LTC1052

Features: Guaranteed Max Offset: 5µV Guaranteed Max Offset Drift: 0.05µV/°C Typ Offset Drift: 0.01µV/°C Excellent Long Term Stability: 100nV/Month Guaranteed Max Input Bias Current: 30pA Over Operating Temperature Range: Guaranteed Min Gain: 120dB Guaranteed Min CMRR: 120dB Guar...

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SeekIC No. : 004401344 Detail

LTC1052: Features: Guaranteed Max Offset: 5µV Guaranteed Max Offset Drift: 0.05µV/°C Typ Offset Drift: 0.01µV/°C Excellent Long Term Stability: 100nV/Month Guaranteed Max Input Bias Curren...

floor Price/Ceiling Price

Part Number:
LTC1052
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/20

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Product Details

Description



Features:

Guaranteed Max Offset: 5µV
Guaranteed Max Offset Drift: 0.05µV/°C
Typ Offset Drift: 0.01µV/°C
Excellent Long Term Stability: 100nV/Month
Guaranteed Max Input Bias Current: 30pA
Over Operating Temperature Range: Guaranteed Min Gain: 120dB Guaranteed Min CMRR: 120dB Guaranteed Min PSRR: 120dB
Single Supply Operation: 4.75V to 16V (Input Voltage Range Extends to Ground)
External Capacitors can be Returned to V with No Noise Degradation



Application

Thermocouple Amplifiers
Strain Gauge Amplifiers
Low Level Signal Processing
Medical Instrumentation



Pinout

  Connection Diagram


Specifications

Total Supply Voltage (V+ to V) .............................. 18V
Input Voltage ...................... (V+ + 0.3V) to (V 0.3V)
Output Short Circuit Duration ......................... Indefinite
Storage Temperature Range .............55°C to 150°C
Operating Temperature Range
LTC1052C/LTC7652C .......................... 40°C to 85°C
LTC1052M (OBSOLETE).....................  55°C to 125°C
Lead Temperature (Soldering, 10 sec)................ 300°C



Description

The LTC®1052 and LTC7652 are low noise zero-drift op amps manufactured using Linear Technology's enhanced LTCMOSTM silicon gate process. Chopper-stabilization constantly corrects offset voltage errors. Both initial offset and changes in the offset due to time, temperature and common mode voltage are corrected. This, coupled with picoampere input currents, gives these amplifiers unmatched performance.

Low frequency (1/f) noise is also improved by the chopping technique. Instead of increasing continuously at a 3dB/octave rate, the internal chopping causes noise to decrease at low frequencies.

The chopper circuitry is entirely internal and completely transparent to the user. Only two external capacitors are required to alternately sample-and-hold the offset correction voltage and the amplified input signal. Control circuitry is brought out on the 14-pin and 16-pin versions to allow the sampling of the LTC1052 to be synchronized with an external frequency source.




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