LT1001 Linear Technology Corporation, LT1001 Datasheet

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LT1001

Manufacturer Part Number
LT1001
Description
Manufacturer
Linear Technology Corporation
Datasheet

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FEATURES
APPLICATIO S
TYPICAL APPLICATIO
Guaranteed Low Offset Voltage
Guaranteed Low Drift
Guaranteed Low Bias Current
Guaranteed CMRR
Guaranteed PSRR
Low Power Dissipation
Low Noise 0.3 V
Thermocouple amplifiers
Strain gauge amplifiers
Low level signal processing
High accuracy data acquisition
1.2k**
LT1001AM
LT1001C
LT1001AM
LT1001C
LT1001AM
LT1001C
LT1001AM
LT1001C
LT1001AM
LT1001C
LT1001AM
LT1001C
** 1% FILM
* ULTRONIX 105A WIREWOUND
+15
PLATINUM RTD
118MF (ROSEMOUNT, INC.)
LM129
10k*
Linearized Platinum Resistance Thermometer
3
2
U
P-P
+
with 0.025 C Accuracy Over 0 to 100 C
LT1001
90k*
R plat.
1k = 0 C
0.6 V/ C max
1.0 V/ C max
75mW max
80mW max
114dB min
110dB min
110dB min
106dB min
20k
15 V max
60 V max
2nA max
4nA max
6
OFFSET TRIM
10k*
‡ Trim sequence: trim offset (0 C = 1000.0 ),
U
trim linearity (35 C = 1138.7 ), trim gain
(100 C = 1392.6 ). Repeat until all three
points are fixed with 0.025 C.
1MEG.**
330k*
2
3
+
LT1001
1 f
20k
6
200
10k*
GAIN
TRIM
LINEARITY
TRIM
DESCRIPTIO
The LT
art of precision operational amplifiers. In the design,
processing, and testing of the device, particular atten-
tion has been paid to the optimization of the entire
distribution of several key parameters. Consequently,
the specifications of the lowest cost, commercial tem-
perature device, the LT1001C, have been dramatically
improved when compared to equivalent grades of com-
peting precision amplifiers.
Essentially, the input offset voltage of all units is less
than 50 V (see distribution plot below). This allows the
LT1001AM/883 to be specified at 15 V. Input bias and
offset currents, common-mode and power supply re-
jection of the LT1001C offer guaranteed performance
which were previously attainable only with expensive,
selected grades of other devices. Power dissipation is
nearly halved compared to the most popular precision
op amps, without adversely affecting noise or speed
performance. A beneficial by-product of lower dissipa-
tion is decreased warm-up drift. Output drive capability
of the LT1001 is also enhanced with voltage gain
guaranteed at 10mA of load current. For similar perfor-
mance in a dual precision op amp, with guaranteed
matching specifications, see the LT1002. Shown below
is a platinum resistance thermometer application.
, LTC and LT are registered trademarks of Linear Technology Corporation.
OUTPUT
0 TO 10V =
0 TO 100 C
1001 TA01
®
1001 significantly advances the state-of-the-
Precision Operational
U
200
150
100
50
0
–60
V
–40
Typical Distribution
S
of Offset Voltage
INPUT OFFSET VOLTAGE ( V)
= 15V, T
–20
0
FROM THREE RUNS
Amplifier
A
954 UNITS
= 25 C
20
40
LT1001
1001 TA02
60
1001fb
1

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LT1001 Summary of contents

Page 1

... Essentially, the input offset voltage of all units is less than 50 V (see distribution plot below). This allows the LT1001AM/883 to be specified Input bias and offset currents, common-mode and power supply re- jection of the LT1001C offer guaranteed performance which were previously attainable only with expensive, selected grades of other devices ...

Page 2

... Common Mode Rejection Ratio PSRR Power Supply Rejection Ratio R Input Resistance Differential Mode RATINGS Operating Temperature Range LT1001AM/LT1001M (OBSOLETE) .. – 150 C LT1001AC/LT1001C .............................. 125 C Storage: All Devices.......................... – 150 C Lead Temperature (Soldering, 10 sec.)................. 300 ORDER PART NUMBER V OS ...

Page 3

... Note 1: Absolute Maximum Ratings are those values beyond which the life of a device may be impaired. Note 2: Offset voltage for the LT1001AM/883 and LT1001AC are measured after power is applied and the device is fully warmed up. All other grades are measured with high speed test equipment, approximately 1 second after power is applied ...

Page 4

... TEMPERATURE ( C) 1001 G07 4 Offset Voltage Drift withTemperature of Representative Units 50 40 LT1001 V = 15V LT1001A 10 0 LT1001A –10 –20 LT1001 –30 –40 –50 –50 – 100 125 TEMPERATURE ( C) 1001 G02 Noise Spectrum 100 18V ...

Page 5

... Output Swing vs Load Resistance 16 NEGATIVE SWING 12 POSITIVE SWING 15V 100 300 1000 3k LOAD RESISTANCE ( ) LT1001 Gain, Phase Shift vs Frequency 20 16 PHASE PHASE MARGIN = 60 4 GAIN 125 C GAIN 25 C & – 15V S –4 PHASE MARGIN – 125 – ...

Page 6

... The LT1001 can also be used in 741, LF156 or OP-15 applications provided that the nulling circuitry is removed. The LT1001 is specified over a wide range of power supply voltages from 3V to 18V. Operation with lower supplies is possible down to 1.2V (two Ni-Cad batteries). How- ever, with 1.2V supplies, the device is stable only in closed loop gains higher (or inverting gain of one or higher) ...

Page 7

... U APPLICATIONS INFORMATION Offset Voltage Adjustment The input offset voltage of the LT1001, and its drift with temperature, are permanently trimmed at wafer test to a low level. However, if further adjustment of Vos is neces- sary, nulling with a 10k or 20k potentiometer will not degrade drift with temperature. Trimming to a value other than zero creates a drift of (Vos/300 ...

Page 8

... Strain Gauge Signal Conditioner with Bridge Excitation 15V 100 2k 6 2N2219 IN4148 * 301k IN4148 6 2N2907 2k 100 5W *RN60C FILM RESISTORS –15V Photodiode Amplifier 100pF 500k 1% 2 – 6 OUTPUT LT1001 1V 500k 1% Precision Current Sink + 35V I OUT – 1V) 6 LT1001 2N3685 2 – ...

Page 9

... INPUT + –10V TO 10V 4 –12V TO –18V The voltage follower is an ideal example illustrating the overall excellence of the LT1001. The contributing error terms are due to offset voltage, input bias cur- rent, voltage gain, common mode and power-supply + – BATTERY * –15V CIRCUIT USES TEMPERATURE DIFFERENCE ...

Page 10

... OUTPUT 1 0V-10V 25mA DIODES = SEMTECH # FF-15 OUTPUT 2 + 0V-100V, 25mA 4 F 90k* 10k* (SELECT) + TRIM–100V 100 2.2 F 2N6533 2 – LT1001 3 IN914 + 15 15V 2N2907 47pF 10k** 10k** 2 – 6 LT1001 V OUT 10k 3 + 10k 2N4393 SET OUT SET 1001 TA12 1001 TA11 1001fb ...

Page 11

... LT1001 LT1001 2 – + 330k* 0.1 F 0.2 F** 909 * 200 GAIN TRIM 2k – 5.6k* 0 FLYING CAPACITOR CHARGED BY CLOCKED PHOTO DRIVEN FET SWITCHES CONVERTS A DIFFERENTIAL SIGNAL AT A HIGH COMMON MODE VOLTAGE TO A SINGLE ENDED SIGNAL AT THE LT1001 OUTPUT. OUTPUT 1001 TA13 1001fb 11 ...

Page 12

... LT1001 W W SCHE ATIC DIAGRA 40k 40k Q1A Q1B Q2B Q2A + 500 3 Q10 – 500 2 Q9 – Q29 Q27 Q28 Q13 Q14 Q11 Q8 55pF 30pF Q16 Q15 T1 2k 180 Q20 Q17 Q19 Q24 Q25 1.5k 25k ...

Page 13

... PIN 1 0.200 (5.080) TYP * LEAD DIAMETER IS UNCONTROLLED BETWEEN THE REFERENCE PLANE AND 0.045" BELOW THE REFERENCE PLANE ** FOR SOLDER DIP LEAD FINISH, LEAD DIAMETER IS OBSOLETE PACKAGE LT1001 REFERENCE PLANE 0.016 – 0.024 (0.406 – 0.610) H8(TO-5) 0.200 PCD 1197 1001fb 13 ...

Page 14

... LT1001 PACKAGE DESCRIPTION CORNER LEADS OPTION 0.045 – 0.068 (1.143 – 1.727) FULL LEAD OPTION 0.300 BSC (0.762 BSC) 0.008 – 0.018 (0.203 – 0.457) NOTE: LEAD DIMENSIONS APPLY TO SOLDER DIP/PLATE OR TIN PLATE LEADS Package 8-Lead CERDIP (Narrow .300 Inch, Hermetic) ...

Page 15

... LTC DWG # 05-08-1510) 0.400* (10.160) MAX 8 7 0.255 0.015* (6.477 0.381 0.045 – 0.065 (1.143 – 1.651) 0.065 (1.651) TYP 0.100 (2.54) BSC LT1001 0.130 0.005 (3.302 0.127) 0.125 0.020 (3.175) MIN (0.508) MIN 0.018 0.003 (0.457 0.076) N8 1098 15 1001fb ...

Page 16

... LT1001 PACKAGE DESCRIPTION 0.010 – 0.020 (0.254 – 0.508) 0.008 – 0.010 (0.203 – 0.254) 0.016 – 0.050 (0.406 – 1.270) * DIMENSION DOES NOT INCLUDE MOLD FLASH. MOLD FLASH SHALL NOT EXCEED 0.006" (0.152mm) PER SIDE ** DIMENSION DOES NOT INCLUDE INTERLEAD FLASH. INTERLEAD FLASH SHALL NOT EXCEED 0.010" ...

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