NJM2076M-TE3
Manufacturer No:
NJM2076M-TE3
Manufacturer:
Description:
IC PWR AMP BIPO DUAL LV 8DMP
Datasheet:
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NJM2076M-TE3 Specifications
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TypeParameter
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Package / Case8-SOIC (0.197", 5.00mm Width)
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Supplier Device Package8-DMP
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Operating Temperature-20°C ~ 75°C (TA)
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Mounting TypeSurface Mount
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Features-
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Voltage - Supply4.5V
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Max Output Power x Channels @ Load90mW x 1 @ 8Ohm, 17.5mW x 2 @ 16Ohm
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Output Type1-Channel (Mono) or 2-Channel (Stereo)
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TypeClass AB
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PackagingTape & Reel (TR)
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Product StatusObsolete
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Series-
The NJM2076M-TE3 is a specific integrated circuit chip manufactured by New Japan Radio Co., Ltd. It is a dual operational amplifier chip with a wide range of applications. Some of the advantages and application scenarios of the NJM2076M-TE3 are:1. Low Noise: The NJM2076M-TE3 has a low noise characteristic, making it suitable for applications where noise interference needs to be minimized, such as audio amplification circuits.2. High Slew Rate: The chip has a high slew rate, enabling it to respond quickly to changes in input signals. This makes it suitable for applications requiring fast signal processing, such as high-frequency amplifiers.3. Wide Bandwidth: The NJM2076M-TE3 has a wide bandwidth, allowing it to handle a broad range of frequencies. This makes it suitable for applications involving audio and video signal processing.4. Dual Operational Amplifier: The chip contains two operational amplifiers in a single package, providing cost and space-saving benefits. It is ideal for applications requiring multiple amplification stages or dual-channel signal processing.5. Low Power Consumption: The NJM2076M-TE3 operates at low power, making it suitable for battery-powered devices or applications where power efficiency is crucial.Application scenarios for the NJM2076M-TE3 include:1. Audio Amplifiers: The low noise and high slew rate characteristics of the chip make it suitable for audio amplification circuits, such as headphone amplifiers, audio preamplifiers, or audio mixers.2. Active Filters: The wide bandwidth and dual operational amplifier configuration make the chip suitable for active filter circuits, such as low-pass, high-pass, or band-pass filters used in audio or communication systems.3. Instrumentation Amplifiers: The low noise and high slew rate characteristics make the chip suitable for instrumentation amplifier circuits used in measurement and sensing applications.4. Signal Conditioning: The chip can be used for signal conditioning applications, such as amplification, filtering, or impedance matching, in various electronic systems.5. Communication Systems: The wide bandwidth and low power consumption make the chip suitable for communication systems, such as data transmission circuits, modems, or wireless communication devices.It is important to note that the specific advantages and application scenarios may vary depending on the requirements and design considerations of the overall system.
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