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Ku-band module

Customized 1000W 1225-1275MHz Ku-band Module For Radar System Using

ZD-PAR-1225/1275M-1000W
Ku-band module for radar system is based on microwave technology. In satellite communications, the baseband signal is modulated to the Ku-band frequency band, the local oscillator at the transmitter is mixed with the intermediate frequency for up-conversion, and the receiver is down-converted back to the intermediate frequency or baseband. The operating bandwidth is 12.25-12.75GHz, the low noise temperature improves the signal-to-noise ratio, and the low input VSWR reduces the signal reflection loss. It is suitable for fixed stations, mobile stations, radars and laboratory tests.
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Ku-band refers to a band with a frequency range between 12 and 18 GHz. In this frequency band, signal transmission and processing are based on the principle of microwave technology.Ku-band module for radar system mainly use radio frequency (RF) circuits to realize signal modulation, amplification, frequency conversion and other functions. For example, in satellite communications, the baseband signal is first modulated to the Ku-band frequency band, and then transmitted and received through the antenna. At the transmitting end, the local oscillator signal is mixed with the input intermediate frequency signal to up-convert it to the Ku-band frequency band; at the receiving end, the opposite down-conversion operation is performed to convert the received Ku-band signal back to the intermediate frequency or baseband signal for processing.

TheKu-band module launched by ZDTECH has a wide operating bandwidth and can cover a frequency range of 12.25 to 12.75 GHz. Low noise temperature helps to improve the quality and signal-to-noise ratio of the signal, allowing the receiving end to receive weak signals more clearly. In radar systems, module for Radar with low noise temperature can improve the detection sensitivity and resolution of targets and identify targets more accurately. The input voltage standing wave ratio can effectively transmit the input signal to the module for processing, reducing the energy loss caused by signal reflection.

The high frequency characteristics of Ku-band make it have a shorter wavelength, which makes the antenna size used relatively small and easy to install and deploy. For example, in satellite communications, the use of Ku-band can greatly reduce the diameter and volume of the antenna, reduce costs, and also improve the flexibility of the system. The Ku-band band has a higher available bandwidth and can support higher data transmission rates. This is of great significance for modern high-speed communication systems such as high-definition video transmission and large data transmission. Due to the higher frequency of the Ku-band band, it is less likely to be interfered by the outside world than other bands. In some scenarios with complex electromagnetic environments, the Ku-band module can maintain stable working performance and ensure the reliability of communication.

Input RF Frequency

12.25~12.75GHz

Output IF Frequency

950~1450MHz

LO Frequency

11.3GHz

Gain

60dB

Gain Flatness

±3d Bp-p max

Noise Temperature

65K

Output Power (Psat)

0dBm min

Input/Output VSWR

2.5/2.0

Phase Noise

-65d Bc/Hz@100Hz max

-75d Bc/Hz@1KHz max

-80d Bc/Hz@10KHz max

-90d Bc/Hz@100KHz max

Frequency Stability

±1ppm@Internal Reference

External Reference

10MHz, 0±3dBm

Voltage

12~18V DC

Current

270mA typ. @12V

Impedance

50Ω

Operating Temperature

-40~+60

Operating Humidity

0~100%