Description
ADL5602ARKZ-R7
Overview
The ADL5602ARKZ-R7 is a high-performance, linear, radio frequency (RF) amplifier designed for applications requiring high gain, high linearity, and low noise figure. This amplifier is suitable for use in a wide range of RF and microwave systems, including cellular infrastructure, microwave links, and radar systems.
Key Features
- High Gain: The ADL5602ARKZ-R7 offers high gain, making it suitable for applications where signal enhancement is crucial.
- High Linearity: It features high linearity, which is essential for maintaining signal integrity and minimizing distortion in RF systems.
- Low Noise Figure: With a low noise figure, this amplifier minimizes the addition of noise to the signal, ensuring high-quality signal transmission.
Specifications
General Characteristics
- Gain: 24 dB
- Operating Frequency: 400 MHz to 6000 MHz
- Supply Voltage: 5 V
- Current Consumption: 350 mA
Performance Characteristics
- Noise Figure: 2.5 dB (typical)
- IP3 (Input Third-Order Intercept Point): 38 dBm (typical)
- P1dB (1 dB Compression Point): 24 dBm (typical)
Environmental Characteristics
- Operating Temperature: -40°C to 85°C
- Storage Temperature: -55°C to 125°C
Physical Characteristics
- Package Type: SOT-89
Applications
The ADL5602ARKZ-R7 is optimized for a variety of applications, including:
- Cellular Base Stations
- Microwave Links
- Radar Systems
- Broadband Systems
- RF and Microwave Test Equipment
Documentation and Support
For detailed specifications, documentation, and support, please visit the manufacturer’s official website or contact their customer support.
Ordering Information
- Part Number: ADL5602ARKZ-R7
- Package: SOT-89
- Minimum Order Quantity: Please check with the supplier for the minimum order quantity.
Warranty and Compliance
- The product is covered under a limited warranty provided by the manufacturer.
- The product is designed to comply with relevant regulatory standards. For specific compliance information, please consult the manufacturer’s documentation or website.