AD822-DSCC: Military Data Sheet

REVISIONS
LTR
DESCRIPTION
DATE
Prepared in accordance with ASME Y14.24
APPROVED
Vendor item drawing
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PMIC N/A
PREPARED BY
RICK OFFICER
Original date of drawing
YY-MM-DD
CHECKED BY
RAJESH PITHADIA
12-09-14
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DLA LAND AND MARITIME
COLUMBUS, OHIO 43218-3990
http://www.landandmaritime.dla.mil/
TITLE
MICROCIRCUIT, LINEAR, SINGLE SUPPLY, LOW
POWER FET INPUT OPERATIONAL AMPLIFIER,
MONOLITHIC SILICON
APPROVED BY
CHARLES F. SAFFLE
SIZE
AMSC N/A
3
CODE IDENT. NO.
DWG NO.
V62/12636
16236
PAGE
1
OF
17
5962-V098-12
1. SCOPE
1.1 Scope. This drawing documents the general requirements of a high performance single supply, low power field effect transistor
(FET) input operational microcircuit, with an operating temperature range of -55°C to +125°C.
1.2 Vendor Item Drawing Administrative Control Number. The manufacturer’s PIN is the item of identification. The vendor item
drawing establishes an administrative control number for identifying the item on the engineering documentation:
V62/12636
-
Drawing
number
01
X
E
Device type
(See 1.2.1)
Case outline
(See 1.2.2)
Lead finish
(See 1.2.3)
1.2.1 Device type(s).
Device type
Generic
01
AD822
Circuit function
Single supply, low power FET input operational
amplifier
1.2.2 Case outline(s). The case outline(s) are as specified herein.
Outline letter
Number of pins
X
8
JEDEC PUB 95
Package style
MS-012-AA
Plastic small outline
1.2.3 Lead finishes. The lead finishes are as specified below or other lead finishes as provided by the device manufacturer:
Finish designator
A
B
C
D
E
Z
DLA LAND AND MARITIME
COLUMBUS, OHIO
Material
Hot solder dip
Tin-lead plate
Gold plate
Palladium
Gold flash palladium
Other
SIZE
A
CODE IDENT NO.
16236
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DWG NO.
V62/12636
PAGE
2
1.3 Absolute maximum ratings.
1/
Supply voltage range (VS) .......................................................................................... ±18 V
Input voltage (VIN) ......................................................................................................
Output short duration .................................................................................................
Differential input voltage .............................................................................................
Internal power dissipation (PD) ..................................................................................
Maximum junction temperature (TJ) ..........................................................................
Storage temperature range (TSTG)...............................................................................
Lead temperature (soldering, 60 seconds) .................................................................
+VS + 0.2 V to –VS – 20 V
Indefinite
±30 V
156.25 mW typical
150°C
-65°C to +150°C
+260°C
1.4 Recommended operating conditions. 2/
Supply voltage range (VS) .......................................................................................... ±15 V
Operating temperature range (TA) .............................................................................. -55°C to +125°C
1.5 Thermal characteristics.
Thermal resistance, junction to case (θJC) ................................................................. 43°C/W
Thermal resistance, junction to ambient (θJA) ............................................................ 160°C/W
1/
2/
Stresses beyond those listed under “absolute maximum rating” may cause permanent damage to the device. These are stress
ratings only, and functional operation of the device at these or any other conditions beyond those indicated under
“recommended operating conditions” is not implied. Exposure to absolute-maximum-rated conditions for extended periods may
affect device reliability.
Use of this product beyond the manufacturers design rules or stated parameters is done at the user’s risk. The manufacturer
and/or distributor maintain no responsibility or liability for product used beyond the stated limits.
DLA LAND AND MARITIME
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CODE IDENT NO.
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2. APPLICABLE DOCUMENTS
JEDEC PUB 95
–
Registered and Standard Outlines for Semiconductor Devices
(Applications for copies should be addressed to the Electronic Industries Alliance, 2500 Wilson Boulevard, Arlington,
VA 22201-3834 or online at http://www.jedec.org)
3. REQUIREMENTS
3.1 Marking. Parts shall be permanently and legibly marked with the manufacturer’s part number as shown in 6.3 herein and as
follows:
A.
B.
C.
Manufacturer’s name, CAGE code, or logo
Pin 1 identifier
ESDS identification (optional)
3.2 Unit container. The unit container shall be marked with the manufacturer’s part number and with items A and C (if applicable)
above.
3.3 Electrical characteristics. The maximum and recommended operating conditions and electrical performance characteristics are
as specified in 1.3, 1.4, and table I herein.
3.4 Design, construction, and physical dimension. The design, construction, and physical dimensions are as specified herein.
3.5 Diagrams.
3.5.1 Case outline. The case outline shall be as shown in 1.2.2 and figure 1.
3.5.2 Terminal connections. The terminal connections shall be as shown in figure 2.
DLA LAND AND MARITIME
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SIZE
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CODE IDENT NO.
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PAGE
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TABLE I. Electrical performance characteristics. 1/
Test
Symbol
Conditions
VS = 0 V, 5 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0.2 V,
unless otherwise specified
Unit
Max
DC performance.
Initial offset voltage
+25°C
VIO
01
0.8
1.2
-55°C to +125°C
Initial offset voltage
drift
∆VIO
Input bias current
IIB
VCM = 0 V to 4 V
-55°C to +125°C
01
+25°C
01
+25°C
IIO
01
25
pA
6
nA
20
pA
0.5 typical
-55°C to +125°C
Open loop gain
AO
VOUT = 0.2 V to 4 V, RL = 100 kΩ
VOUT = 0.2 V to 4 V, RL = 10 kΩ
VOUT = 0.2 V to 4 V, RL = 1 kΩ
+25°C
µV/
°C
2 typical
-55°C to +125°C
Input offset current
mV
01
500
-55°C to +125°C
400
+25°C
80
-55°C to +125°C
80
+25°C
15
-55°C to +125°C
10
nA
V/mV
Noise/harmonic performance.
Input voltage noise
Input current noise
NV
NI
2 typical
µVpp
f = 10 Hz
25 typical
nV /
f = 100 Hz
21 typical
Hz
f = 1 kHz
16 typical
f = 10 kHz
13 typical
f = 0.1 Hz to 10 Hz
+25°C
f = 0.1 Hz to 10 Hz
+25°C
01
01
f = 1 kHz
18 typical
fApp
0.8 typical
fA /
Hz
Harmonic distortion
+25°C
VOUT = 0.25 V to 4.75 V,
01
-93 typical
dB
f = 10 kHz, RL = 10 kΩ to 2.5 V
See footnotes at end of table.
DLA LAND AND MARITIME
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SIZE
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CODE IDENT NO.
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5
TABLE I. Electrical performance characteristics – Continued. 1/
Test
Symbol
Conditions
VS = 0 V, 5 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0.2 V
unless otherwise specified
Unit
Max
Dynamic performance.
Unity gain frequency
Full power response
VOUTpp = 4.5 V
Slew rate
SR
Settling time
tS
To 0.1%, VOUT = 0.2 V to 4.5 V
+25°C
01
1.8 typical
MHz
+25°C
01
210 typical
kHz
+25°C
01
3 typical
V/µs
+25°C
01
1.4 typical
µs
1.8 typical
To 0.01%, VOUT = 0.2 V to 4.5 V
Matching characteristics.
Initial offset voltage
+25°C
VIO
01
1.0
mV
1.6
-55°C to +125°C
µV/
°C
Initial offset voltage
drift
∆VIO
+25°C
01
Input bias current
IIB
+25°C
01
20
pA
Crosstalk
CT
+25°C
01
-130 typical
dB
At f = 1 kHz, RL = 5 kΩ
3 typical
-93 typical
At f = 100 kHz, RL = 5 kΩ
Input characteristics.
Input voltage range 2/
Common mode
rejection ratio
CMRR
VCM = 0 V to 2 V
-55°C to +125°C
01
-0.2
+25°C
01
66
+4
V
dB
66
-55°C to +125°C
13
Ω||pF
13
Ω||pF
Differential input
impedance
Z
+25°C
01
10 ||0.5 typical
Common mode input
impedance
Z
+25°C
01
10 ||2.8 typical
See footnotes at end of table.
DLA LAND AND MARITIME
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SIZE
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CODE IDENT NO.
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PAGE
6
TABLE I. Electrical performance characteristics – Continued. 1/
Test
Symbol
Conditions
VS = 0 V, 5 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0.2 V
unless otherwise specified
Unit
Max
Output characteristics.
Output saturation 3/
voltage
VOL – VEE, ISINK = 20 µA
+25°C
VCC – VOH, ISOURCE = 20 µA
VOL – VEE, ISINK = 2 mA
VCC – VOH, ISOURCE = 2 mA
VOL – VEE, ISINK = 15 mA
VCC – VOH, ISOURCE = 15 mA
Operating output
current
10
+25°C
14
-55°C to +125°C
20
+25°C
55
-55°C to +125°C
80
+25°C
110
-55°C to +125°C
160
+25°C
500
-55°C to +125°C
1000
+25°C
1500
-55°C to +125°C
1900
01
CL
15
mV
mA
12
-55°C to +125°C
Capacitive load drive
7
-55°C to +125°C
+25°C
IOUT
01
+25°C
01
-55°C to +125°C
01
+25°C
01
350 typical
pF
Power supply.
Quiescent current
Power supply rejection
ratio
PSRR
+VS = 5 V to 15 V
-55°C to +125°C
1.6
66
mA
dB
66
See footnotes at end of table.
DLA LAND AND MARITIME
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SIZE
A
CODE IDENT NO.
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PAGE
7
TABLE I. Electrical performance characteristics. 1/
Test
Symbol
Conditions
VS = ±5 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0 V,
unless otherwise specified
Unit
Max
DC performance.
Initial offset voltage
+25°C
VIO
01
0.8
1.5
-55°C to +125°C
Initial offset voltage
drift
∆VIO
Input bias current
IIB
VCM = -5 V to 4 V
+25°C
01
+25°C
01
+25°C
IIO
01
25
pA
6
nA
20
pA
0.5 typical
-55°C to +125°C
Open loop gain
AO
+25°C
VOUT = -4 V to 4 V, RL = 100 kΩ
VOUT = -4 V to 4 V, RL = 10 kΩ
VOUT = -4 V to 4 V, RL = 1 kΩ
µV/
°C
2 typical
-55°C to +125°C
Input offset current
mV
01
400
-55°C to +125°C
400
+25°C
80
-55°C to +125°C
80
+25°C
20
-55°C to +125°C
10
nA
V/mV
Noise/harmonic performance.
Input voltage noise
Input current noise
NV
NI
2 typical
µVpp
f = 10 Hz
25 typical
nV /
f = 100 Hz
21 typical
Hz
f = 1 kHz
16 typical
f = 10 kHz
13 typical
f = 0.1 Hz to 10 Hz
+25°C
f = 0.1 Hz to 10 Hz
+25°C
01
01
f = 1 kHz
18 typical
fApp
0.8 typical
fA /
Hz
Harmonic distortion
VOUT = ±4.5 V, f = 10 kHz,
+25°C
01
-93 typical
dB
RL = 10 kΩ
See footnotes at end of table.
DLA LAND AND MARITIME
COLUMBUS, OHIO
SIZE
A
CODE IDENT NO.
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REV
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8
TABLE I. Electrical performance characteristics – Continued. 1/
Test
Symbol
Conditions
VS = ±5 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0 V,
unless otherwise specified
Unit
Max
Dynamic performance.
Unity gain frequency
Full power response
VOUTpp = 9 V
Slew rate
SR
Settling time
tS
To 0.1%, VOUT = 0 V to ±4.5 V
+25°C
01
1.9 typical
MHz
+25°C
01
105 typical
kHz
+25°C
01
3 typical
V/µs
+25°C
01
1.4 typical
µs
1.8 typical
To 0.01%, VOUT = 0 V to ±4.5 V
Matching characteristics.
Initial offset voltage
+25°C
VIO
01
1.0
3
-55°C to +125°C
Initial offset voltage
drift
∆VIO
Input bias current
IIB
Crosstalk
CT
At f = 1 kHz, RL = 5 kΩ
mV
µV/
°C
-55°C to +125°C
01
3 typical
+25°C
01
25
pA
+25°C
01
-130 typical
dB
-93 typical
At f = 100 kHz, RL = 5 kΩ
Input characteristics.
Input voltage range 2/
Common mode
rejection ratio
CMRR
VCM = -5 V to 2 V
-55°C to +125°C
01
-5.2
+25°C
01
66
+4
V
dB
66
-55°C to +125°C
13
Ω||pF
13
Ω||pF
Differential input
impedance
Z
+25°C
01
10 ||0.5 typical
Common mode input
impedance
Z
+25°C
01
10 ||2.8 typical
See footnotes at end of table.
DLA LAND AND MARITIME
COLUMBUS, OHIO
SIZE
A
CODE IDENT NO.
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PAGE
9
TABLE I. Electrical performance characteristics – Continued. 1/
Test
Symbol
Conditions
VS = ±5 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0 V,
unless otherwise specified
Unit
Max
Output characteristics.
Output saturation 3/
voltage
VOL – VEE, ISINK = 20 µA
+25°C
VCC – VOH, ISOURCE = 20 µA
VOL – VEE, ISINK = 2 mA
VCC – VOH, ISOURCE = 2 mA
VOL – VEE, ISINK = 15 mA
VCC – VOH, ISOURCE = 15 mA
Operating output
current
10
+25°C
14
-55°C to +125°C
20
+25°C
55
-55°C to +125°C
80
+25°C
110
-55°C to +125°C
160
+25°C
500
-55°C to +125°C
1000
+25°C
1500
-55°C to +125°C
1900
01
CL
15
mV
mA
12
-55°C to +125°C
Capacitive load drive
7
-55°C to +125°C
+25°C
IOUT
01
+25°C
01
-55°C to +125°C
01
+25°C
01
350 typical
pF
Power supply.
Quiescent current
Power supply rejection
ratio
PSRR
VS = ±5 V to ±15 V
-55°C to +125°C
1.6
66
mA
dB
66
See footnotes at end of table.
DLA LAND AND MARITIME
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10
TABLE I. Electrical performance characteristics. 1/
Test
Symbol
Conditions
VS = ±15 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0 V,
unless otherwise specified
Unit
Max
DC performance.
Initial offset voltage
+25°C
VIO
01
2
3
-55°C to +125°C
Initial offset voltage
drift
∆VIO
Input bias current
IIB
VCM = 0 V
-55°C to +125°C
01
+25°C
01
+25°C
IIO
01
pA
6
nA
20
pA
0.5 typical
-55°C to +125°C
AO
25
-55°C to +125°C
VCM = 0 V
Open loop gain
µV/
°C
2 typical
40 typical
VCM = -10 V
Input offset current
mV
VOUT = -10 V to 10 V, RL = 100 kΩ
VOUT = -10 V to 10 V, RL = 10 kΩ
VOUT = -10 V to 10 V, RL = 1 kΩ
+25°C
01
500
-55°C to +125°C
500
+25°C
100
-55°C to +125°C
100
+25°C
30
-55°C to +125°C
20
nA
V/mV
Noise/harmonic performance.
Input voltage noise
Input current noise
NV
NI
2 typical
µVpp
f = 10 Hz
25 typical
nV /
f = 100 Hz
21 typical
Hz
f = 1 kHz
16 typical
f = 10 kHz
13 typical
f = 0.1 Hz to 10 Hz
+25°C
f = 0.1 Hz to 10 Hz
+25°C
01
01
f = 1 kHz
18 typical
fApp
0.8 typical
fA /
Hz
See footnotes at end of table.
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TABLE I. Electrical performance characteristics – Continued. 1/
Test
Symbol
Conditions
VS = ±15 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0 V,
unless otherwise specified
Unit
Max
Noise/harmonic performance - continued.
Harmonic distortion
VOUT = ±10 V, f = 10 kHz,
+25°C
01
-85 typical
dB
+25°C
01
1.9 typical
MHz
+25°C
01
45 typical
kHz
+25°C
01
3 typical
V/µs
+25°C
01
4.1 typical
µs
RL = 10 kΩ
Dynamic performance.
Unity gain frequency
Full power response
VOUTpp = 20 V
Slew rate
SR
Settling time
tS
To 0.1%, VOUT = 0 V to ±10 V
4.5 typical
To 0.01%, VOUT = 0 V to ±10 V
Matching characteristics.
Initial offset voltage
+25°C
VIO
01
3
4
-55°C to +125°C
Initial offset voltage
drift
∆VIO
Input bias current
IIB
Crosstalk
CT
At f = 1 kHz, RL = 5 kΩ
mV
µV/
°C
-55°C to +125°C
01
3
+25°C
01
25
pA
+25°C
01
-130 typical
dB
-93 typical
At f = 100 kHz, RL = 5 kΩ
Input characteristics.
Input voltage range 2/
Common mode
rejection ratio
CMRR
VCM = -15 V to +12 V
-55°C to +125°C
01
-15.2
+25°C
01
70
+14
V
dB
70
-55°C to +125°C
13
Ω||pF
13
Ω||pF
Differential input
impedance
Z
+25°C
01
10 ||0.5 typical
Common mode input
impedance
Z
+25°C
01
10 ||2.8 typical
See footnotes at end of table.
DLA LAND AND MARITIME
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SIZE
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CODE IDENT NO.
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TABLE I. Electrical performance characteristics – Continued. 1/
Test
Symbol
Conditions
VS = ±15 V,
Temperature,
TA
Device
type
Limits
Min
VCM = 0 V, VOUT = 0 V,
unless otherwise specified
Unit
Max
Output characteristics.
Output saturation 3/
voltage
VOL – VEE, ISINK = 20 µA
+25°C
VCC – VOH, ISOURCE = 20 µA
VOL – VEE, ISINK = 2 mA
VCC – VOH, ISOURCE = 2 mA
VOL – VEE, ISINK = 15 mA
VCC – VOH, ISOURCE = 15 mA
Operating output
current
10
+25°C
14
-55°C to +125°C
20
+25°C
55
-55°C to +125°C
80
+25°C
110
-55°C to +125°C
160
+25°C
500
-55°C to +125°C
1000
+25°C
1500
-55°C to +125°C
1900
01
CL
mV
20
mA
15
-55°C to +125°C
Capacitive load drive
7
-55°C to +125°C
+25°C
IOUT
01
+25°C
01
-55°C to +125°C
01
+25°C
01
350 typical
pF
Power supply.
Quiescent current
Power supply rejection
ratio
PSRR
VS = ±5 V to ±15 V
-55°C to +125°C
1/
2/
3/
1.8
mA
70
dB
70
Testing and other quality control techniques are used to the extent deemed necessary to assure product performance over
the specified temperature range. Product may not necessarily be tested across the full temperature range and all parameters
may not necessarily be tested. In the absence of specific parametric testing, product performance is assured by characterization
and/or design.
This is a functional specification. Amplifier bandwidth decreases when the input common mode voltage is driven in the
range (+VS – 1 V) to +VS. Common mode error voltage is typically less than 5 mV with the common mode voltage set
at 1 V below the positive supply.
VOL – VEE is defined as the difference between the lowest possible output voltage (VOL) and the negative voltage supply
rail (VEE). VCC – VOH is defined as the difference between the highest possible output voltage (VOH) and the positive supply
voltage (VCC).
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Case X
FIGURE 1. Case outline.
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Case X
Dimensions
Inches
Symbol
Millimeters
Min
Max
Min
Max
A
.053
.068
1.35
1.75
A1
.003
.009
0.10
0.25
b
.012
.020
0.31
0.51
c
.006
.009
0.17
0.25
D
.188
.196
4.80
5.00
E
.149
.157
3.80
4.00
E1
.228
.244
5.80
6.20
e
.049 BSC
L
.015
1.27 BSC
.049
0.40
1.27
NOTES:
1. Controlling dimensions are inch, millimeter dimensions are given for reference only.
2. Falls within reference to JEDEC MS-012-AA.
FIGURE 1. Case outline - Continued.
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Device type
01
Case outline
X
Terminal number
Terminal
symbol
1
OUTPUT 1
2
-INPUT 1
3
+INPUT 1
4
-VS
5
+INPUT 2
6
-INPUT 2
7
OUTPUT 2
8
+VS
FIGURE 2. Terminal connections.
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4. VERIFICATION
4.1 Product assurance requirements. The manufacturer is responsible for performing all inspection and test requirements as
indicated in their internal documentation. Such procedures should include proper handling of electrostatic sensitive devices,
classification, packaging, and labeling of moisture sensitive devices, as applicable.
5. PREPARATION FOR DELIVERY
5.1 Packaging. Preservation, packaging, labeling, and marking shall be in accordance with the manufacturer’s standard commercial
practices for electrostatic discharge sensitive devices.
6. NOTES
6.1 ESDS. Devices are electrostatic discharge sensitive and are classified as ESDS class 1 minimum.
6.2 Configuration control. The data contained herein is based on the salient characteristics of the device manufacturer’s data book.
The device manufacturer reserves the right to make changes without notice. This drawing will be modified as changes are provided.
6.3 Suggested source(s) of supply. Identification of the suggested source(s) of supply herein is not to be construed as a guarantee
of present or continued availability as a source of supply for the item. DLA Land and Maritime maintains an online database of all
current sources of supply at http://www.landandmaritime.dla.mil/Programs/Smcr/.
Vendor item drawing
administrative control
number 1/
Device
manufacturer
CAGE code
Vendor part number
V62/12636-01XE
24355
AD822TRZ-EP-R7
1/ The vendor item drawing establishes an administrative control number
for identifying the item on the engineering documentation.
CAGE code
24355
DLA LAND AND MARITIME
COLUMBUS, OHIO
Source of supply
Analog Devices
Route 1 Industrial Park
P.O. Box 9106
Norwood, MA 02062
Point of contact: Raheen Business Park
Limerick, Ireland
SIZE
A
CODE IDENT NO.
16236
REV
DWG NO.
V62/12636
PAGE
17