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1550nm phase modulator 300 MHz

The PM-1550-300-PA phase modulator is a high-performance LiNbO3 modulator with a bandwidth of up to 300MHz. This modulator can provide phase modulation with low driving voltage. Its low insertion loss provides maximum transmission power. The PM-1550-300-PA modulator uses polarization maintaining (PM) input and output fibers, making it easy to integrate with other optical components.

Product InformationModel Wavelength RangeBandwidth Operate

1550nm Phase Modulator 300 MHz MP-EOM-PM-1550-300M-PA 1525-1570nm300MHz Add to Cart

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1064nm lithium niobate phase modulator

1064nm 300MHz lithium niobate electro-optic phase modulator is used to prepare optical waveguides using proton exchange technology. The modulator electrodes are designed in the form of lumped electrodes, and the input/output fibers are precisely diagonally coupled with the waveguides. The electro-optic effect of lithium niobate material is utilized to achieve phase modulation of optical signals passing through the optical waveguides.

Product InformationModel Operating Wavelength Operating Frequency Operate

1064nm Lithium Niobate Phase Modulator MP-EOM-PM-300M-FA 950-1150nm 300MHz Add to Cart

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1064/1310/1550 nm lithium niobate high-frequency phase modulator (10/20 GHz electro-optic bandwidth)

1064/1310/1550 nm lithium niobate (LiNbO3) high-frequency phase modulator uses titanium diffusion or proton exchange technology to fabricate optical waveguides. The input and output fibers are precisely diagonally coupled with the waveguides, and the electro-optic effect of lithium niobate material is utilized to achieve phase modulation of optical signals. Ti diffusion or proton exchange (APE) waveguide processes can respectively achieve phase modulation with birefringence or single polarization.

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1550nm polarization maintaining lithium niobate 10Gb/s intensity modulator (20 and 40GHz optional)

The lithium niobate (LiNbO3) intensity modulator is made of titanium diffusion or proton exchange technology to fabricate Mach Zehnder type optical waveguides. The input and output fibers are precisely diagonally coupled with the waveguides, and the electro-optic effect of lithium niobate material is utilized to achieve intensity modulation of optical signals. Available (20 and 40GHz optional)

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1064/1310/1550 nm lithium niobate high-frequency phase modulator (40GHz electro-optic bandwidth)

1064/1310/1550 nm lithium niobate (LiNbO3) high-frequency phase modulator uses titanium diffusion or proton exchange technology to fabricate optical waveguides. The input and output fibers are precisely diagonally coupled with the waveguides, and the electro-optic effect of lithium niobate material is utilized to achieve phase modulation of optical signals. Ti diffusion or proton exchange (APE) waveguide processes can respectively achieve phase modulation with birefringence or single polarization.

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1310nm lithium niobate 3GHz intensity modulator

Microphotons' lithium niobate (LiNbO3) intensity modulator uses titanium diffusion or proton exchange technology to fabricate Mach Zehnder type optical waveguides. The input-output fibers are precisely diagonally coupled with the waveguides, and the electro-optic effect of lithium niobate material is utilized to achieve intensity modulation of optical signals

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1550nm (polarization maintaining) lithium niobate 2.5Gb/s intensity modulator

Microphotons' lithium niobate (LiNbO3) intensity modulator uses titanium diffusion or proton exchange technology to fabricate Mach Zehnder type optical waveguides. The input and output fibers are precisely diagonally coupled with the waveguides, and the electro-optic effect of lithium niobate material is utilized to achieve intensity modulation of optical signals.

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