NJU7040 High Output Current, Rail-to-Rail Input/Output Single CMOS Operational Amplifier GENERAL DESCRIPTION PACKAGE OUTLINE The NJU7040 is a Rail-to-Rail Input/Output single CMOS operational amplifier. Based on C-MOS technology, there are excellent features such as high output current, low current consumption, low operating voltage, and very high input impedance. NJU7040F FEATURES Operating Voltage: 2.2V to 5.5V Rail-to-Rail Input/Output Output Current: 40mA at V =0V O Input Offset Voltage: V =10mV max. IO Wide Input Common Mode Voltage Range: V to V SS DD Operating Current: I =350A typ. (at V =3V) DD DD High Input Impedance: 1T Typ. Low Input Bias Current: I =1pA typ. IB Ground Sensing Tiny Package: SOT235 PIN CONFIGURATION PIN FUNCTION 1 5 1. +INPUT + 2. V SS 2 3. -INPUT 4. OUTPUT 3 4 5. V DD NJU7040F (Top View) Ver.2012-10-30 - 1 - NJU7040 ABSOLUTE MAXIMUM RATINGS PARAMETER SYMBOL RATINGS UNIT Supply Voltage V 7 V DD Common Mode Input Voltage Range V 0 to 7 (Note 1) V ICM Differential Input Voltage Range V 7 V ID 200 SOT-23-5 Power Dissipation P 390 SOT-23-5 (Note 2) mW D 520 SOT-23-5 (Note 3) Output Current I 75 SOT-23-5 mA O Operating Temperature Range T -40 to +85 C opr Storage Temperature Range T -55 to +125 C stg (Note 1) For supply voltage less than 7V, the absolute maximum input voltage is equal to the supply voltage. (Note 2) On the PCB EIA/JEDEC (76.2x114.3x1.6mm, two layers, FR-4) (Note 3) On the PCB EIA/JEDEC (76.2x114.3x1.6mm, four layers, FR-4) Power Dissipation vs. Ambient Temperature Package Type (1)SOT-23-5 Four Layers : P = -5.2(mW/C) (Note 4) D 600 (2)SOT-23-5 Tw o Layers : P = -3.9(mW/C) D Please do not exceedPower Dissipation (PD (1) the power dissipation in IC is absolutely indicated 500 to be in the maximum rating. (2) See the figurePower Dissipation vs. Ambient 400 Temperatur for information on temperature 300 derating of this device. 200 100 0 75 25 50 100 Ambient Temperature Ta (C) OPERATING VOLTAGE (Ta=25C) PARAMETER SYMBOL RATINGS UNIT Supply Voltage 2.2 to 5.5 V V DD Ver.2012-10-30 - 2 - Power Dissipation P (mW) D