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Types of China Moneypro UAV Parts & Assembly Wholesale

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6U Module Radio Altimeter MY-919

The MY-919 radio altimeter is a new-generation altitude-measuring radar system designed for a specific type of aircraft; as a miniaturized, full-function radio altimeter that complies with avionics standards, it serves as a key component for the control of an aircraft’s longitudinal altitude channel and can be widely applied in large aircraft and unmanned aerial vehicles (UAVs). A radio altimeter based on a frequency-modulated continuous wave (FM CW) closed-loop tracking servo control measurement system, the MY-919 adopts linear modulation coefficients adaptive to altitude changes and narrow-band reception of echo signals, granting the product strong resistance to active interference; it uses coherent mixing reception, which delivers superior performance in resisting co-frequency asynchronous interference and ensures the product has good electromagnetic compatibility; it employs echo signal spectrum front detection technology, enabling the product to maintain high precision in tracking and measurement; it follows serialization, standardization, and modularization design principles, resulting in good product inheritance; and it integrates digital frequency-domain processing and control, microwave integration technology, and hybrid integration technology, making the product stable in performance, mature, and reliable.

Altimeter Antenna

To accommodate different types of aircraft, a variety of altimeter antennas have been developed, with microstrip antennas constituting the majority of these designs.

Altimeter Transceiver Assembly

The microwave transceiver module for altimeters is a core matching microwave module of radio altimeters, and it is divided into a transmitting unit, a receiving unit, a modulation unit, and other components.
The transmitting unit mainly fulfills functions such as generating a sawtooth linear frequency-modulated (LFM) microwave frequency source, performing power amplification, and achieving coupling and isolation of the signal. Eventually, it outputs the processed signal to the transmitting antenna.
The receiving unit, on the other hand, primarily completes filtering and amplification of the received reflected signal. It then conducts correlation mixing between this amplified reflected signal and the transmitted signal, and outputs the beat signal (denoted as FB) after the mixing process.

Channelized Receiver

Building on the expertise of its experienced microwave team, process team, and management team, Hangtai Technology has continuously raised the bar for R&D and production of microwave components. The microwave components developed by this division not only satisfy the requirements of the company’s radar and radio altimeter systems but also deliver value to society through their applications.

Correlator

Supported by its experienced microwave team, process team, and management team, Hangtai Technology has been making consistent progress in enhancing the R&D and production capabilities of microwave components. The microwave components developed by this division are not only able to meet the needs of the company's radar and radio altimeter projects but also can be put into use to serve the broader society.

CUAV M7+Controller

Equipped with the STM32H743 Processor, ICM-42688-P Accelerometer & Gyroscope, and RM3100 Industrial Compass, the CUAV M7+ Controller unlocks greater possibilities for flight applications. It finds extensive use across sectors such as plant protection, agriculture, and surveying and mapping, among others.

Data Link

In the telecommunications field, a data link serves as a medium to connect two locations, facilitating the transmission and reception of digital information. It can also refer to a suite of electronic components, encompassing transmitters, receivers (both classified as data terminal equipment), and interconnected data telecommunication circuits. These data are managed by link protocols, which enable the transfer of digital data from a data source to a data receiver.
A data chain, on the other hand, is a tactical wireless data communication system that operates across ground-space, space-space, and ground-ground scenarios. It transmits formatted digital information in real time using a bit-oriented approach, leveraging technologies such as modulation/demodulation, encoding/decoding, anti-interference, networked communication, and information fusion—all in accordance with specified information formats and communication protocols. The basic components of a data chain can be condensed into three core elements: terminal equipment, transmission equipment, and communication specifications.
The functions of a data chain include map transmission, data transmission, networking, air-to-ground video transmission, air-to-ground bidirectional data transmission, as well as remote control and telemetry for unmanned aerial vehicles (UAVs) and other aircraft. Additionally, it supports UAV air-based networking and UAV communication relay. Its application scope covers various platforms such as multi-rotor aircraft, fixed-wing UAVs, unmanned helicopters, missiles, and guided projectiles.

Electronic Countermeasure Radio Altimeter MY-18A、19A

Developed to meet the requirements of electronic countermeasures and terminal penetration, the MY-18A and MY-19A electronic countermeasure radio altimeters incorporate a range of advanced technologies including frequency agility, radiated power control, beam control, anti-burnout, anti-blocking, and echo frequency-domain processing—endowing them with excellent anti-jamming performance. Meanwhile, these altimeters also integrate a sea state identification function, which leverages information such as echo spectrum broadening, Doppler frequency, and altitude under different sea conditions to achieve accurate sea state recognition.

Full Function Radio Altimeter MMK-4

The MMK-4 altimeter is a full-function radio altimeter that meets aerospace standards; serving as a key component for longitudinal altitude channel control, it can be widely applied in cruise missiles and aircraft to measure altitude relative to the sea or ground. The MMK-4 adopts linear modulation coefficient technology adaptive to height changes and echo signal narrow-band receiving technology to enhance the product’s resistance to active interference, uses coherent local oscillator mixing to achieve superior performance in resisting co-frequency asynchronous interference, employs echo signal spectrum front detection technology to improve tracking accuracy, and follows the design principles of serialization, standardization, and modularization—endowing it with good product inheritance, maturity, and reliability.