REVISIONS
LTR
A
DESCRIPTION
Page 2, 1.4, add IVR test conditions. Page 4, table I, I
IB
and I
OS
, add footnote
to guarantee subgroup 3. For I
OS
, change unit from pA to nA.
For V
O
, add subgroup 6. Editorial changes throughout.
B
C
D
E
Add device type 02 and case outline, F-4. Editorial changes throughout.
Change boilerplate to add one-part part numbers. Add delta test limits.
Make changes to table IIA. - ro
Make change to the first condition of the A
VO
test in table I from R
L
= 1 k to
R
L
= 10 k. -rrp
Drawing updated to reflect current requirements. -rrp
91-03-07
96-11-13
02-01-07
02-07-23
M. A. FRYE
R. MONNIN
R. MONNIN
R. MONNIN
DATE (YR-MO-DA)
88-07-19
APPROVED
M. A. FRYE
F
09-03-09
R. HEBER
THE ORIGINAL FIRST SHEET OF THIS DRAWING HAS BEEN REPLACED.
REV
SHEET
REV
SHEET
REV STATUS
OF SHEETS
PMIC N/A
REV
SHEET
F
1
F
2
F
3
F
4
F
5
F
6
F
7
F
8
F
9
F
10
F
11
PREPARED BY
MARCIA B. KELLEHER
STANDARD
MICROCIRCUIT
DRAWING
THIS DRAWING IS AVAILABLE
FOR USE BY ALL
DEPARTMENTS
AND AGENCIES OF THE
DEPARTMENT OF DEFENSE
CHECKED BY
D. A. DiCENZO
DEFENSE SUPPLY CENTER COLUMBUS
COLUMBUS, OHIO 43218-3990
http://www.dscc.dla.mil
APPROVED BY
ROBERT P. EVANS
MICROCIRCUIT, LINEAR, HIGH SPEED, FAST
SETTLING, PRECISION OPERATIONAL
AMPLIFIER, MONOLITHIC SILICON
DRAWING APPROVAL DATE
87-11-27
AMSC N/A
REVISION LEVEL
F
SIZE
A
SHEET
CAGE CODE
67268
1 OF
11
5962-88513
DSCC FORM 2233
APR 97
5962-E534-07
1. SCOPE
1.1 Scope. This drawing documents two product assurance class levels consisting of high reliability (device classes Q and M)
and space application (device class V). A choice of case outlines and lead finishes are available and are reflected in the Part or
Identifying Number (PIN). When available, a choice of Radiation Hardness Assurance (RHA) levels are reflected in the PIN.
1.2 PIN. The PIN is as shown in the following examples.
For device classes M and Q:
5962
-
88513
01
G
X
Federal
stock class
designator
\
RHA
designator
(see 1.2.1)
/
Device
type
(see 1.2.2)
Case
outline
(see 1.2.4)
Lead
finish
(see 1.2.5)
\/
Drawing number
For device class V:
5962
-
88513
01
V
G
X
Federal
stock class
designator
\
RHA
designator
(see 1.2.1)
/
Device
type
(see 1.2.2)
Device
class
designator
(see 1.2.3)
Case
outline
(see 1.2.4)
Lead
finish
(see 1.2.5)
\/
Drawing number
1.2.1 RHA designator. Device classes Q and V RHA marked devices meet the MIL-PRF-38535 specified RHA levels and are
marked with the appropriate RHA designator. Device class M RHA marked devices meet the MIL-PRF-38535, appendix A
specified RHA levels and are marked with the appropriate RHA designator. A dash (-) indicates a non-RHA device.
1.2.2 Device type(s). The device type(s) identify the circuit function as follows:
Device type
01
02
Generic number
OP-42A
OP-42B
Circuit function
High speed, fast settling, precision
operational amplifier
High speed, fast settling, precision
operational amplifier
1.2.3 Device class designator. The device class designator is a single letter identifying the product assurance level as listed
below. Since the device class designator has been added after the original issuance of this drawing, device classes M and Q
designators will not be included in the PIN and will not be marked on the device.
Device class
M
Device requirements documentation
Vendor self-certification to the requirements for MIL-STD-883 compliant, non-
JAN class level B microcircuits in accordance with MIL-PRF-38535, appendix A
Certification and qualification to MIL-PRF-38535
Q or V
STANDARD
MICROCIRCUIT DRAWING
DEFENSE SUPPLY CENTER COLUMBUS
COLUMBUS, OHIO 43218-3990
DSCC FORM 2234
APR 97
SIZE
A
REVISION LEVEL
5962-88513
SHEET
F
2
1.2.4 Case outline(s). The case outline(s) are as designated in MIL-STD-1835 and as follows:
Outline letter
G
H
P
2
Descriptive designator
MACY1-X8
GDFP1-F10 or CDFP2-F10
GDIP1-T8 or CDIP2-T8
CQCC1-N20
Terminals
8
10
8
20
Package style
Can
Flat pack
Dual-in-line
Square lead less chip carrier
1.2.5 Lead finish. The lead finish is as specified in MIL-PRF-38535 for device classes Q and V or MIL-PRF-38535,
appendix A for device class M.
1.3 Absolute maximum ratings. 1/
Supply voltage (V
S
) .......................................................................
20
V
Input voltage (V
IN
) .........................................................................
Differential input voltage ................................................................
Output short-circuit duration ..........................................................
Storage temperature range ...........................................................
Lead temperature (soldering, 60 seconds).....................................
Power dissipation (P
D
)....................................................................
20
V 2/
40
V 2/
Indefinite
-65C to +150C
+300C
500 mW 3/
Thermal resistance, junction-to-case (
JC
) .................................... See MIL-STD-1835
Thermal resistance, junction-to-ambient (
JA
):
Case G ....................................................................................... 150C/W
Cases H and P ........................................................................... 119C/W
Case 2 ........................................................................................ 120C/W
1.4 Recommended operating conditions.
Supply voltage (V
S
)........................................................................ ±15 V
Source resistance (R
S
) .................................................................. 50
Ω
Common mode voltage (V
CM
) ....................................................... 0 V
Input voltage range (V
INR
) ............................................................. ±11 V
Ambient operating temperature range (T
A
) .................................... -55C to +125C
2. APPLICABLE DOCUMENTS
2.1 Government specification, standards, and handbooks. The following specification, standards, and handbooks form a part
of this drawing to the extent specified herein. Unless otherwise specified, the issues of these documents are those cited in the
solicitation or contract.
1/
2/
3/
Unless otherwise specified, T
A
= +25C.
For supply voltages less than 20 V, the absolute maximum input voltage is equal to the supply voltage.
Must withstand the added P
D
due to short circuit test, e.g., I
SC
.
STANDARD
MICROCIRCUIT DRAWING
DEFENSE SUPPLY CENTER COLUMBUS
COLUMBUS, OHIO 43218-3990
DSCC FORM 2234
APR 97
SIZE
A
REVISION LEVEL
5962-88513
SHEET
F
3
DEPARTMENT OF DEFENSE SPECIFICATION
MIL-PRF-38535 - Integrated Circuits, Manufacturing, General Specification for.
DEPARTMENT OF DEFENSE STANDARDS
MIL-STD-883 -
MIL-STD-1835 -
Test Method Standard Microcircuits.
Interface Standard Electronic Component Case Outlines.
DEPARTMENT OF DEFENSE HANDBOOKS
MIL-HDBK-103 -
MIL-HDBK-780 -
List of Standard Microcircuit Drawings.
Standard Microcircuit Drawings.
(Copies of these documents are available online at
http://assist.daps.dla.mil/quicksearch/
or from the Standardization
Document Order Desk, 700 Robbins Avenue, Building 4D, Philadelphia, PA 19111-5094.)
2.2 Order of precedence. In the event of a conflict between the text of this drawing and the references cited herein, the text of
this drawing takes precedence. Nothing in this document, however, supersedes applicable laws and regulations unless a
specific exemption has been obtained.
3. REQUIREMENTS
3.1 Item requirements. The individual item requirements for device classes Q and V shall be in accordance with
MIL-PRF-38535 and as specified herein or as modified in the device manufacturer's Quality Management (QM) plan. The
modification in the QM plan shall not affect the form, fit, or function as described herein. The individual item requirements for
device class M shall be in accordance with MIL-PRF-38535, appendix A for non-JAN class level B devices and as specified
herein.
3.2 Design, construction, and physical dimensions. The design, construction, and physical dimensions shall be as specified in
MIL-PRF-38535 and herein for device classes Q and V or MIL-PRF-38535, appendix A and herein for device class M.
3.2.1 Case outline(s). The case outline(s) shall be in accordance with 1.2.4 herein.
3.2.2 Terminal connections. The terminal connections shall be as specified on figure 1.
3.3 Electrical performance characteristics and post irradiation parameter limits. Unless otherwise specified herein, the
electrical performance characteristics and post irradiation parameter limits are as specified in table I and shall apply over the full
ambient operating temperature range.
3.4 Electrical test requirements. The electrical test requirements shall be the subgroups specified in table IIA. The electrical
tests for each subgroup are defined in table I.
3.5 Marking. The part shall be marked with the PIN listed in 1.2 herein. In addition, the manufacturer's PIN may also be
marked. For packages where marking of the entire SMD PIN number is not feasible due to space limitations, the manufacturer
has the option of not marking the "5962-" on the device. For RHA product using this option, the RHA designator shall still be
marked. Marking for device classes Q and V shall be in accordance with MIL-PRF-38535. Marking for device class M shall be
in accordance with MIL-PRF-38535, appendix A.
3.5.1 Certification/compliance mark. The certification mark for device classes Q and V shall be a "QML" or "Q" as required in
MIL-PRF-38535. The compliance mark for device class M shall be a "C" as required in MIL-PRF-38535, appendix A.
STANDARD
MICROCIRCUIT DRAWING
DEFENSE SUPPLY CENTER COLUMBUS
COLUMBUS, OHIO 43218-3990
DSCC FORM 2234
APR 97
SIZE
A
REVISION LEVEL
5962-88513
SHEET
F
4
TABLE I. Electrical performance characteristics.
Conditions 1/
-55C
T
A
+125C
unless otherwise specified
Test
Symbol
Group A
subgroups
1
Device
type
Min
01
02
Limits
Max
1.0
1.5
2.0
200
20
Unit
Input offset voltage
V
OS
mV
2,3
Input bias current
I
IB
1
2,3 2/
Input offset current
I
OS
1
2,3 2/
Common mode
rejection
3/
CMR
V
CM
= IVR =
11
V
1
2,3
Power supply rejection
ratio
PSRR
V
S
=
10
V to
20
V
1
2,3
Short circuit output
current
I
SC
Output shorted to ground
1
2,3
Supply current
External V
OS
trim range
Output voltage swing
ISY
V
OS
V
O
= 0 V, no load
R
POT
= 10 k,
T
A
= +25C
V
O
R
L
= 1 k
R
L
= 2 k
Large signal voltage gain
A
VO
R
L
= 10 k, V
O
=
10
V
4
5,6
4
5,6
R
L
= 2 k, V
O
=
10
V
4
5,6
R
L
= 1 k, V
O
=
10
V,
T
A
= +25C
See footnotes at end of table.
4
1,2,3
1
All
All
pA
nA
pA
nA
dB
All
40
1
All
86
80
All
40
50
V/V
All
20
8
60
60
6.0
mA
All
All
2.5
mA
mV
10
All
11.5
11.0
V
All
500
160
200
80
100
V/mV
STANDARD
MICROCIRCUIT DRAWING
DEFENSE SUPPLY CENTER COLUMBUS
COLUMBUS, OHIO 43218-3990
DSCC FORM 2234
APR 97
SIZE
A
REVISION LEVEL
5962-88513
SHEET
F
5