Signal Specification
Provide input power, waveform, modulation, duty cycle, peak-to-average ratio, gain and linearity requirements.
High-efficiency GaN RF power amplifier module supporting 400–6000MHz wideband operation. Designed for stable RF system integration with high output power and low distortion performance.
Class AB GaN design with broadband instantaneous coverage, optimized for stable RF transmission and system integration.
Designed for stable high-power RF amplification, supporting CW signal input and continuous operation scenarios.
Full band 400MHz–6000MHz continuous sweep capability, suitable for multi-band RF testing and deployment systems.
Compact RF power amplifier module designed for embedded RF systems, high integration and efficient thermal management.
Built for long-term stable operation in harsh environments, supporting -30°C to +55°C working temperature range.
Suitable for aviation, industrial, energy, and border security RF deployment scenarios, providing stable high-power RF coverage.
This wideband RF power amplifier module is designed for B2B projects that require stable high-power amplification across 400–6000MHz.
Its Class AB GaN design, ≥200W output power, ±1.5dB gain flatness, 50Ω RF architecture, and CW input support make it practical for demanding RF system integration.
Recommended applications include anti-drone RF modules, signal jamming systems, RF test platforms, EMC testing, broadband signal amplification, and customized RF equipment.
| Product Name | 400–6000MHz 200W RF Power Amplifier Module |
| Frequency Range | 400–6000MHz |
| Output Power | ≥200W |
| Gain Flatness | ±1.5dB |
| Technology | Class AB GaN RF power amplifier |
| Operating Voltage | 28V |
| RF Impedance | 50Ω |
| Input Signal | CW signal input |
| Applications | Anti-drone modules, jamming systems, RF testing, EMC, broadband signal amplification |
Wideband RF PA Integration Guide
This wideband Class AB GaN RF power amplifier module is specified for 400–6000MHz instantaneous coverage and at least 200W output in a suitable system configuration. It is intended for professional RF integration where the complete signal chain, power and thermal design can be engineered together.
Provide input power, waveform, modulation, duty cycle, peak-to-average ratio, gain and linearity requirements.
The listed operating voltage is 28V; current capacity, filtering, protection and cabling must suit the target RF output.
Heat-sink flatness, airflow, ambient temperature, duty cycle and enclosure design directly affect reliable operation.
Confirm filters, isolators, couplers, connectors, load VSWR protection, monitoring and antenna compatibility.
Technical & Procurement Questions
The published product specification describes 400–6000MHz instantaneous coverage. Confirm the required waveform, output, flatness and test conditions with the technical team before system design.
The listed output is at least 200W under the specified integration and test conditions. Practical performance depends on drive level, waveform, duty cycle, cooling, supply and load conditions.
The module requires a system-level thermal design based on efficiency, duty cycle, ambient temperature and enclosure. Provide heat-sink, airflow and operating-cycle details for review.
Project-based electrical and mechanical customization may be evaluated for suitable OEM quantities. Provide drawings, interface definitions, monitoring and protection requirements.
Send frequency, bandwidth, output, input level, waveform, duty cycle, supply, cooling, connectors, dimensions, control interface, environmental conditions, quantity and application.
Include waveform, duty cycle, drive, supply, cooling, interface and quantity for a technical quotation.
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