(MSB
BIT 1)
28 SINθ
B9 11
B10 12
B11 13
B12 14
B13 15
B14 16
B15 17
(LSB) B16 18
BUFFER
AMPLIFIERS
20 COSθ
8-BIT
INPUT
REGISTER
D
Q16
CK
CK PE
BIT 16
(LSB)
LBE 10
LDC 19
-
+
REFERENCE
CONDITIONER
23
GND
21
27
22
RL26 RH115 RL115
26
RH26
FIGURE 1. DR-11800 BLOCK DIAGRAM
©
1996, 1999 Data Device Corporation
I am studying recently and am preparing to buy it. I am a novice and want to apply for the LM3S8962 evaluation kit.
:) :) :) [[i]This post was last edited by keli55 on 2010-11-27 12:11[/i]]...
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