1000–2000 MHz 200 W RF Power Amplifier | L-Band SSPA for Radar & EW Systems

When designing L-band radar systems, electronic warfare (EW) platforms, or microwave RF test benches, engineers require high output power combined with consistent frequency coverage. Maintaining sufficient gain across the 1000–2000 MHz frequency range is critical for achieving the required system output power and link performance.

The MCW1020M53A provides a single-module broadband solution spanning the 1000 MHz to 2000 MHz frequency range. Designed to deliver 200 W of typical saturated output power, this Solid-State Power Amplifier (SSPA) simplifies RF front-end architectures by providing a compact, high-gain amplification block.

Technical Specs & Engineering Support

Need complete electrical parameters, S-parameter data, or custom RF design support for this series?

Request Quick Price ⚡ 2–4h Response | NDA Protected

Key RF Specifications at a Glance (MCW1020M53A)

ParameterSpecificationUnit / Note
Frequency Range1000 – 2000MHz
Saturated Output Power (Psat)200W (Typ.)
Power Gain53dB (Typ.)
Operating Voltage+28VDC
Current Consumption20A (Typ. at 200 W operating point)
Dimensions (L × W × H)200 × 150 × 25mm (Aluminum package)

L-Band 1000 MHz–2000 MHz RF Power Amplifier Design and Integration

Operating across the L-band traditionally requires careful impedance matching and gain flatness management. The MCW1020M53A consolidates this octave-band coverage into a compact 200 × 150 × 25 mm package.

Based on the typical 53 dB power gain, a first-order calculation gives an input level of approximately 0 dBm for a 53 dBm (200 W) output. In practice, the required drive level near saturation will vary with frequency and gain compression.

200 W SSPA for Radar, EW, and RF Testing

This amplifier can be used in high-power CW applications including RF test and measurement, EMC testing, and L-band radar systems. For non-constant-envelope or high-PAPR modulation schemes, appropriate output back-off may be required to meet system-level linearity and spectral requirements.

RF Load Mismatch Handling

The module incorporates built-in protection circuitry for output-load mismatch conditions. To prevent module degradation, system integration must follow the specified output-power, maximum load VSWR, and thermal limits during both laboratory testing and field deployment.

Thermal Management for High-Power CW Operation

At the specified 28 V / 20 A operating point, the DC input power is approximately 560 W. Proper thermal management is therefore essential to prevent performance degradation.

Effective conductive cooling through the baseplate is required for sustained high-power CW operation. The unit must be securely mounted to an appropriately sized heatsink. For sustained high-power operation, forced-air cooling may be used to improve heatsink thermal performance, depending on the system cooling design.

Frequently Asked Questions (Technical & Integration)

Q: What is the input power required to achieve 200 W output?

A: Based on the typical 53 dB power gain, a first-order calculation gives approximately 0 dBm input for a 53 dBm (200 W) output. Actual drive requirements near saturation depend on frequency, gain compression, and the required operating point.

Q: What is the DC power requirement for this module?

A: The MCW1020M53A requires a +28 VDC supply and draws a typical current of 20 A at the 200 W operating point.

Q: Can the amplifier be evaluated for a narrower operating sub-band?

A: Yes. A system can use a narrower portion of the specified 1000–2000 MHz operating range, subject to the required frequency, output-power, and linearity conditions. Applications requiring an optimized frequency range should be discussed with the manufacturer.

Q: What cooling method is recommended for high-power CW operation?

A: Effective conductive cooling through the baseplate is required. We recommend mounting the unit to a finned extruded aluminum heatsink, supplemented by active forced-air cooling to ensure stable continuous operation.

×

Quick RF Quote & Technical Support

⚡ Engineering response & quote within 2–4 hours
Buyer & Company Details ✓ Optional
I would like to inquire about:
+ Tech DataSheet + Price & Lead Time + Custom-designed + Sample need
Need instant reply? Chat on WhatsApp or Telegram
×

Request Specs & Quotation

⚡ Engineering response & quote within 2–4 hours
Inquired Product:
Buyer & Company Details ✓ Optional · Skip
I would like to inquire about:
+ Tech DataSheet + Price & Lead Time + Custom-designed + Sample need
Need instant reply? Chat on WhatsApp or Telegram
Send us a message ×
⚡ We will get back to you as soon as possible.