The PALS PMAR-105 is specially designed for maritime applications, featuring a 3-axes stabilization structure. Equipped with built-in high-precision angle sensors, magnetic resistance sensors, a gyro sensor, and a GPS antenna, the PMAR-105 continuously monitors external environmental changes in real time. This ensures that the antenna adjusts dynamically, automatically searching for and tracking satellites, and maintaining open communication even in the most challenging sea conditions.
The integrated operation and management platform collects comprehensive antenna data, including location details, installation parameters, operational status, and system logs. When deployed with field equipment, this platform automatically gathers and analyses state data, significantly enhancing diagnostic efficiency while reducing troubleshooting time.
Leveraging digital finding technology, the PMAR-105 accurately identifies the target satellite by analysing the C/N value of the desired satellite carrier signal, ensuring reliable and precise satellite acquisition.
• Ku and Ka bands are available, and 4-port feed system is optional
• The initial finding time is short and can lock the satellite in the 90 seconds
• Tracking satellite precision is high, using the advanced conical scan algorithm, can control the antenna accurately, locking the satellite direction, pointing to the precision control in the 0.2° rms
• Multi-satellite switching speed is fast, receiving the tangent satellite directive, can adjust the antenna angle quickly, and switch the target satellite in a circle
• Using digital finding technology, the target satellite can be accurately identified by The C/N value of the demand satellite carrier signal
• Optional External ACU with display screen
• Seamless communication in all terrains and weather conditions
• Reliable high data rate
• Ku and Ka bands are available, and 4-port feed system is optional
• The initial finding time is short and can lock the satellite in the 90 seconds
• Tracking satellite precision is high, using the advanced conical scan algorithm, can control the antenna accurately, locking the satellite direction, pointing to the precision control in the 0.2° rms
• Multi-satellite switching speed is fast, receiving the tangent satellite directive, can adjust the antenna angle quickly, and switch the target satellite in a circle
• Using digital finding technology, the target satellite can be accurately identified by The C/N value of the demand satellite carrier signal
• Optional External ACU with display screen
• Seamless communication in all terrains and weather conditions
• Reliable high data rate
• Ku and Ka bands are available, and 4-port feed system is optional
• The initial finding time is short and can lock the satellite in the 90 seconds
• Tracking satellite precision is high, using the advanced conical scan algorithm, can control the antenna accurately, locking the satellite direction, pointing to the precision control in the 0.2° rms
• Multi-satellite switching speed is fast, receiving the tangent satellite directive, can adjust the antenna angle quickly, and switch the target satellite in a circle
• Using digital finding technology, the target satellite can be accurately identified by The C/N value of the demand satellite carrier signal
• Optional External ACU with display screen
• Seamless communication in all terrains and weather conditions
• Reliable high data rate