LT1632/LT1633 WWWUABSOLUTE MAXIMUM RATINGS (Note 1) Total Supply Voltage (V + to V –) ... 36V Specified Temperature Range (Note 4) ... – 40°C to 85°C Input Current ... ±10mA Junction Temperature .. 150°C Output Short-Circuit Duration (Note 2) .. Continuous Storage Temperature Range ... – 65°C to 150°C Operating Temperature Range .. – 40°C to 85°C Lead Temperature (Soldering, 10 sec).. 300°C UWUPACKAGE/ORDER INFORMATION ORDER PART TOP VIEW ORDER PART TOP VIEW NUMBER OUTA 1 14 OUT D NUMBER OUT A 1 8 V + – IN A 2 13 LT1632CN8 – IN D A D LT1633CS – IN A 2 7 OUT B + IN A 3 12 + IN D A LT1632CS8 LT1633IS + IN A 3 6 – IN B V + 4 11 V – B LT1632IN8 V – 4 5 + IN B + IN B 5 10 LT1632IS8 + IN C B C – IN B 6 9 N8 PACKAGE S8 PACKAGE – IN C 8-LEAD PDIP 8-LEAD PLASTIC SO S8 PART MARKING OUT B 7 8 OUT C TJMAX = 150°C, θJA = 130°C/ W (N8) S PACKAGE T 1632 JMAX = 150°C, θJA = 190°C/ W (S8) 14-LEAD PLASTIC SO 1632I TJMAX = 150°C, θJA = 150°C/ W Consult factory for Military and Industrial grade parts. ELECTRICAL CHARACTERISTICS TA = 25 ° C, VS = 5V, 0V; VS = 3V, 0V; VCM = VOUT = half supply, unless otherwise noted.SYMBOLPARAMETERCONDITIONSMINTYPMAXUNITS VOS Input Offset Voltage VCM = V+ 400 1350 µV VCM = V– 400 1350 µV ∆VOS Input Offset Shift VCM = V– to V+ 350 1500 µV Input Offset Voltage Match (Channel-to-Channel) VCM = V–, V+ (Note 5) 500 2300 µV IB Input Bias Current VCM = V+ 0 1.15 2.2 µA VCM = V– – 2.2 – 1.15 0 µA ∆IB Input Bias Current Shift VCM = V– to V+ 2.3 4.4 µA Input Bias Current Match (Channel-to-Channel) VCM = V+ (Note 5) 50 880 nA VCM = V– (Note 5) 50 880 nA IOS Input Offset Current VCM = V+ 40 440 nA VCM = V– 40 440 nA ∆IOS Input Offset Current Shift VCM = V– to V+ 80 880 nA Input Noise Voltage 0.1Hz to 10Hz 400 nVP-P en Input Noise Voltage Density f = 1kHz 12 nV/√Hz in Input Noise Current Density f = 1kHz 1.6 pA/√Hz CIN Input Capacitance 5 pF AVOL Large-Signal Voltage Gain VS = 5V, VO = 300mV to 4.7V, RL = 10k 450 2000 V/mV VS = 3V, VO = 300mV to 2.7V, RL = 10k 350 1500 V/mV CMRR Common Mode Rejection Ratio VS = 5V, VCM = V– to V+ 70 83 dB VS = 3V, VCM = V– to V+ 66 81 dB sn1632 16323fs 2