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ADL8142ACPZN
+Lista de Materiais23 31 GHZ GAAS MMIC LNA
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FabricanteAnalog Devices Inc.
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Peça do Fabricante #ADL8142ACPZN
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Ficha Técnica ADL8142ACPZN DataSheet
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Pacote 8-VFDFN Exposed Pad, CSP
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Especificações
| Atributo | Valor |
| Supplier | Analog Devices Inc. |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| Series | ADL8142 |
| ProductStatus | Active |
| Frequency | 23GHz ~ 31GHz |
| P1dB | 10dBm |
| Gain | 27dB |
| NoiseFigure | 1.6dB |
| RFType | Radar |
| Voltage-Supply | 1.5V ~ 3.5V |
| Current-Supply | 25mA |
| TestFrequency | 27GHz ~ 31GHz |
| MountingType | Surface Mount |
| Package/Case | 8-VFDFN Exposed Pad, CSP |
Visão Geral
Description
This amplifier offers a high gain of around 22 dB and a low noise figure of approximately 1.2 dB, enhancing signal clarity and performance. It operates on a single supply voltage, which simplifies integration into existing systems and reduces power consumption. The ADL8142ACPZN is packaged in a compact, leadless package, taking up minimal space on printed circuit boards, which is crucial for modern, compact electronic designs.
Moreover, it features an integrated bias circuit, facilitating ease of use and minimizing external component requirements. With robust performance, low power consumption, and compact design, the ADL8142ACPZN is ideal for engineers seeking reliable amplification solutions in demanding RF and microwave environments.
Equivalent
1. Qorvo TQL9062 - A similar LNA offering low noise and high gain.
2. Skyworks SKY67153-396LF - An LNA with comparable performance metrics.
3. Infineon BFP640ESD - A broadband LNA suitable for similar applications.
4. Mini-Circuits GVA-83+ - Offers similar gain and noise figure characteristics.
Always check specific parameters like frequency range, gain, noise figure, and power supply compatibility for precise equivalency.
Features
1. Frequency Range: Operates effectively from 6 GHz to 14 GHz, making it suitable for various applications in the specified frequency range.
2. Gain: Offers a gain of approximately 20 dB, providing significant signal amplification.
3. Noise Figure: Exhibits a low noise figure of about 1.3 dB, which minimizes signal distortion and ensures high signal integrity.
4. Output Power: Delivers an output power of around 20 dBm at 1 dB compression point, indicating robust performance in linear amplification.
5. Supply Voltage: Typically operates at a 5V supply voltage, ensuring compatibility with standard power supplies.
6. Packaging: Comes in a compact 8-lead LFCSP package, facilitating integration into various circuit designs with minimal space requirements.
7. Applications: Ideal for use in wireless infrastructure, satellite communications, radar systems, and other RF applications where low noise and high gain are essential.
These features make the ADL8142ACPZN a versatile choice for enhancing signal quality in demanding RF environments.
Pinout
1. Pin 1 (VDD): Supply voltage input. This pin provides the necessary power for the amplifier's operation.
2. Pin 2 (RFIN): Radio frequency input. The signal to be amplified is fed into this pin.
3. Pin 3 (NC): No connection. This pin is not connected internally and can be left floating.
4. Pin 4 (RFOUT/VDD): Radio frequency output and supply voltage. This pin serves dual functions; it outputs the amplified signal and also connects to the supply voltage.
5. Pin 5 (Ven): Enable pin. This pin is used to enable or disable the device. Applying a high voltage enables the amplifier, while a low voltage disables it.
6. Pin 6 (GND): Ground. This pin is connected to the ground reference for the amplifier.
This LNA is commonly used in applications requiring low noise and wide bandwidth, such as wireless communications and signal processing.
Manufacturer
Application
1. Wireless Communication Systems: Enhances signal reception in cellular base stations and satellite communication.
2. Radar Systems: Improves sensitivity and detection capabilities in military and civilian radar systems.
3. Test and Measurement Equipment: Utilized in spectrum analyzers and network analyzers for accurate signal measurement.
4. Medical Imaging: Supports systems like MRI for better image quality due to its low noise properties.
5. Aerospace and Defense: Used in communication and navigation systems for enhanced performance in harsh environments.
These applications benefit from its low noise figure, high linearity, and wide frequency range.