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LTC2053 PDF预览

LTC2053

更新时间: 2024-11-05 22:55:51
品牌 Logo 应用领域
凌特 - Linear 仪表放大器
页数 文件大小 规格书
12页 290K
描述
Precision, Rail-to-Rail Input and Output, Zero-Drift Instrumentation Amplifier with Resistor-Programmable Gain

LTC2053 数据手册

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LTC2053  
Precision, Rail-to-Rail  
Input and Output, Zero-Drift Instrumentation  
Amplifier with Resistor-Programmable Gain  
U
FEATURES  
DESCRIPTIO  
The LTC®2053 is a high precision instrumentation ampli-  
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 10µV 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.  
116dB CMRR Independent of Gain  
Maximum Offset Voltage: 10µV  
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: 2.5µVP-P (0.01Hz to 10Hz)  
Typical Supply Current: 750µA  
Available in an MS8 and 3mm × 3mm × 0.8mm  
DFN Packages  
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.  
U
The differential inputs operate from rail-to-rail and the  
singleendedoutputswingsfromrail-to-rail. TheLTC2053  
can be used in single supply applications, as low as 2.7V.  
Itcanalsobeusedwithdual±5.5Vsupplies. TheLTC2053  
is available in an MS8 surface mount package. For space  
limited applications, the LTC2053 is available in a  
3mm × 3mm × 0.8mm dual fine pitch leadless package  
(DFN).  
APPLICATIO S  
Thermocouple Amplifiers  
Electronic Scales  
Medical Instrumentation  
Strain Gauge Amplifiers  
High Resolution Data Acquisition  
, LTC and LT are registered trademarks of Linear Technology Corporation.  
U
TYPICAL APPLICATIO  
Typical Input Referred Offset vs Input  
Common Mode Voltage (VS = 3V)  
Differential Bridge Amplifier  
15  
3V  
V
V
T
= 3V  
REF  
= 25°C  
S
= 0V  
0.1µF  
10  
5
A
R < 10k  
8
2
7
OUT  
LTC2053  
0
3
6
G = 1000  
G = 10  
+
R2 10k  
5
G = 100  
G = 1  
1, 4  
–5  
–10  
–15  
R2  
R1  
GAIN = 1+  
0.1µF  
R1  
10Ω  
0
1.0  
1.5  
2.0  
2.5  
3.0  
0.5  
2053 TA01  
INPUT COMMON MODE VOLTAGE (V)  
2053 G01  
2053fa  
1

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