Products and Applications
One-click auto-start, no debugging required; all core components are independently developed, with strong environmental adaptability and support for wide-temperature operation.
Haomin Optoelectronics has introduced GHz‑repetition‑rate‑locked femtosecond optical combs and GHZ‑level femtosecond light sources tailored for these applications. Featuring a unique cavity design, these devices achieve fundamental‑frequency mode locking, with repetition rates customizable from 500 MHz to 2.5 GHz, ensuring stable long‑term operation even under external environmental disturbances. A newly upgraded control system and a fully enclosed industrial‑grade design further enable reliable, continuous performance in demanding industrial settings. This product family finds broad application in electromagnetic spectrum sensing, gas‑molecule analysis, low‑phase‑noise high‑frequency microwave generation, nonlinear optical microscopy, dual‑comb ranging, and other advanced scenarios.
Haomin Optoelectronics has launched a family of paired RF‑optical modules that deliver full‑band coverage from low to high frequencies. Thanks to our proprietary circuit design and innovative module packaging, we can offer products with a 3 dB bandwidth extending up to 10 GHz, while also providing compact, miniaturized form factors tailored to these modules. In addition, recognizing the need for gain control and signal monitoring in certain applications, we have introduced dedicated models featuring adjustable gain. All of our RF‑optical modules achieve an SFDR exceeding −100 dB. This exceptionally broad frequency‑band coverage meets the requirements of most 4G, 5G, and 6G transmission systems, as well as the RF carrier needs of a wide range of industrial‑control, monitoring, and sensing applications.
Haomin Optoelectronics offers quantum computing system solutions: a fully locked optical comb, highly efficient spectral broadening via all‑fiber photonic chips, and APD beat‑frequency detection.
The micro-comb, often hailed as the “chip‑scale optical frequency comb,” represents another groundbreaking leap in optical comb technology following mode‑locked lasers. By coupling a continuous-wave laser into a high‑Q straight‑line optical microcavity and exploiting the cavity’s nonlinear Kerr effect, it generates equally spaced frequency components, enabling coherent interconnection across the microwave–optical spectrum on a chip‑scale platform.
Haomin Optoelectronics’ THz‑CWG series delivers a stable, tunable continuous‑wave terahertz signal source. By integrating a highly stable optical frequency comb with a robust lock‑in system, we have addressed key industry challenges—namely, the limited tuning range and significant phase jitter of conventional continuous‑wave THz sources—enabling one‑button output and digitally controlled, industrial‑grade stability. Through extensive optimization to minimize user‑interface complexity, the system can be housed in a standard rack‑mount enclosure, maximizing space efficiency and facilitating deployment from laboratory settings to field‑test environments.