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NJM13600D

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NJM13600D

IC OPAMP TRANSCOND 2 CIRC 16DIP

Manufacturer: Nisshinbo Micro Devices Inc.

Categories: Instrumentation, Op Amps, Buffer Amps

Quality Control: Learn More

Nisshinbo Micro Devices Inc. NJM13600D is a dual transconductance amplifier featuring a push-pull output stage. This component is designed for applications requiring high performance and flexibility. Key electrical specifications include a 2 MHz gain bandwidth product and a 50 V/µs slew rate, enabling efficient signal processing. The device operates with a typical supply current of 2.6 mA and offers a wide supply voltage range up to 36 V. Input bias current is rated at 400 nA, with an input offset voltage of 400 µV. Each channel provides an output current of 500 µA. The NJM13600D is housed in a 16-DIP (0.300") package, facilitating through-hole mounting. This amplifier is suitable for use in instrumentation and other signal conditioning circuits. It operates within an extended temperature range of -40°C to 85°C.

Additional Information

Series: -RoHS Status: RoHS CompliantManufacturer Lead Time: No lead time information availableProduct Status: ObsoletePackaging: Tube
Technical Details:
PackagingTube
Package / Case16-DIP (0.300"", 7.62mm)
Output TypePush-Pull
Mounting TypeThrough Hole
Amplifier TypeTransconductance
Operating Temperature-40°C ~ 85°C
Current - Supply2.6mA
Slew Rate50V/µs
Gain Bandwidth Product2 MHz
Current - Input Bias400 nA
Voltage - Input Offset400 µV
Supplier Device Package16-DIP
Number of Circuits2
Current - Output / Channel500 µA
Voltage - Supply Span (Min)36 V
Voltage - Supply Span (Max)36 V

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Integrated Circuit FAQs

An integrated circuit (IC) is a semiconductor chip that contains transistors, resistors, capacitors, and other electronic components on a single silicon substrate. ICs are the foundation of modern electronics and power devices such as smartphones, computers, automotive systems, and industrial equipment.

Integrated circuits work by routing electrical signals through microscopic semiconductor components fabricated onto a silicon chip. Depending on the design, ICs can process, amplify, store, or control electronic data.

Integrated circuits are used in:

The different types of integrated circuits include:

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