info@idealphotonics.com

Active devices

  • EOM

    IdealPhotonics' electro-optic modulator is an optical device that utilizes electro-optic effects (such as the Pockels effect) to rapidly control optical wave parameters (such as phase, intensity, or polarization) through an applied electric field. It is widely used in optical communication and signal processing.By utilizing electro-optic effects (such as the Pockels effect) to rapidly modulate the phase, amplitude, or polarization state of light waves through an applied electric field, low-power, high-bandwidth optical signal modulation can be achieved.

  • AOM

    IdealPhotonics' acousto-optic modulator is a device that uses the acousto-optic effect (sound waves causing periodic changes in refractive index) to modulate the intensity, frequency, or direction of laser light. It features high speed, high extinction ratio, and wide wavelength adaptability, and is widely used in laser control and signal processing.It utilizes the ultrasonic diffraction effect to achieve high-speed, high-precision dynamic control of laser light (intensity/frequency/direction), combining wide wavelength adaptability, nanosecond-level response, and high extinction ratio.

  • Spatial Light Modulator

    IdealPhotonics' spatial light modulator is a two-dimensional optical device that dynamically controls the amplitude, phase, or polarization spatial distribution of a light field using electrical signals (voltage/light intensity). Its core function is to convert input information (such as computer images) into corresponding optical wavefront modulation.Based on an electrically controlled pixel array, it achieves real-time, high-precision dynamic control of the light field wavefront (amplitude/phase/polarization), combining high resolution, programmability, and multi-wavelength compatibility, providing modern optical systems with flexible light field manipulation capabilities.

  • MEMS grating modulator

    IdealPhotonics' MEMS grating modulator is a movable grating structure driven by microelectromechanical systems (MEMS) technology. It dynamically adjusts the diffraction efficiency or wavelength selection of light through mechanical displacement (such as electrostatic/electromagnetic actuation), achieving high-speed (kHz-MHz), low-power intensity modulation or spectral tuning. Its core applications are in fiber optic communication, spectrometers, and laser displays.Based on electrostatic/electromagnetic actuation of a micro/nanoelectromechanical movable grating, it achieves microsecond-level high-speed modulation of light intensity/wavelength (kHz-MHz response), combining low power consumption (μW level), high reliability (no thermal effect), and compact integration. It is suitable for fiber optic communication and high-precision spectral control.

  • 10+ 10 Years of Experience
  • 50 50 + Countries Bussiness
  • 10000 10k + Diodes sold worldwide
  • 30 30+ Invention patent
  • 10 10+ Advanced Optical Solutions

⇪