Products
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KG-AOM-1064-100M-PP-FA | 1064 Series Acousto-Optic ModulatorThe KG-AOM-1064-100M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-1064-80M-PP-FA | 1064 Series Acousto-Optic ModulatorThe KG-AOM-1064-80M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-980-200M-PP-FA | 980 Series Acousto-Optic ModulatorThe KG-AOM-980-200M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-980-100M-PP-FA | 980 Series Acousto-Optic ModulatorThe KG-AOM-980-100M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-850-200M-PP-FA | 850 Series Acousto-Optic ModulatorThe KG-AOM-850-200M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-850-100M-PP-FA | 850 Series Acousto-Optic ModulatorThe KG-AOM-850-100M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-850-80M-PP-FA | 850 Series Acousto-Optic ModulatorThe KG-AOM-850-80M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-780-200M-PP-FA | 780 Series Acousto-Optic ModulatorThe KG-AOM-780-200M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-780-100M-PP-FA | 780 Series Acousto-Optic ModulatorThe KG-AOM-780-100M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-780-80M-PP-FA | 780 Series Acousto-Optic ModulatorThe KG-AOM-780-80M-PP-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-632-100M-SS-FA | 632 Series Acousto-Optic ModulatorThe KG-AOM-632-100M-SS-FA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications. -
KG-AOM-632-80M-SS-FA | 632 Series Acousto-Optic ModulatorThe KG-AOM-632-80M-SS-FAA is an acousto-optic modulator based on tellurium dioxide (TeO2) material, featuring low insertion loss and stable physicochemical properties, and is therefore widely used in fiber optic sensing, Q-switched laser systems, pulse shaping, and intensity modulation applications.




















