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The LM3900 series consists of four independent, dual input, internally compensated amplifiers which were designed specifically to operate off of a single power supply voltage and to provide a large output voltage swing. These amplifiers make use of a current mirror to achieve the non-inverting input function. Application areas include ac amplifiers, RC active filters, low-frequency triangle, square wave, and pulse waveform generation circuits, tachometers, and low speed, high voltage digital logic gates.
LM3900 Pinout
LM3900 Pin Configuration
Pin No | Pin Name | Description |
---|---|---|
1 | NON-INV-IN 1 | Non-Inverting Input 1 |
2 | NON-INV-IN 2 | Non-Inverting Input 2 |
3 | INV-IN 2 | Inverting Input 2 |
4 | OUT 2 | Output Pin 2 |
5 | OUT 1 | Output Pin 1 |
6 | INV-IN 1 | Inverting Input 1 |
7 | GND | Ground Pin |
8 | INV-IN 3 | Inverting Input 3 |
9 | OUT 3 | Output Pin 3 |
10 | OUT 4 | Output Pin 4 |
11 | INV-IN 4 | Inverting Input 4 |
12 | NON-INV-IN 4 | Non-Inverting Input 4 |
13 | NON-INV-IN 3 | Non-Inverting Input 3 |
14 | V+ | Positive Supply Voltage |
LM3900 Key Features
- Wide single supply voltage 4 VDC to 32 VDC
- Range or dual supplies g2 VDC to g16 VDC
- Supply current drain independent of supply voltage
- Low input biasing current 30 nA
- High open-loop gain 70 dB
- Wide bandwidth 2.5 MHz (unity gain)
- Large output voltage swing (Va b 1) Vp-p
- Internally frequency compensated for unity gain
- Output short-circuit protection
Application
- AC amplifiers
- RC active filters
- Low-frequency triangle
- Square wave
- Pulse waveform generation circuits
- Tachometers
- Low speed
- High voltage
- Digital logic gates
You can download this datasheet for LM3900 Quad Amplifier – Datasheet from the link given below: