LT1996
22
1996f
Figure 17. Common Mode Ranges for Various LT1996 Difference Amp Configurations on V
S
= ±5V, with Gain = 9
APPLICATIO S I FOR ATIO
WUU
U
1996 F17
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
IN
V
IN
+
V
IN
V
IN
+
V
IN
V
IN
+
V
IN
V
IN
+
V
EE
5V
5V
5V 5V
REF
LT1996
8
9
10
1
2
3
7
6
5
4
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= –4.4V TO 4.2V
V
CM
= –23.9V TO 8.1V
V
CM
= –5V TO 3.7V
V
DM
> 5mV
V
CM
= –3.9V TO 4.8V
V
DM
<5mV
2.5V
–5V
–5V
–5V –5V
–5V
5V
–5V
–5V
–5V
–5V
–5V
V
IN
V
IN
+
5V
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= –16.4V TO 15.6V
V
IN
V
IN
+
5V
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= –40.4V TO 38.4V
V
IN
V
IN
+
5V
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= 4.6V TO 60V
–5V
–5V
–5V –5V
–5V
V
IN
V
IN
+
5V
5V
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= –60V TO –10.2V
V
IN
V
IN
+
5V
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= –52.4V TO 49.8V
V
IN
V
IN
+
5V
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= 7.6V TO 60V
V
IN
V
IN
+
5V
5V
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= –60V TO –10.2V
V
IN
V
IN
+
5V
5V
M81
M27
M9
P9
P27
P81
OUT
V
CC
V
OUT
V
EE
REF
LT1996
8
9
10
1
2
3
7
6
5
4
V
CM
= –31.4V TO 0.6V
LT1996
23
1996f
Information furnished by Linear Technology Corporation is believed to be accurate and reliable.
However, no responsibility is assumed for its use. Linear Technology Corporation makes no represen-
tation that the interconnection of its circuits as described herein will not infringe on existing patent rights.
PACKAGE DESCRIPTIO
U
MSOP (MS) 0603
0.53 ± 0.152
(.021 ± .006)
SEATING
PLANE
0.18
(.007)
1.10
(.043)
MAX
0.17 – 0.27
(.007 – .011)
TYP
0.127 ± 0.076
(.005 ± .003)
0.86
(.034)
REF
0.50
(.0197)
BSC
12
3
45
4.90 ± 0.152
(.193 ± .006)
0.497 ± 0.076
(.0196 ± .003)
REF
8910
7
6
3.00 ± 0.102
(.118 ± .004)
(NOTE 3)
3.00 ± 0.102
(.118 ± .004)
(NOTE 4)
NOTE:
1. DIMENSIONS IN MILLIMETER/(INCH)
2. DRAWING NOT TO SCALE
3. DIMENSION DOES NOT INCLUDE MOLD FLASH, PROTRUSIONS OR GATE BURRS.
MOLD FLASH, PROTRUSIONS OR GATE BURRS SHALL NOT EXCEED 0.152mm (.006") PER SIDE
4. DIMENSION DOES NOT INCLUDE INTERLEAD FLASH OR PROTRUSIONS.
INTERLEAD FLASH OR PROTRUSIONS SHALL NOT EXCEED 0.152mm (.006") PER SIDE
5. LEAD COPLANARITY (BOTTOM OF LEADS AFTER FORMING) SHALL BE 0.102mm (.004") MAX
0.254
(.010)
0° – 6° TYP
DETAIL “A”
DETAIL “A”
GAUGE PLANE
5.23
(.206)
MIN
3.20 – 3.45
(.126 – .136)
0.889 ± 0.127
(.035 ± .005)
RECOMMENDED SOLDER PAD LAYOUT
0.305 ± 0.038
(.0120 ± .0015)
TYP
0.50
(.0197)
BSC
DD Package
10-Lead Plastic DFN (3mm × 3mm)
(Reference LTC DWG # 05-08-1699)
3.00 ±0.10
(4 SIDES)
NOTE:
1. DRAWING TO BE MADE A JEDEC PACKAGE OUTLINE M0-229 VARIATION OF (WEED-2).
CHECK THE LTC WEBSITE DATA SHEET FOR CURRENT STATUS OF VARIATION ASSIGNMENT
2. DRAWING NOT TO SCALE
3. ALL DIMENSIONS ARE IN MILLIMETERS
4. DIMENSIONS OF EXPOSED PAD ON BOTTOM OF PACKAGE DO NOT INCLUDE
MOLD FLASH. MOLD FLASH, IF PRESENT, SHALL NOT EXCEED 0.15mm ON ANY SIDE
5. EXPOSED PAD SHALL BE SOLDER PLATED
6. SHADED AREA IS ONLY A REFERENCE FOR PIN 1 LOCATION ON THE
TOP AND BOTTOM OF PACKAGE
0.38 ± 0.10
BOTTOM VIEW—EXPOSED PAD
1.65 ± 0.10
(2 SIDES)
0.75 ±0.05
R = 0.115
TYP
2.38 ±0.10
(2 SIDES)
15
106
PIN 1
TOP MARK
(SEE NOTE 6)
0.200 REF
0.00 – 0.05
(DD10) DFN 1103
0.25 ± 0.05
2.38 ±0.05
(2 SIDES)
RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS
1.65 ±0.05
(2 SIDES)2.15 ±0.05
0.50
BSC
0.675 ±0.05
3.50 ±0.05
PACKAGE
OUTLINE
0.25 ± 0.05
0.50 BSC
LT1996
24
1996f
PART NUMBER DESCRIPTION COMMENTS
LT1990 High Voltage Difference Amplifier ±250V Input Common Mode, Micropower, Pin Selectable Gain = 1, 10
LT1991 Precision, 100µA Gain Selectable Amplifier Gain Resistors of 450k, 150k, 50k
LT1995 30MHz, 1000V/µs Gain Selectable Amplifier High Speed, Pin Selectable Gain = –7 to 8
LT6010/LT6011/LT6012 Single/Dual/Quad Precision Op Amp Similar Performance as LT1996 Diff Amp, 135µA, 14nVHz,
Rail-to-Rail Out
LT6013/LT6014 Single/Dual Precision Op Amp Lower Noise A
V
5 Version of LT1991, 145µA, 8nV/Hz,
Rail-to-Rail Out
LTC6910-X Programmable Gain Amplifiers 3 Gain Configurations, Rail-to-Rail Input and Output
Linear Technology Corporation
1630 McCarthy Blvd., Milpitas, CA 95035-7417
(408) 432-1900
FAX: (408) 434-0507
www.linear.com
© LINEAR TECHNOLOGY CORPORATION 2005
LT/TP 0205 1K • PRINTED IN USA
RELATED PARTS
TYPICAL APPLICATIO
U
+
+
V
M
V
P
V
OUT
LT1996
1996 TA02
98
23 4 5
7 610
1
+
1/2 LT6011
1/2 LT6011
450k/81
450k/27
450k/9
450k/9
450k/27
450k/81
450k
450k
4pF
4pF
Micropower A
V
= 90 Instrumentation Amplifier
V
IN
V
IN
+
V
IN
V
S
+
V
S
V
S
+
V
S
M81
M27
M9
P9
P27
P81
LT1996
8
9
10
1
2
3
7
6
5
4
M81
M27
M9
P9
P27
P81
V
OUT
LT1996
8
9
10
1
2
3
7
6
5
4
GAIN = 117
BW = 4Hz TO 5kHz
R1
10k
9(V
IN
+ –
V
IN
)
10k
I
LOAD
=
0.1µF
1996 TA03
V
IN
V
IN
+
V
OUT
V
OUT
+
V
OCM
V
S
+
V
S
M81
M27
M9
P9
P27
P81
LT1996
8
9
10
1
2
3
7
6
5
4
10k
10k
USE V
OCM
TO SET THE DESIRED
OUTPUT COMMON MODE LEVEL
+
LT6010
Bidirectional Controlled Current Source AC Coupled Amplifier Differential Input/Output G = 9 Amplifier

LT1996ACDD#TRPBF

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Precision Amplifiers Prec, 100 A Gain Sel Amp
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union