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Op Amps


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NCV20231SN2T1G, ON Semiconductor

NCV20231SN2T1G, ON Semiconductor

The ON Semiconductor NCV series of op amps feature a wide supply range of 2.7 V to 36 V with an input offset voltage as low as ±0.95 mV max. These op amps are available in single, dual, and quad channel configurations. Low input offset voltage 0.95mV type High accuracy GBWP of 3 MHz Higher slew rate
New items
NJM4558M-TE3, New Japan Radio

NJM4558M-TE3, New Japan Radio

The New Japan Radio NJM4558 series is of dual high gain operational amplifiers with internal compensation circuit and constructed on a single silicon chip. It offers excellent characteristics by combining the parameters adjusted for a monolithic chip. The channel separation characteristic is suitable for measuring instruments. High Voltage Gain High Input Resistance Bipolar Technology
New items
NJM324CG-TE2, New Japan Radio

NJM324CG-TE2, New Japan Radio

The New Japan Radio NJM324C series consists of independent, high gain, internally frequency compensated operation amplifiers which were designed specifically to operate from a single power supply over a wide range of voltages. Operation from split power supplies is also possible and the low power supply current drain is independent of the magnitude of the power supply voltage. Operating temperature range is -40°C to 85°C
New items
NJM3472G-TE2, New Japan Radio

NJM3472G-TE2, New Japan Radio

The New Japan Radio NJM3472 series are high speed single supply operational amplifier. It is suitable for inverter current sense application, motor load current sense application and active filter. Operating temperature range is -40°C to 125°C High Slew Rate High Bandwidth
New items
LT6210CS6#TRMPBF, Linear Technology

LT6210CS6#TRMPBF, Linear Technology

Current Feedback Op Amps, Linear Technology A range of Current Feedback operational amplifiers from Linear Technology. The current feedback topology employed in these op amps enables better high frequency performance than can be obtained from the more common voltage feedback architecture making these devices ideal for high speed video applications. Typical applications for these high speed op amps include video and RGB amplifiers, ADSL and cable drivers, test equipment amplifiers and high speed buffers. Operational Amplifiers, Linear Technology Linear Technology produces a comprehensive range of high performance operational amplifiers (Op Amps) suitable for a wide variety of signal processing applications. The Op Amp categories include High Speed amplifiers, Low noise amplifiers, Zero-drift amplifiers, Low-power and Micro-power amplifiers, Current Feedback amplifiers and various Precision amplifiers.
New items
UPC812G2-E2-A, Renesas Electronics

UPC812G2-E2-A, Renesas Electronics

The Renesas Electronics provides an unique J-FET input dual operational amplifiers that uses a high-speed PNP transistor for the output stage to achieve fast response and high stability. Built-In Phase Compensation Circuit Built-In Output Short Circuit Protection Unity gain frequency is 4 mhz
New items
NJM2904CAG-TE2, Nisshinbo Micro Devices

NJM2904CAG-TE2, Nisshinbo Micro Devices

The New Japan Radio NJM2904CA series consists of independent, high gain, internally frequency compensated operation amplifiers which were designed specifically to operate from a single power supply over a wide range of voltages. Operating temperature range is -40°C to 125°C Low Operating Current Bipolar Technology
New items
NJU7089R-TE2, Nisshinbo Micro Devices

NJU7089R-TE2, Nisshinbo Micro Devices

The New Japan Radio NJU7089 series is an audio power amplifier designed for telephone applications. It does not required external coupling capacitors because of the differential outputs. The closed loop gain is adjusted by two external resistors, and a SD pin permit power down with muting the input signal. Operating temperature range is -40°C to 85°C Over current protection circuit C-MOS Technology
New items
NJU77806F3-TE1, Nisshinbo Micro Devices

NJU77806F3-TE1, Nisshinbo Micro Devices

The New Japan Radio NJU77806 series is a single low noise rail-to-rail output CMOS operational amplifier offer a low input voltage noise density. It is used when excellentperformance is required in low noise and low power applications. Operating temperature range is -40°C to 105°C RF-Noise Immunity
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ADA4692-4ARUZ, Analog Devices

ADA4692-4ARUZ, Analog Devices

Operational Amplifiers, Analog Devices Operational Amplifiers, Analog Devices
New items
MAX492CPA+, Maxim

MAX492CPA+, Maxim

Low-Power and Precision Operational Amplifiers, Maxim Integrated The operational amplifiers have low input offset voltage and drift. They are ideal for power-sensitive sensor interface applications where precision and low-noise performance enable the input voltage to scale. Operational Amplifiers, Maxim Integrated
New items
MAX4478ASD+, Maxim

MAX4478ASD+, Maxim

Precision and Low-Noise Operational Amplifiers, Maxim Integrated The precision and low-noise operational amplifiers are crucially specified for the input offset voltage and the input voltage noise. They are often used to condition the analogue signal from a sensor before it enters an Analogue-to-Digital Converter (ADC). Operational Amplifiers, Maxim Integrated
FAQs
We offer free shipping for orders over £200 if delivery is in the UK. All other orders in the UK, shipping from £7.99 depending on the weight and measurement. Mainland Europe shipping charges start from £25. For all other countries shipping charges start from £50 for products like Op Amps and all others.
You can email us directly at sales@enrgtech.co.uk or via our website for any queries regarding Op Amps or any other product.
This depends on the Op Amps individual product and information that can be found on our website.
Yes, we offer special discounts on orders above £200 for Op Amps and all other products.
UK orders normally take between 2/3 working days. International orders normally take between 3/5 working days for all products including Op Amps.
Yes. We keep updating our stock frequently and if a product like Op Amps is not in stock then we will let you know.