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 GaN

Ultra-High Power 400W X-Band GaN BUC Saturated Output 150W Linear

ZD-BUC-7.9/8.4G-400W
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   ZD Tech high-frequency RF signal conversion equipment is a type of electronic equipment specially used to convert the frequency, power or modulation mode of RF signals. It is widely used in communications, radar, satellites, electronic warfare and other fields. Its core function is to convert the input signal into a signal of the target frequency band or format through mixing, amplification, filtering and other technologies, while maintaining the integrity and quality of the signal. High-frequency RF signal conversion equipment can be divided into the following types according to application and technology: by function, It is divided into upconverter, downconverterdownconverter and transceiver integrated converter. From technical solution aspect, It is divided to analog frequency conversion, digital frequency conversion, hybrid frequency conversion. In power level, small signal frequency converter, high power frequency converter.

 High power 400W X-Band GaN Satellite Communication Upconverter is a high-performance RF frequency conversion device designed for satellite communication uplink. Its core function is to convert the intermediate frequency (IF) signal generated by the ground station into a high-power RF signal of the X-band (7.9-8.4GHz), and transmit it to the satellite through the antenna to complete the data, voice or video upload task. This product uses advanced gallium nitride GaN technology and integrates up-conversion, power amplification and signal conditioning functions to provide stable and efficient RF signal conversion solutions for military, government and commercial satellite communication systems. This X-band GaN satellite communication upconverter combines high performance and reliability. It can operate stably in extreme temperature environments from -40°C to +60°C, adapting to various harsh deployment scenarios. Also, it is equipped with intelligent monitoring functions, which supports remote control and real-time system diagnosis via Ethernet or RS-232 (optional SNMP), ensuring that the equipment is always in the best working condition.

Specification

Parameter

Value

RF Output Frequency

7.9-8.4GHz

Input Level, No Damage

+10 dBm max

IF/REF Input Impedance

50 ohms

IF Input Frequency

950-1450MHz (other options available)

LO Reference Frequency

External 10 MHz

LO Reference Level

0dBm±5dB

Eq. Saturated Power, PSAT

56dBm(400W)

Maximum CW Power, PMAX

54.8dBm(300W)

Linear Power,PLIN(min)

53dBm(200W)

Spectral Regrowth@PLIN

(QPSK,OQPSK@1SR offset)

-30dBc max

Intermodulation Products@PLIN

Wrt sum of 2 equal carriers

-25dBc max

AM to PM Conversion @PLIN

2.0°/dB max

Small Signal(typical)

70dB±5dB

Gain Variation (over 40 MHz)

1.0 dB p-p max

Gain Variation (over full band)

3.0 dB p-p max

Gain Stability, over 24 hours

0.5 dB p-p max

Gain Variation over Temp

4.0 dB p-p max

Noise Power Transmit Band

-75 dBW/4 kHz

Noise Power Receive Band

-80 dBW/4 kHz

Sum ofAllSpurious

-30 dBc

SingleSidebandSum

-36 dBc

Harmonics

-60 dBc

Output Spurious @ PLIN

(Excludes 1 MHzBand)

-60 dBc

Phase Noise (max)

100 Hz:-63 dBc/Hz

1 kHz:-73 dBc/Hz

10 kHz:-83 dBc/Hz

100 kHz:-93 dBc/Hz

1 MHz:-103 dBc/Hz

Reference Phase Noise (max)

10 Hz:-125 dBc/Hz

100 Hz:-155 dBc/Hz

1 kHz:-165 dBc/Hz

Transmit Phase Linearity up to PLIN

over any 2 MHz:±0.2 radian

over any 36 MHz:±0.4 radian

over any 72 MHz:±0.5 radian

over any 90 MHz:±0.6 radian

over any 120 MHz:±0.7 radian

Input VSWR

1.5:1

Output VSWR

1.3:1

90-264 VAC Prime Power

875 @ PLIN

Operating Temp Range

-40° to +60°C

Non-Operating Temp Range

-50° to +70°C

Altitude (max)

12,000 ft. MSL

Humidity

100% condensing

Shock/Vibration

Normal transportation

M&C Interface

Ethernet/RS-232/RS-485 and Serial RS-232(Optional SNMP)

(SNMP Option)

Weight

26.3 kg

Dimensions

20.3cm x36.6cm x48.3cm