LTC2053 Linear Technology, LTC2053 Datasheet

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LTC2053

Manufacturer Part Number
LTC2053
Description
Precision/ Rail-to-Rail Input and Output/ Zero-Drift Instrumentation Amplifier with Resistor-Programmable Gain
Manufacturer
Linear Technology
Datasheet

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FEATURES
TYPICAL APPLICATIO
APPLICATIO S
116dB CMRR Independent of Gain
Maximum Offset Voltage: 10 V
Maximum Offset Voltage Drift: 50nV/ C
Rail-to-Rail Input
Rail-to-Rail Output
2-Resistor Programmable Gain
Supply Operation: 2.7V to 5.5V
Typical Noise: 2.5 V
Typical Supply Current: 750 A
Available in an MS8 and 3mm 3mm 0.8mm
DFN Packages
Thermocouple Amplifiers
Electronic Scales
Medical Instrumentation
Strain Gauge Amplifiers
High Resolution Data Acquisition
Differential Bridge Amplifier
R < 10k
3V
U
2
3
P-P
Input and Output, Zero-Drift Instrumentation
+
LTC2053
8
1, 4
Amplifier with Resistor-Programmable Gain
(0.01Hz to 10Hz)
5
0.1 F
6
R1
10
R2 10k
U
0.1 F
7
GAIN = 1+
OUT
2053 TA01
R2
R1
DESCRIPTIO
The LTC
fier. The CMRR is typically 116dB with a single or dual 5V
supply and is independent of gain. The input offset voltage
is guaranteed below 10 V with a temperature drift of less
than 50nV/ C. The LTC2053 is easy to use; the gain is
adjustable with two external resistors, like a traditional
op amp.
The LTC2053 uses charge balanced sampled data tech-
niques to convert a differential input voltage into a single
ended signal that is in turn amplified by a zero-drift
operational amplifier.
The differential inputs operate from rail-to-rail and the
single ended output swings from rail-to-rail. The LTC2053
can be used in single supply applications, as low as 2.7V.
It can also be used with dual 5.5V supplies. The LTC2053
is available in an MS8 surface mount package. For space
limited applications, the LTC2053 is available in a
3mm
(DFN).
, LTC and LT are registered trademarks of Linear Technology Corporation.
®
3mm
2053 is a high precision instrumentation ampli-
–10
–15
15
10
–5
Typical Input Referred Offset vs Input
5
0
Precision, Rail-to-Rail
Common Mode Voltage (V
0
V
V
T
A
S
REF
= 25 C
= 3V
INPUT COMMON MODE VOLTAGE (V)
0.8mm dual fine pitch leadless package
0.5
= 0V
U
1.0
1.5
G = 1000
2.0
G = 10
S
= 3V)
2.5
G = 100
G = 1
LTC2053
2053 G01
3.0
2053fa
1

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LTC2053 Summary of contents

Page 1

... The CMRR is typically 116dB with a single or dual 5V supply and is independent of gain. The input offset voltage is guaranteed below 10 V with a temperature drift of less than 50nV/ C. The LTC2053 is easy to use; the gain is adjustable with two external resistors, like a traditional op amp. The LTC2053 uses charge balanced sampled data tech- ...

Page 2

... PLASTIC MSOP T = 150 C, = 200 C/W JMAX JA *The temperature grade ( the LTC2053 in the DFN package is indicated on the shipping container. Consult LTC Marketing for parts specified with wider operating temperature ranges. ELECTRICAL CHARACTERISTICS temperature range, otherwise specifications are at T – All other specifications reference the OUT pin to the REF pin. ...

Page 3

... 125 C = 1. 5V, LTC2053C 0.1V to 4.9V, LTC2053I 5V, LTC2053I 0.1V to 4.9V, LTC2053H 5V, LTC2053H – – = 10k to V 0.5V, No Load 4.5V – LTC2053 MIN TYP MAX UNITS 110 116 dB 2 ...

Page 4

... V = –4.9V to 4.9V, LTC2053H –5V to 5V, LTC2053H CM = 2.7V to 11V = 2k to GND, LTC2053C, LTC2053I = 10k to GND, LTC2053C, LTC2053I, LTC2053H = 2k to GND, LTC2053H – 4.5V, No Load 4.5V – Note 4: The CMRR with a voltage gain, A Note 5: At temperatures above 70 C, the common mode rejection ratio lowers when the common mode input voltage is within 100mV of the supply rails ...

Page 5

... –20 – 125 C A – INPUT COMMON MODE VOLTAGE (V) 2053 G08 LTC2053 Input Offset Voltage vs Input Common Mode Voltage REF G=1000 G=10 5 G=1 0 G=100 –5 –10 –15 – ...

Page 6

... LTC2053 W U TYPICAL PERFOR A CE CHARACTERISTICS Error Due to Input R vs Input S Common Mode (C < 100pF REF + – < 100pF 10k S – 15k 20k SMALL C S –40 IN – ...

Page 7

... REF 10k –2 –4 –6 –8 –10 –2.4 –1.4 –0.4 0.6 1.6 2.6 OUTPUT VOLTAGE (V) 2053 G26 LTC2053 Error Due to Input R Mismatch S vs Input Commom Mode (C > 150 – 0k REF 100 A + – ...

Page 8

... LTC2053 W U TYPICAL PERFOR A CE CHARACTERISTICS Input Voltage Noise Density vs Frequency 300 250 200 150 100 100 1000 10000 FREQUENCY (Hz) 2053 G27 Output Voltage Swing vs Output Current 5 5V, SOURCING A S 4.5 4.0 3 3V, SOURCING S 3 ...

Page 9

... RG pin is the negative input of this op amp and allows external programmability of the DC gain. Simple filtering can be realized by using an external capacitor across the feedback resistor. Input Voltage Range The input common mode voltage range of the LTC2053 is rail-to-rail. However, the following equation limits the size of the differential input voltage: – + ...

Page 10

... H . This results in matches. S Power Supply Bypassing and, ideally, IN The LTC2053 uses a sampled data technique and therefore contains some clocked digital circuitry therefore sensistive to supply bypassing. For single or dual supply operation, a 0.1 F ceramic capacitor must be connected between Pin 8 (V possible. ...

Page 11

... Plastic DFN (3mm 3mm) (Reference LTC DWG # 05-08-1698 0.115 0.38 0.10 TYP 5 8 1.65 0.10 3.5 0.05 (2 SIDES 0.28 0.05 0.50 BSC 2.38 0.10 (2 SIDES) 0.00 – 0.05 BOTTOM VIEW—EXPOSED PAD LTC2053 0.52 (.0205 REF 3.00 0.102 (.118 .004) 5.23 (NOTE 4) (.206) MIN 0.42 0.038 (.0165 .0015) TYP RECOMMENDED SOLDER PAD LAYOUT ...

Page 12

... High Side Power Supply Current Sense 0 C – 400 C ( 0.1 C) 11k CW 100 ZERO 953 2053 TA09 www.linear.com Precision Inversion (General Purpose 0 LTC2053 V LTC2053 OUT – – OUT IN 0.1 F 0.1 F 0.1 F 2053 TA06 – ...

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