摘要:
A method of coating an optical substrate (102) with a transparent, electrically conductive coating includes depositing a semiconductor coating (104) over a surface of an optical substrate (102). The semiconductor coating (104) has broadband optical transmittance. Channels (105) are formed in the semiconductor coating (104). The method includes coating over the semiconductor coating (104) and filling the channels (105) with a doped semiconductor (106). The doped semiconductor (106) is removed from the semi-conductor coating (104), leaving the doped semiconductor (106) in the channels (105).
摘要:
An optical system (10) includes a housing (12), an imaging device (14) housed within the housing, and a window (100) in the housing (12) providing an optical path through the housing (12) to the imaging device. The window (100) includes a transparent substrate (102) and a coating (104) over the transparent substrate (102). The coating (104) is made of an electrically conductive semiconductor. The imaging device (14) is sensitive to and the coating (104) is transparent to at least one of MWIR and/or LWIR wavelengths.
摘要:
A method of coating an optical substrate (102) with a transparent, electrically conductive coating includes depositing a semiconductor coating (104) over a surface of an optical substrate (102). The semiconductor coating (104) has broadband optical transmittance. Channels (105) are formed in the semiconductor coating (104). The method includes coating over the semiconductor coating (104) and filling the channels (105) with a doped semiconductor (106). The doped semiconductor (106) is removed from the semi-conductor coating (104), leaving the doped semiconductor (106) in the channels (105).
摘要:
A method of coating an optical substrate (102) with a transparent, electrically conductive coating includes depositing a semiconductor coating (104) over a surface of an optical substrate (102), wherein the semiconductor coating (104) has broadband optical transmittance. A doped semiconductor (106) is applied in a pattern (108) over the semiconductor coating (104). The doped semiconductor (106) in the pattern is activated for electrical conductivity in the doped semiconductor (106).
摘要:
A method of coating an optical substrate (102) with a transparent, electrically conductive coating includes depositing a semiconductor coating (104) over a surface of an optical substrate (102). The semiconductor coating (104) has broadband optical transmittance. Channels (105) are formed in the semiconductor coating (104). The method includes coating over the semiconductor coating (104) and filling the channels (105) with a doped semiconductor (106). The doped semiconductor (106) is removed from the semi-conductor coating (104), leaving the doped semiconductor (106) in the channels (105).
摘要:
An optical system (10) includes a housing (12), an imaging device (14) housed within the housing, and a window (100) in the housing (12) providing an optical path through the housing (12) to the imaging device. The window (100) includes a transparent substrate (102) and a coating (104) over the transparent substrate (102). The coating (104) is made of an electrically conductive semiconductor. The imaging device (14) is sensitive to and the coating (104) is transparent to at least one of MWIR and/or LWIR wavelengths.
摘要:
A method of coating an optical substrate (102) with a transparent, electrically conductive coating includes depositing a semiconductor coating (104) over a surface of an optical substrate (102). The semiconductor coating (104) has broadband optical transmittance. Channels (105) are formed in the semiconductor coating (104). The method includes coating over the semiconductor coating (104) and filling the channels (105) with a doped semiconductor (106). The doped semiconductor (106) is removed from the semi-conductor coating (104), leaving the doped semiconductor (106) in the channels (105).