PinoutDescriptionThe RM4136D is designed as quad general-purpose operational amplifiers with each amplifier electrically similar to the uA741 except that offset null capability is not provided. The high common-mode input voltage range and the absence of latch-up make these amplifiers ideal for vol...
RM4136D: PinoutDescriptionThe RM4136D is designed as quad general-purpose operational amplifiers with each amplifier electrically similar to the uA741 except that offset null capability is not provided. The ...
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The RM4136D is designed as quad general-purpose operational amplifiers with each amplifier electrically similar to the uA741 except that offset null capability is not provided. The high common-mode input voltage range and the absence of latch-up make these amplifiers ideal for voltage-follower applications. The devices are short circuit protected and the internal frequency compensation ensures stability without external components.
RM4136D has nine features. (1) Continuous short circuit protection. (2) Wide common mode and differential voltage ranges. (3) No frequency compensation required. (4) Low power consumption. (5) No latch-up. (6) Unity gain bandwidth is 3 MHz typ. (7) Gain and phase match between amplifiers. (8) Designed to be interchangeable with raytheon RC4136, RM4136, and RV4136. (9) Low noise would be 8 nVHz typ at 1kHz. That are all the main features.
Some RM4136D absolute maximum ratings have been concluded into several points as follow. (1) Its suply voltage Vcc+ would be 22V. (2) Its supply voltage Vcc- would be -22V. (3) Its differential input voltage would be +/-30V. (4) Its input voltage (any input) would be +/-15V. (5) Its duration of output short circuit to ground, one amplifier at a time, would be unlimited. (6) Its operating free-air temperature range would be from -55°C to 125°C. (7) Its case temperature for 60 seconds would be from -65°C to 150°C. (8) Its lead temperature 1,6 mm (1/16 inch) from case for 60 seconds would be 300°C.
Also some RM4136D electrical characteristics about it. (1) Its input offset voltage would be typ 0.5V and max 4V. (2) Its input offset current would be typ 5nA and max 1.50nA. (3) Its input bias current would be typ 140nA and max 400nA. (4) Its input voltage range would be min +/-12V and typ +/-14V. (5) Its maximum peak output voltage swing would be min +/-12V and typ +/-14V for RL=10k. And so on. If you have any question or suggestion or want to know more information please contact us for details. Thank you!