Factory-Direct RF Amplifier Engineering Support

300–2700 MHz
RF Power Amplifier
Modules

Explore CorelixRF 300–2700 MHz RF power amplifier modules with five output power options from 30 to 200 W. Compare the listed models and confirm performance, operating mode and integration requirements across your intended frequency range.

300–2700 MHz 30W–200W CW / Saturated
CorelixRF CRF-PA-300M2700M series RF power amplifier module
Series Engineering Basis

Key datasheet-backed conditions used before model recommendation.

Standard Supply28 VDC
System Test50Ω system condition
Thermal StructureAir cooling
RF InterfacesSMA-Female IN · N-Female OUT
Control InterfaceDB9
Performance EvidenceS21 / S11 swept curve available
48-hour feasibility review available.
300–2700 MHz
Series Band
S21 / S11
Swept Curve
48 Hours
Feasibility Review
ISO 9001
Quality Framework
OEM / ODM
Review Available
Datasheet-Based Model Matrix

Compare 300–2700 MHz Amplifier Models

Compare each RF amplifier module against your full operating band and output requirements. For a 50W RF amplifier or 100W RF power amplifier requirement, confirm the exact rating, operating conditions and integration details.

CorelixRF CRF-PA-300M2700M series module size comparison
Model Power Gain Current Size Best For Action
CRF-PA-300M2700M-30W 30W 44–46 dB ≤4A 125 × 59 × 21.5 mm Lab evaluation / SDR driver DatasheetReview
CRF-PA-300M2700M-50W 50W 46–48 dB ≤9A 125 × 59 × 21.5 mm Compact RF chain DatasheetReview
CRF-PA-300M2700M-100W 100W 49–51 dB ≤18A 200 × 158 × 25 mm System integration DatasheetReview
CRF-PA-300M2700M-150W 150W 51–53 dB ≤20A 200 × 158 × 25 mm Broadband transmission DatasheetReview
CRF-PA-300M2700M-200W 200W 52–54 dB ≤36A 200 × 158 × 25 mm High-power RF chain DatasheetReview
Datasheet accuracy note: Frequency range, voltage, cooling method, output type and interfaces are summarized above; model rows focus on power, gain, current, size and recommended starting use case. All hard parameters are kept tied to the corresponding datasheets.
Selection Guide

How to Choose the Right 300–2700 MHz RF Power Amplifier

Output power alone is not enough. A suitable RF amplifier depends on working band, output target, operation condition, cooling method, load match, and integration details.

Frequency Range

Confirm whether your system requires full 300–2700 MHz coverage or a narrower customized band. Custom frequency bands can be reviewed based on project requirements.

Output Power

Select a starting power level based on required RF output, cable loss, load condition, and system margin. Standard page comparison should follow datasheet-rated output power.

Output Type

The datasheet output power type is CW / Saturated. Pulse or duty-cycle-specific operation should be reviewed by engineering before recommendation.

Cooling

The standard cooling method is air cooling. Integration design should consider thermal contact, airflow, mounting surface, and enclosure structure.

Load Match

Input and output matching should be reviewed during RF chain integration. The datasheet includes input and output VSWR parameters for each model.

Mechanical Integration

Mechanical outline drawings are provided for dimensional review and connector location confirmation before installation.

Application Fit

Typical Applications for 300–2700 MHz RF Amplifier Integration

The datasheet application scope is RF testing / communication / system integration. The following cards convert that scope into practical RFQ review points.

RF amplifier application environments for RF testing, communication and system integration

RF Testing

For laboratory RF testing, broadband signal amplification, and amplifier evaluation platforms. Share frequency range, target output power, load condition, and test setup for review.

Send RF Test Requirement

Communication Systems

For communication systems requiring broadband RF output across 300–2700 MHz. Share frequency plan, output power target, operation condition, and integration environment.

Review Communication Requirement

System Integration

For OEM or system-level RF chain integration where mechanical size, connector type, control interface, and thermal design need to be reviewed.

Start Integration Review

SDR Front-End Integration

For SDR-based RF chains requiring a broadband amplifier stage after signal generation. Engineering review is recommended for gain response, output level, cooling, and load condition.

Send SDR Chain Requirement

Custom RF Platform

For projects requiring custom frequency bands, connectors, control interfaces, or integration details. Feasibility review can be provided within 48 hours.

Request Custom Review

Broadband RF Chain

For broadband RF chains that require model matching based on frequency, output power, cooling, and mechanical integration.

Request Platform Review
Before Quotation

Why Engineering Review Matters Before Quotation

For broadband RF amplifier projects, frequency range and output power are only the starting points. A suitable recommendation also depends on operation type, cooling method, load condition, control interface, mechanical space, and integration details.

Frequency Range
Output Power
CW / Saturated or Special Operation Requirement
Cooling Condition
Load / Antenna Match
Connector and Control Interface

Standard Datasheet Configuration

Frequency Range300–2700 MHz
System Condition50Ω system
Supply Voltage28 VDC
Cooling MethodAir Cooling
RF InputSMA-Female / SMA-KFD46
RF OutputN-Female
Control InterfaceDB9
Output TypeCW / Saturated
Typical Performance & Validation

Typical Performance Curve and RF Validation

Review RF amplifier gain against frequency using the corresponding model datasheet. Representative S21 gain and S11 input match / SWR curves should be read with their test conditions; request additional validation data where applicable.

Gain response review
Input match / SWR review
Rated output power check
Connector and control interface check
Mechanical inspection
Project validation data where applicable
CorelixRF RF validation test bench for amplifier review

Use the corresponding model datasheet and confirmed test conditions when comparing gain and input-match measurements.

Customization Support

OEM / ODM Customization Support

Custom frequency bands, connectors, control interfaces, and integration details are available for project review. CorelixRF engineering team can provide feasibility review within 48 hours.

1. Requirement Review

Frequency range, output power, operation condition, cooling method, load condition, and application background.

2. Standard Model Matching

Compare the requirement against CRF-PA-300M2700M standard model options.

3. Customization Review

Review custom frequency band, connector, control interface, and integration details when standard configuration is not enough.

4. Mechanical & Interface Check

Confirm package size, connector location, DB9 control interface, RF input, RF output, and installation space.

5. Validation Data Review

Environmental and validation data can be supplied for project review where applicable.

Start OEM Review

Send frequency, power, operation requirement, cooling, connector, interface and mechanical constraints for evaluation.

Start OEM Amplifier Review
CorelixRF OEM customization and RF amplifier integration review
Manufacturing & QC

Manufacturing and Quality Control

Review manufacturing and inspection information alongside the electrical specifications in the corresponding model datasheet.

RF Assembly

RF path assembly, connector installation, and module-level preparation are handled according to controlled manufacturing procedures.

Mechanical Inspection

Package size, connector location, mounting surface, and mechanical outline are reviewed for integration reference.

RF Performance Review

Representative swept gain S21 and input match / SWR S11 data are included in corresponding model datasheets.

Quality Framework

RoHS Compliant, CE / FCC, ISO 9001, and GJB 9001C quality framework information is included in the datasheet.

CorelixRF manufacturing quality control and RF amplifier assembly
Integration Review

Integration Considerations Before Model Selection

These review points help avoid wrong model selection before RFQ and mechanical integration.

Thermal Design

The standard cooling method is air cooling. High-power broadband operation should be reviewed with mounting surface, airflow, enclosure, and working time.

Load Match

Input and output VSWR parameters are listed in the datasheet. Cable, antenna, load, and system match should be reviewed during integration.

Mechanical Space

The 30W and 50W models use a 125 × 59 × 21.5 mm package, while the 100W, 150W and 200W models use a 200 × 158 × 25 mm package.

Control Interface

The standard control interface is DB9. Custom control interfaces can be reviewed based on project requirements.

Engineering FAQ

300–2700 MHz RF Amplifier FAQ

Consider this series when your complete required frequency range falls within 300–2700 MHz. Then compare the listed power options and confirm model-specific performance, operating conditions and integration requirements.
The datasheet output power type is CW / Saturated. Pulse or duty-cycle-specific operation should be reviewed by engineering based on the project requirement.
No. Frequency coverage describes the operating range, not a general ranking of performance. Compare gain, output, efficiency, linearity and thermal conditions using the selected model’s confirmed specifications.
Representative S21 gain and S11 input match / SWR curves are included in corresponding model datasheets. Environmental and validation data can be supplied for project review where applicable.
Confirm the full frequency range, the meaning of the 100 W output rating, input signal, operating mode, supply, cooling and load conditions. Include interface and mechanical requirements when requesting model review.
The standard configuration includes SMA-Female RF input, N-Female RF output, DB9 control interface, 28VDC power supply, and air cooling.
RFQ

Request a 300–2700 MHz Amplifier Quote

To recommend the right CRF-PA-300M2700M amplifier, please share your frequency range, output power, operation requirement, cooling condition, load condition, and integration details.