Datasheet LT1213, LT1214 (Analog Devices) - 8

ManufacturerAnalog Devices
Description28MHz, 12V/µs, Single Supply Quad Precision Op Amps
Pages / Page20 / 8 — ELECTRICAL CH. ARA TERISTICS. Note 1:. Note 5:. Note 6:. Note 2:. Note …
File Format / SizePDF / 401 Kb
Document LanguageEnglish

ELECTRICAL CH. ARA TERISTICS. Note 1:. Note 5:. Note 6:. Note 2:. Note 3:. Note 7:. Note 8:. Note 9:. Note 10:. Note 4:. TYPICAL PERFOR A CE CH

ELECTRICAL CH ARA TERISTICS Note 1: Note 5: Note 6: Note 2: Note 3: Note 7: Note 8: Note 9: Note 10: Note 4: TYPICAL PERFOR A CE CH

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LT1213/LT1214
ELECTRICAL CH C ARA TERISTICS Note 1:
Absolute Maximum Ratings are those values beyond which the life
Note 5:
Guaranteed by correlation to 3.3V and ±15V tests. of a device may be impaired.
Note 6:
The LT1213/LT1214 are designed, characterized and expected to
Note 2:
A heat sink may be required to keep the junction temperature meet these extended temperature limits, but are not tested at –40°C and below absolute maximum when the output is shorted indefinitely. 85°C. Guaranteed I grade parts are available. Consult factory.
Note 3:
TJ is calculated from the ambient temperature TA and power
Note 7:
Slew rate is measured between ±8.5V on an output swing of ±10V dissipation PD according to the following formulas: on ±15V supplies. LT1213MJ8, LT1213AMJ8: TJ = TA + (PD × 100°C/W)
Note 8:
Most LT1213/LT1214 electrical characteristics change very little LT1213CN8, LT1213ACN8: TJ = TA + (PD × 100°C/W) with supply voltage. See the 5V tables for characteristics not listed in the LT1213CS8: TJ = TA + (PD × 150°C/W) 3.3V table. LT1214CN: TJ = TA + (PD × 70°C/W)
Note 9:
Guaranteed by correlation to 5V and ±15V tests. LT1214CS: TJ = TA + (PD × 100°C/W)
Note 10:
Guaranteed by correlation to 3.3V tests.
Note 4:
This parameter is not 100% tested.
W U TYPICAL PERFOR A CE CH C ARA TERISTICS Distribution of Offset Voltage Drift Distribution of Input Offset Voltage with Temperature Distribution of Input Offset Voltage
70 50 70 V LT1213 J8 PACKAGE V LT1213 J8 PACKAGE S = 5V V LT1213 J8 PACKAGE S = 5V S = ±15V LT1213 N8 PACKAGE LT1213 N8 PACKAGE 60 60 LT1213 N8 PACKAGE 40 50 50 30 40 40 30 30 20 20 20 PERCENT OF UNITS (%) PERCENT OF UNITS (%) PERCENT OF UNITS (%) 10 10 10 0 0 0 –350 –250 –150 –50 50 150 250 350 –3 –2 –1 0 1 2 3 –700 –500 –300 –100 100 300 500 700 INPUT OFFSET VOLTAGE (µV) OFFSET VOLTAGE DRIFT WITH TEMPERATURE (µV/°C) INPUT OFFSET VOLTAGE (µV) 1213/14 G01 1213/14 G03 1213/14 G02
Distribution of Offset Voltage Drift Distribution of Input Offset Voltage with Temperature Distribution of Input Offset Voltage
70 50 70 V LT1213 S8 PACKAGE V LT1213 S8 PACKAGE S = 5V S = 5V V LT1213 S8 PACKAGE S = ±15V 60 LT1214 N PACKAGE LT1214 N PACKAGE 60 LT1214 N PACKAGE LT1214 S PACKAGE 40 LT1214 S PACKAGE LT1214 S PACKAGE 50 50 30 40 40 30 30 20 20 PERCENT OF UNITS (%) PERCENT OF UNITS (%) 20 PERCENT OF UNITS (%) 10 10 10 0 0 0 –350 –250 –150 –50 50 150 250 350 –6 –4 –2 0 2 4 6 –700 –500 –300 –100 100 300 500 700 INPUT OFFSET VOLTAGE (µV) OFFSET VOLTAGE DRIFT WITH TEMPERATURE (µV/°C) INPUT OFFSET VOLTAGE (µV) 1213/14 G04 1213/14 G05 1213/14 G06 8
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