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zero order waveplates

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품질 대형 필드 각도 광학 파장판 12.7mm 트루 제로 오더 파장판 공장

대형 필드 각도 광학 파장판 12.7mm 트루 제로 오더 파장판

True Zero Order Λ/2 Half Wave Plate, Large Feild Angle, For Imaging Systems Overview: Comparing with normal two plates design Zero order waveplates having a relatively larger thickness which reduces the field angle, the True zero order wave plates are made of a very thin plate or cemented with a BK7 substrate, which ensures the best possible field angle, temperature and wavelength performance. True zero order waveplate is widely used in laser Lab and optical instrument. True

품질 λ/4 Quarter Zero Order Waveplate 공장

λ/4 Quarter Zero Order Waveplate

True Zero Order λ/4 Quarter Wave Plate, Large Feild Angle, for imaging systems Overview: Comparing with normal two plates design Zero order waveplates having a relatively larger thickness which reduces the field angle, the True zero order wave plates are made of a very thin plate or cemented with a BK7 substrate, which ensures the best possible field angle, temperature and wavelength performance. If the angle between the electric field vector of the linearly polarized

품질 광학적으로 접촉된 영차 파장판 25.4mm 파장판 광학 공장

광학적으로 접촉된 영차 파장판 25.4mm 파장판 광학

Optically Contacted Zero Order Λ/2 Half Wave Plate, Optical Path Glue-Free Overview: Optically contacted zero order wave plate is made from two multiple order plates with slightly different thicknesses. The two plates are constructed by optically contacted method and this design allows the optically contacted zero order waveplate to operate well in relatively high power application and wide wavelength range. Optically contacted zero order waveplates also feature particularly

품질 공기 간격을 둔 0차 반파판 355nm 높은 손상 임계값 공장

공기 간격을 둔 0차 반파판 355nm 높은 손상 임계값

Air Spaced Zero Order λ/2 Half Wave Plate, High Damage Threshold Overview: Air spaced zero order waveplate is built by placing a spacing ring between the two multi-order wave plates to form an air gab between them. The slow axis of one waveplate is aligned with the fast axis of the other waveplate. The slightly different thickness of the two multi order waveplates is chosen to achieve the required retardance. Air spaced zero order waveplate is designed for high damage

품질 266nm 제로 오더 4분의 1 파장판 20Hz 지원 고성능 레이저 공장

266nm 제로 오더 4분의 1 파장판 20Hz 지원 고성능 레이저

Air Spaced Zero Order λ/4 Quarter Wave Plate, High Damage Threshold Overview: Air spaced zero order wave plate is built by placing a spacing ring between the two multi-order wave plates to form an air gab between them. The slow axis of one waveplate is aligned with the fast axis of the other waveplate. To achieve the required retardace will request carefully match the thickness differences of the two multi order waveplates. For high power lasers and applications require to

품질 SHG 레이저 이중 파장 파장판 1064nm Zero Order 공장

SHG 레이저 이중 파장 파장판 1064nm Zero Order

Dual Wavelength Waveplate, Dual-wavelength Light Source, SHG Lasers Overview: Dual Wavelength Wave plate is designed to simultaneously meet specific retardation at two individual wavelengths in applications for dual-wavelength light source according to the fitting of the refractive index at different wavelengths. Dual Wavelength Waveplates are particularly useful when used in conjunction with other polarization-sensitive components to separate coaxial laser beams of different

품질 20mm 광학 파장판 광학 경로 접착제가 없는 석영 파장판 공장

20mm 광학 파장판 광학 경로 접착제가 없는 석영 파장판

Optically Contacted Zero Order Λ/4 Quarter Wave Plate, Optical Path Glue-Free Overview: Optically contacted zero order waveplate is made from two multiple order plates with slightly different thicknesses. The two plates are constructed by optically contacted method and this design allows the optically contacted zero order waveplate to operate well in relatively high power application and wide wavelength range. The slow axis of one waveplate is aligned with the fast axis of

품질 크리스탈 석영 광 파장판 38.1mm 넓은 파장 대역폭 공장

크리스탈 석영 광 파장판 38.1mm 넓은 파장 대역폭

Cemented Zero Order λ/4 Quarter Wave Plate, High Retardance Overview: Cemented zero order wave plate is constructed by two quartz plates with their fast axis crossed. The retardance is determined by the difference in thickness between the two quartz plates. The main difference between cemented zero order waveplates and other kind of waveplates is they have epoxy on its optical path as the two quartz plates are glued with each other by UV epoxy. However, cemented zero order

품질 20ns 광학 파장판 시멘트가 발라진 반파판 지체 1310nm 공장

20ns 광학 파장판 시멘트가 발라진 반파판 지체 1310nm

Cemented Zero Order λ/2 Half Wave Plate, High Retardance Overview: Cemented zero order wave plate is constructed by two quartz plates with their fast axis crossed. The two plates are cemented by UV epoxy. The difference in thickness between the two plates determines the retardance. Zero order waveplate features better performance than multiple order waveplate, as zero order waveplate has lower sensitivity to temperature and wavelength changes. Main Features of Cemented Zero

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