Acousto-Optic Modulator / Frequency Shifter 1064nm 200MHz -AOM-1064-200M-05-A-G6-PM980-1-1-1-FA

Specifications

Center Wavelength: 1064 nm
Operational Wavelength Range: 1030 – 1090 nm
Acoustic Mode: Transverse, Longitudinal
Operating Frequency: 200 MHz
Light Polarization: Linear
Optical Power Density: Not Specified
Deflection Angle: Not Specified
Interaction Material: TeO2 (Tellurium Dioxide)
Ultrasonic Velocity: 4200 m/s
Insertion Loss: 2.5 dB
Extinction Ratio (Turn On/Off): 50 dB
Polarization Extinction Ratio: 18 dB
Rise-Time/Fall-Time: 10 ns
Return Loss: 40 dB
Voltage Standing Wave Ratio (VSWR): 1.2:1
Average Optical Power: 0.5 W
Peak Optical Power (Pulse): 1 kW
Input Impedance: 50 Ω
RF Power: 2.5 W
Device Interface: SMA
Fiber Type: PM980
Fiber Length: 1 m
Fiber Connector: FC/APC
Operating Temperature: -20 to +60 ℃
Storage Temperature: -30 to +70 ℃
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Features

Fast Modulation Speed: Enables rapid adjustment of light intensity and frequency, meeting the demands of high-speed applications.

Low Insertion Loss: Minimizes light signal loss during modulation, ensuring efficient transmission and reduced energy consumption.

High Extinction Ratio: Guarantees effective separation of light states, contributing to signal clarity and reduced noise.

Robust Design: All-metal structure and hermetic packaging ensure durability, resilience, and protection against environmental factors.

Wide Operating Range: Adaptable to a variety of wavelengths (300 nm to 2000 nm) and frequencies (35 MHz to 300 MHz), offering versatility for diverse optical applications.

Temperature Stability: Innovative packaging technology guarantees stable performance across varying temperature conditions.

Customizable Options: Available in both free space and fiber-coupled configurations to suit specific project needs.

Applications

Q-Switched Fiber Lasers: Ideal for pulse generation in Q-switched fiber lasers, contributing to applications in material processing, medical therapy, and research.

Laser Doppler Coherent Applications: Suitable for modulating lasers in Doppler systems, aiding in velocity and vibration measurements in fluid dynamics and diagnostics.

Ultrafast Laser Frequency Pulse Pickers: Essential for selecting and controlling ultrafast laser pulses, enabling applications in spectroscopy, microscopy, and time-resolved studies.

Linear Frequency Adjustment: Facilitates precise adjustment of laser frequency for applications in communication, signal processing, and spectroscopy.

Multispectral Imaging: Useful in modulating lasers for multispectral imaging in medical diagnostics, environmental monitoring, and remote sensing.

Optical Communication: Plays a crucial role in modulating light signals for optical communication systems, enhancing data transmission and network connectivity.

Research and Development: A valuable tool for academic and industrial research, aiding in the development of new optical technologies and applications.