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PNA4611M00HD
Product Overview
- Category: Integrated Circuit
- Use: Signal Amplification and Conditioning
- Characteristics: High Gain, Low Noise, Wide Bandwidth
- Package: SMD (Surface Mount Device)
- Essence: Amplifier IC for RF Applications
- Packaging/Quantity: Tape & Reel, 3000 units per reel
Specifications
- Operating Frequency: 50 MHz to 6 GHz
- Gain: 20 dB
- Noise Figure: 2.5 dB
- Supply Voltage: 3.3 V
- Current Consumption: 75 mA
- Operating Temperature: -40°C to 85°C
Detailed Pin Configuration
- Pin 1: RF Input
- Pin 2: Ground
- Pin 3: VCC
- Pin 4: RF Output
Functional Features
- High gain and low noise figure for signal amplification
- Wide operating frequency range for versatile applications
- SMD package for easy integration into PCB designs
Advantages
- Wide bandwidth allows for use in various RF applications
- Low noise figure ensures minimal signal degradation
- Small form factor and SMD package enable compact designs
Disadvantages
- Higher current consumption compared to some alternative models
- Limited to single-ended input/output configuration
Working Principles
The PNA4611M00HD operates by amplifying and conditioning RF signals using internal transistors and passive components. The input signal is amplified with minimal added noise and then output through the RF output pin.
Detailed Application Field Plans
- Wireless Communication Systems
- Radar Systems
- Satellite Communication Equipment
- Test and Measurement Instruments
Detailed and Complete Alternative Models
- PNA4612M00HD: Similar specifications with lower current consumption
- PNA4601M00HD: Lower gain but wider operating frequency range
This integrated circuit, PNA4611M00HD, is a versatile solution for RF signal amplification and conditioning, offering high gain and low noise figure across a wide frequency range. Its SMD package and functional features make it suitable for various applications in wireless communication, radar systems, and satellite equipment.
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Liste 10 perguntas e respostas comuns relacionadas à aplicação de PNA4611M00HD em soluções técnicas
What is PNA4611M00HD?
- PNA4611M00HD is a high-power microwave amplifier module designed for various technical solutions requiring amplification of microwave signals.
What is the frequency range of PNA4611M00HD?
- The frequency range of PNA4611M00HD is typically from 4.6 GHz to 11 GHz, making it suitable for a wide range of applications within this frequency band.
What is the output power of PNA4611M00HD?
- PNA4611M00HD can deliver an output power of up to 10 watts, providing significant amplification for microwave signals.
What are the typical applications of PNA4611M00HD?
- PNA4611M00HD is commonly used in radar systems, communication equipment, electronic warfare systems, and other applications requiring high-power microwave amplification.
What are the input and output interfaces of PNA4611M00HD?
- PNA4611M00HD typically features SMA connectors for both the input and output interfaces, allowing for easy integration into existing systems.
Is PNA4611M00HD suitable for military applications?
- Yes, PNA4611M00HD is often utilized in military applications due to its high-power amplification capabilities and rugged design.
Does PNA4611M00HD require external cooling?
- Yes, PNA4611M00HD may require external cooling, especially when operating at higher power levels, to ensure optimal performance and reliability.
Can PNA4611M00HD be integrated into compact systems?
- Yes, PNA4611M00HD's compact form factor and efficient design make it suitable for integration into compact technical solutions.
What are the environmental specifications of PNA4611M00HD?
- PNA4611M00HD is designed to meet stringent environmental specifications, including temperature, humidity, and shock resistance, making it suitable for harsh operating conditions.
Are there any recommended companion components for PNA4611M00HD?
- Yes, depending on the specific application, it is recommended to consult the datasheet for PNA4611M00HD to identify compatible components such as power supplies, filters, and control interfaces for seamless integration.