Quad Low-Offset, Low-Power Operational Amplifier OP400

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Quad Low-Offset,Low-PowerOperational AmplifierOP400This specification documents the detailed requirements for Analog Devices space qualified die including diequalification as described for Class K in MIL-PRF-38534, Appendix C, Table C-II except as modified herein.The manufacturing flow described in the STANDARD DIE PRODUCTS PROGRAM brochure athttp://www.analog.com/aerospace is to be considered a part of this specification.This data sheet specifically details the space grade version of this product. A more detailed operationaldescription and a complete data sheet for commercial product grades can be found atwww.analog.com/OP4002.0Part Number. The complete part number(s) of this specification follow:Part NumberDescriptionOP400-000CQuad Low-Offset, Low-Power Operational Amplifier3.0Die Information3.1Die DimensionsDie SizeDie ThicknessBond PadMetalization181 mil x 123 mil19 mil 2 milAl/Cu1. OUT A2. -IN A3. IN A4. VCC 5. IN B6. -IN B7. OUT B8. OUT C9. -IN C10. IN C11. VCC12. IN D13. -IN D14. OUT D

OP4003.3Absolute Maximum Ratings 1/Supply Voltage (VCC). 20VDifferential Input Voltage. 30VInput Voltage. Supply VoltageOutput Short-Circuit Duration.ContinuousStorage Temperature Range . -65 C to 150 CJunction Temperature (TJ) . 150 COperating Temperature Range.-55 C to 125 CAbsolute Maximum Ratings Notes:1/Stresses above the absolute maximum rating may cause permanent damage to the device.Extended operation at the maximum levels may degrade performance and affect reliability.4.0Die QualificationTable I - Dice Electrical CharacteristicsParameterSymbolInput Offset VoltageVIOInput Offset CurrentIIOInput Bias Current IIBInput Voltage RangeIVRCommon Mode RejectionRatioPower Supply RejectionRatioSupply Current 2/Conditions1/LimitMinLimitMaxUnits-150 150µVVCM 0V-1 1nAVCM 0V-3 3nA 12V120dBCMRRVCM IVRPSRRVS 3V to 18V1.8µV/VISYNo Load2.9mALarge Signal Voltage GainAVSVOUT 10V, RL 2kΩ1500V/mVOutput Voltage SwingVOPRL 2kΩ 11VTable I Notes:1/ VS 15V, TA 25 C, unless otherwise specified.2/ ISY limit total all four amplifiers.

OP400Table II - Electrical Characteristics for Qual SamplesConditions 1/SubgroupsLimitMinLimitMaxIIOVCM 0VInput Bias Current IIBVCM 0V12, 312, 312, 3-150-270-1-2.5-3-5 150 270 1 2.5 3 5Input Voltage RangeIVR1, 2, 3 12VCommon Mode RejectionRatioCMRRVCM IVR120115dBPower Supply RejectionRatioPSRRVS 3V to 18VSupply Current 2/ISYNo LoadLarge Signal Voltage GainAVSVOUT 10V, RL 2kΩ12, 312, 312, 345, 615001000V/mVOutput Voltage Swing VOPRL 2kΩ4, 5, 6 11VAverage Input OffsetVoltage DriftTCVIO-55 C TA 125 C8ParameterSymbolInput Offset VoltageVIOInput Offset Current1.83.22.93.11.2UnitsµVnAnAµV/VmAµV/ CTable II Notes:Table III -Life Test Endpoint and Delta Parameter(Product is tested in accordance with Table II with the following exceptions)PostPostPost Life Post LifeSubBurn In Burn InTestTestLife MinMaxMinMaxInput Offset VoltageVIOInput Bias Current IIBInput Offset CurrentIIO12, 312, 312, 3 225 5 2 300 420 7 9 2.5 4.5 75 2UnitsµVnAnA

OP4005.0Life Test/Burn-In Information5.1HTRB is not applicable for this drawing.5.2Burn-in is per MIL-STD-883 Method 1015 test condition B or C.5.3Steady state life test is per MIL-STD-883 Method 1005.

OP400RevABCDEFGHDescription of ChangeInitiateUpdate web address. Table III; add “post” to Burn-in and Life Test title.Update the 1.0 Scope Description.Update header/footer & add to scope description.Add Junction Temperature (TJ) 150 C to 3.3 Absolute Max. RatingsUpdated Section 4.0c note to indicate pre-screen temp testing beingperformed.Removed extra markings on die Topographic pictureUpdate link to rch 31, 20085-JUN-200924-AUG-201103-SEP-2014

Quad Low-Offset, Low-Power Operational Amplifier OP400 This specification documents the detailed requirements for Analog Devices space qualified die including die qualification as described for Class K in MIL-PRF

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120 dB, and power supply rejection ratio (PSRR) is less than 1.8 μV/V. On-chip Zener zap trimming achieves the low input offset voltage of the OP400 and eliminates the need for offset nulling. The OP400 conforms to the industry-standard quad pinout, which does not have null terminals. The OP400 features low power consumption, drawing less thanFile Size: 343KB

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On-chip zener-zap trimming is used to achieve the low input offset voltage of the OP400 and eliminates the need for offset nulling. The OP400 conforms to the industry-standard quad pinout which does not have null terminals. The OP400 features low power consumption, drawing less than 725 µA per amplifi

120 dB, and power supply rejection ratio (PSRR) is less than 1.8 µV/V. On-chip Zener zap trimming achieves the low input offset voltage of the OP400 and eliminates the need for offset nulling. The OP400 conforms to the industry-standard quad pinout, which does not have null terminals. Th

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