Allicdata Part #: | ADL5304ACPZ-RL-ND |
Manufacturer Part#: |
ADL5304ACPZ-RL |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Analog Devices Inc. |
Short Description: | IC AMP LOG CONV 32LFCSP |
More Detail: | Logarithmic Converter IC Fiber Optics 32-LFCSP (5x... |
DataSheet: | ADL5304ACPZ-RL Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Type: | Logarithmic Converter |
Applications: | Fiber Optics |
Mounting Type: | Surface Mount |
Package / Case: | 32-WFQFN Exposed Pad, CSP |
Supplier Device Package: | 32-LFCSP (5x5) |
Base Part Number: | ADL5304 |
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The ADL5304ACPZ-RL is a high-frequency, high-linearity differential amplifier, designed for use in wide variety of applications requiring high linearity. It is an integrated circuit, so it offers a significantly lower cost than other discrete components. The ADL5304ACPZ-RL provides a wide range of features and functionalities, including differential input and output, high gain, high linearity and low noise. The ADL5304ACPZ-RL is suitable for use in a wide range of signal processing, radio frequency (RF) and microwave applications.
Applications of ADL5304ACPZ-RL
The ADL5304ACPZ-RL is ideally suited for RF and microwave applications, including wireless infrastructure, test and measurement, military, satellite, and medical. The circuit provides differential input and output, so it can be used for amplitude and phase modulated signals in various wireless and microwave applications. The circuit is also suitable for low noise, high linearity receivers, designed for wideband communication and wideband digital communication applications. The circuit also allows for a compact implementation, offering space savings over more expensive, discrete components.
The ADL5304ACPZ-RL is also useful in a variety of other applications, such as antenna impedance matching, voltage controlled oscillators (VCO), and active filters. The circuit provides high attenuation over frequency, enabling it to be used in multiple filter topologies. The circuit also provides high stability, allowing it to be used in active filters and voltage controlled oscillators requiring stability over temperature and time.
Working Principle of ADL5304ACPZ-RL
The ADL5304ACPZ-RL consists of two differential amplifiers, each containing two transistors. The input signal is differentially amplified by the first differential amplifier, whose output is further amplified by the second differential amplifier. This differential structure ensures that any crossover distortion or non-linearities in the signal path are cancelled out. The circuit is provided with a gain of 6.5 dB and a noise figure of 5.5 dB, so it can be used for applications requiring high linearity and low noise.
The ADL5304ACPZ-RL also contains integrated ESD protection and temperature compensation, which can be enabled or disabled according to the user\'s requirements. The integrated ESD protection helps to protect the circuitry from harm due to electrostatic discharge, while the temperature compensation guarantees high stability across a wide temperature range. The circuit also features an adjustable input impedance and gain, which can be adjusted using an external resistor.
Conclusion
The ADL5304ACPZ-RL is a high-frequency, highlinearity differential amplifier, designed for use in wide variety of applications requiring high linearity. It is suitable for use in a wide range of RF and microwave applications, including wireless infrastructure, antenna impedance matching, test and measurement, military, satellite, and medical. The circuit provides differential input and output, high gain, high linearity and low noise, making it an ideal solution for applications requiring high linearity and low noise. The circuit also contains integrated ESD protection and temperature compensation, adjustable input impedance and gain, enabling it to be used in multiple applications with high reliability.
The specific data is subject to PDF, and the above content is for reference
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