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SSPA

Wideband Solid State Power Amplifier SSPA 50W 2-8GHz for 5G/WIFI/EMC Testing

ZD-PA-2/8GHz-50W
This Wideband Solid State Power Amplifier (SSPA) delivers a robust 50W output across the 2-8GHz frequency range, making it an ideal solution for demanding RF applications. Engineered with advanced GaN technology, it excels in EMC Testing, 5G protocol validation, and WIFI signal amplification, supporting complex waveforms like pulsed and modulated signals. Key features include high gain, excellent linearity, and comprehensive protection systems (over-temperature, over-voltage, VSWR). Its rugged design and reliable performance ensure accuracy and durability in both lab and field environments, streamlining your testing and communication systems.
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In the era of advanced wireless communication, the demand for robust and versatile RF amplification is paramount. Our Wideband Solid State Power Amplifier (SSPA) is engineered to meet these challenges head-on. Covering a extensive spectrum from 2 to 8 GHz, this 50W powerhouse is built on cutting-edge GaN technology, which provides superior efficiency, broader bandwidth, and higher power density compared to traditional alternatives.

The term SSPA (Solid State Power Amplifier) signifies a leap in reliability and performance, free from the drawbacks of older tube-based systems. This module is specifically designed to excel in critical applications such as EMC Testing, where generating strong, clean field strengths for immunity and emissions testing is essential. Its ability to handle a variety of signals—including continuous wave (CW), pulsed, and complex modulated waveforms—makes it equally vital for 5G NR research, WIFI 6/6E performance testing, and military communications.

Whether you are in a R&D laboratory characterizing new devices, on a production floor ensuring quality, or in the field deploying communication systems, this SSPA provides the Wideband power and fidelity needed to drive innovation. It’s more than just an amplifier; it's a foundational component for enabling the next generation of wireless technologies and rigorous EMC Testing protocols.

WorkingFrequency

2-8GHz

Saturated Output Power

dBm

Typ./Min.

48.5/46.5@ Pin=0dBm

 P1dB

dBm

Typ./Min.

41/36

Gain

dB

Typ./Min.

48.5/46.5@ Pin=0dBm

Gain Flatness

dB

Typ.

±1.5@ Pin=0dBm

Small Signal Gain

A

Typ.

60@ Pin=-40dBm

Small Signal Gain Flatness

:1

Typ.

±2.5@ Pin=-40dBm

Isolation@ Disable Status

dB

Typ.

90

Input Power

dBm

Typ.

0

2nd Harmonic Suppression

dBc

Typ./Max.

-25/-10@ Pout=46.5dBm

3rd Harmonic Suppression

dBc

Typ./Max.

-25/-15@ Pout=46.5dBm

Spurious Suppression

dBc

Typ./Max.

-70/-65@ Pout=46.5dBm

Input VSWR

:1

Typ./Max.

1.5/2

Supply Voltage

V

Typ.

28

Power Consumption

W

Typ./Max.

500@ Pin=0dBm

Input Power

Pin≤10dBm (Input RF level without damage)

Load VSWR

VSWR≤3:1 (Pout=46.5dBm)

SupplyVoltage

Amplifier power off(Supply voltage≥32Vor24V )

Supply current

Amplifier power off (Supply current ≥ 40A)

Thermal Degradation

75℃

RF Input Connector

SMA F

RF Output Connector

N F

Power supply Connector

D-Sub 7W2 M

Control Connector

D-Sub 7W2 M

Dimension

160x120x20mm (Tolerance +0.5)

Weight

2kg

Surface treatment

Natural conductive oxidation

Temperature indicator

Working: -10~+55; Storage: -40~+75

Heat Dissipation

External air cooling (need to select corresponding heat dissipation conditions according to product temperature)

Environmental

N/A