IC 4558, IC 4560, IC 4562, IC 4565, IC 4580 Pinout Diagram, Datasheet


IC LM4558 Pinout Diagram


Here, you can see the pinout diagram of IC LM4558

Pinout Diagram of IC LM4558


The IC LM4558 is a dual operational amplifier (op-amp) integrated circuit. It contains two independent op-amps in a single 8-pin package. It is used in audio, signal processing, and control systems. Here is the below pinout details,

Pin 1(Output A) - This is the output terminal for the first op-amp (Op-Amp A). The processed signal comes out of this pin.

Pin 2(Inverting Input A) - This is the inverting input for Op-Amp A. A signal applied here will cause the output to be inverted (180° out of phase) relative to the input.

Pin 3(Non-Inverting Input A) - This is the non-inverting input for Op-Amp A. The signal applied here will be amplified without inversion (i.e., in-phase with the input).

Pin 4(GND -) - This is the ground (negative) pin, used to complete the circuit by providing a reference voltage level (0V).

Pin 5(Non-Inverting Input B) - This is the non-inverting input for Op-Amp B. Like Pin 3, it amplifies the signal applied to it in-phase.

Pin 6(Inverting Input B) - This is the inverting input for Op-Amp B. A signal applied here will cause the output to be inverted relative to the input.

Pin 7(Output B) - This is the output terminal for the second op-amp (Op-Amp B). The processed signal from Op-Amp B comes out of this pin.

Pin 8(Vcc +) - This is the positive supply voltage pin for the IC. It provides the necessary power to operate the op-amps.


IC NJM4560 Pinout Diagram


Here, you can see the pinout diagram of IC NJM4560

Pinout Diagram of IC NJM4560


The IC NJM4560 is also a dual operational amplifier (op-amp), just like the LM4558. It has two independent op-amps in a single 8-pin package. It also can be used in audio preamps, filters, and active sound systems evn it provides low noise and high performance. Here, is the pinout details,

Pin 1 – Output A (Output of Op-Amp A)

Pin 2 – Inverting Input A (–)

Pin 3 – Non-Inverting Input A (+)

Pin 4 – GND (Negative Power Supply)

Pin 5 – Non-Inverting Input B (+)

Pin 6 – Inverting Input B (–)

Pin 7 – Output B (Output of Op-Amp B)

Pin 8 – Vcc (Positive Power Supply)


IC LM4562 Pinout Diagram


Here, you can see the pinout diagram of IC LM4562

Pinout Diagram of IC LM4562


The IC LM4562 is a high-performance dual op-amp designed for professional audio and precision signal processing. It offers ultra-low noise, low distortion, and high-speed performance, making it ideal for hi-fi audio, studio equipment, and other demanding analog applications. Here, is the pinout details,

Pin 1 – Output A (Output of Op-Amp A)

Pin 2 – Inverting Input A (–)

Pin 3 – Non-Inverting Input A (+)

Pin 4 – GND (Negative Power Supply)

Pin 5 – Non-Inverting Input B (+)

Pin 6 – Inverting Input B (–)

Pin 7 – Output B (Output of Op-Amp B)

Pin 8 – Vcc (Positive Power Supply)


IC NJM4565 Pinout Diagram


Here, you can see the pinout diagram of IC NJM4565

Pinout Diagram of IC NJM4565


The NJM4565 IC contains two independent operational amplifiers (op-amps) inside one package. These op-amps are often used for signal amplification, filtering, and other analog tasks in various electronic circuits. The above pinout diagram provides the pinout and the function of each pin, so you can correctly connect the IC in your circuit. Here is the pinout detalis,

Pin 1 – Output A (Op-Amp A output)

Pin 2 – Inverting Input A (–)

Pin 3 – Non-Inverting Input A (+)

Pin 4 – GND (Negative Power Supply)

Pin 5 – Non-Inverting Input B (+)

Pin 6 – Inverting Input B (–)

Pin 7 – Output B (Op-Amp B output)

Pin 8 – Vcc (Positive Power Supply)



IC JRC4580 Pinout Diagram


Here, you can see the pinout diagram of IC JRC4580

Pinout Diagram of IC JRC4580


This IC JRC4580 also contains two independent operational amplifiers (op-amps) in one package. It commonly used for amplifying signals and other analog processing tasks in various electronic applications. Here, is the pinout details,

Pin 1 – Output A (Output of Op-Amp A)

Pin 2 – Inverting Input A (–)

Pin 3 – Non-Inverting Input A (+)

Pin 4 – GND (Negative Power Supply)

Pin 5 – Non-Inverting Input B (+)

Pin 6 – Inverting Input B (–)

Pin 7 – Output B (Output of Op-Amp B)

Pin 8 – Vcc (Positive Power Supply)


The ICs 4558, 4560, 4562, 4565, and 4580 are all dual operational amplifier (op-amp) ICs which means they each contain two op-amps in one package but they have slight differences in terms of performance and applications.

The 4558 is a widely used general-purpose op-amp with low noise, ideal for audio and signal processing. 

Whereas the 4560 offers improved performance with lower noise and higher precision, often used in high-quality audio circuits.

Whereas the 4562 is similar to the 4560 but with even better specifications, providing enhanced bandwidth and low distortion, commonly used in professional audio equipment. 

Whereas the 4565 is another dual op-amp, suitable for similar tasks but with different internal characteristics like voltage supply range, which makes it more versatile in some applications. 

Lastly, the 4580 has similar functions but is often preferred in low-noise applications like audio amplifiers and preamps. While all of these ICs share a basic dual-op-amp structure, their performance, noise levels, and power supply requirements vary, making them suitable for different types of electronic circuits.


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