Datasheet LT6013, LT6014 (Analog Devices) - 8

HerstellerAnalog Devices
BeschreibungSingle/Dual 145µA, 9.5nV/√Hz, AV ≥5, Rail-to-Rail Output Precision Op Amps
Seiten / Seite16 / 8 — ELECTRICAL CHARACTERISTICS. Note 1:. Note 6:. Note 7:. Note 2:. Note 3:. …
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DokumentenspracheEnglisch

ELECTRICAL CHARACTERISTICS. Note 1:. Note 6:. Note 7:. Note 2:. Note 3:. Note 8:. Note 4:. STANDARD GRADE. A GRADE. Note 5:

ELECTRICAL CHARACTERISTICS Note 1: Note 6: Note 7: Note 2: Note 3: Note 8: Note 4: STANDARD GRADE A GRADE Note 5:

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LT6013/LT6014
ELECTRICAL CHARACTERISTICS Note 1:
Absolute Maximum Ratings are those beyond which the life of the
Note 6:
This parameter is not 100% tested. device may be impaired.
Note 7:
Matching parameters are the difference between the two
Note 2:
The inputs are protected by back-to-back diodes and internal amplifiers. ∆CMRR and ∆PSRR are defined as follows: (1) CMRR and series resistors. If the differential input voltage exceeds 10V, the input PSRR are measured in µV/V for the individual amplifiers. (2) The current must be limited to less than 10mA. difference between matching amplifiers is calculated in µV/V. (3) The
Note 3:
A heat sink may be required to keep the junction temperature result is converted to dB. below absolute maximum ratings.
Note 8:
The specifications for VOS, IB, and IOS depend on the grade and on
Note 4:
The LT6013C/LT6014C and LT6013I/LT6014I are guaranteed the package. The following table clarifies the notations. functional over the operating temperature range of – 40°C to 85°C.
STANDARD GRADE A GRADE Note 5:
The LT6013C and LT6014C are guaranteed to meet the specified performance from 0°C to 70°C and are designed, characterized and S8 Package LT6013S8, LT6014S8 LT6013AS8, LT6014AS8 expected to meet specified performance from – 40°C to 85°C but is not DFN Package LT6013DD, LT6014DD LT6013ADD, LT6014ADD tested or QA sampled at these temperatures. The LT6013I and LT6014I are guaranteed to meet specified performance from –40°C to 85°C.
W U TYPICAL PERFOR A CE CHARACTERISTICS Input Offset Voltage Offset Voltage Distribution of Input Offset Voltage vs Temperature vs Input Common Mode Voltage
30 125 1000 VS = 5V, 0V LT6013AS8 VS = 5V, 0V VS = 5V, 0V T 100 A = 25°C REPRESENTATIVE UNITS 900 25 V) 75 µ 800 TA = –40°C V) 50 20 µ 700 25 600 TA = 25°C 15 0 500 –25 T 400 A = 85°C 10 –50 OFFSET VOLTAGE ( 300 PERCENT OF UNITS (%) –75 200 5 CHANGE IN OFFSET VOLTAGE ( –100 100 0 –125 0 –45 –35 –25 –15 –5 5 15 25 35 45 –50 –25 0 25 50 75 100 125 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 INPUT OFFSET VOLTAGE (µV) TEMPERATURE (°C) INPUT COMMON MODE VOLTAGE (V) 60134 G01 60134 G02 60134 G03
Input Bias Current Distribution of Input Bias Current Input Bias Current vs Temperature vs Input Common Mode Voltage
35 800 400 LT6013AS8 VS = 5V, 0V VS = 5V, 0V 600 TYPICAL PART 300 30 TA = –40°C 400 200 25 200 100 20 0 0 T 15 A = 25°C –200 –100 PERCENT OF UNITS (%) 10 TA = 85°C INPUT BIAS CURRENT (pA) –400 –200 5 –600 –300 CHANGE IN INPUT BIAS CURRENT (pA) 0 –800 –400 –175 –125 –75 –25 25 75 125 175 –50 –25 0 25 50 75 100 125 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 INPUT BIAS CURRENT (pA) TEMPERATURE (°C) INPUT COMMON MODE VOLTAGE (V) 60134 G04 60134 G05 60134 G06 60134fb 8