
ISL28138FHZ-T7A Integrated Circuits (ICs) |
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Allicdata Part #: | ISL28138FHZ-T7ATR-ND |
Manufacturer Part#: |
ISL28138FHZ-T7A |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Intersil |
Short Description: | IC OPAMP GP 4.5MHZ RRO SOT23-6 |
More Detail: | General Purpose Amplifier 1 Circuit Rail-to-Rail S... |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Current - Input Bias: | 1pA |
Base Part Number: | ISL28138 |
Supplier Device Package: | SOT-23-6 |
Package / Case: | SOT-23-6 |
Mounting Type: | Surface Mount |
Operating Temperature: | -40°C ~ 125°C |
Voltage - Supply, Single/Dual (±): | 2.4 V ~ 5.5 V, ±1.2 V ~ 2.75 V |
Current - Output / Channel: | 75mA |
Current - Supply: | 900µA |
Voltage - Input Offset: | 6µV |
Series: | -- |
-3db Bandwidth: | 13MHz |
Gain Bandwidth Product: | 4.5MHz |
Slew Rate: | 4.8 V/µs |
Output Type: | Rail-to-Rail |
Number of Circuits: | 1 |
Amplifier Type: | General Purpose |
Part Status: | Obsolete |
Packaging: | Tape & Reel (TR) |
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ISL28138FHZ-T7A Application Field and Working Principle
The ISL28138FHZ-T7A is a high-performance, low power, wide-bandwidth instrumental amplifier designed for a wide range of applications. It is a high-gain, highly linear, and precision-matched device. It features low power consumption and a wide supply range, making it ideal for low-power instrumentation systems.
The ISL28138FHZ-T7A is designed for use in instrumentation, data acquisition, automotive and communications circuits. It can be used as a buffer amplifier for low-impedance sources and sensors, and can also be used to amplify low level signals. It is also suitable for use in multi-amp systems due to its low input offset current. Its high accuracy allows it to be used in closed-loop systems that require high-precision results.
The ISL28138FHZ-T7A is based on a fully-differential amplifier architecture. It consists of two differential transimpedance (TZ) amplifiers, and provides adjustable gain, wide bandwidth, and low distortion. The differential inputs and outputs have a gain of up to 40 dB, with a 3 dB bandwidth of up to 600 MHz. The device also features voltage controlled bias, with an adjustable common-mode voltage range of -10V to +10V.
The ISL28138FHZ-T7A is designed to provide a low-noise, high-performance solution for a number of applications. It can be used in low-power, high-speed instrumentation systems, as well as in data acquisition, automotive and communications circuits. It is ideal for use in systems that require low power consumption, low noise, and wide bandwidth. The ISL28138FHZ-T7A can also be used in closed-loop systems that require high-precision results.
The working principle of the ISL28138FHZ-T7A is based on the concept of transimpedance amplification. A transimpedance amplifier is an amplifier which amplifies a differential input current to an output voltage. The amplifier operates by controlling the voltage across a pair of input terminals, which results in a current being injected into the output. The output voltage is determined by the transimpedance gain, which can be adjusted by the user.
The ISL28138FHZ-T7A contains two TZ amplifiers and provides adjustable gain, wide bandwidth, and low distortion. It also features low current drain and a wide common-mode voltage range. These features make it well suited for a variety of applications, such as in low-power, high-speed instrumentation systems, as well as in data acquisition, automotive and communications circuits.
In summary, the ISL28138FHZ-T7A is a high-performance, low power circuit designed for instrumentation, data acquisition, automotive and communications applications. It offers low power consumption, low noise, and high accuracy. Its wide supply range, wide common-mode voltage range and adjustable gain makes it ideal for low-power instrumentation systems. Its differential inputs and outputs provide a high-gain and low-distortion amplifier with a wide bandwidth. The working principle of the ISL28138FHZ-T7A is based on the concept of transimpedance amplification, which allows it to be used in closed-loop systems that require high-precision results.
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