Integrating sphere detector
A detector and integrating sphere technology, applied in the field of optical parameter testing, can solve the problem of low optical power density of diffuse coating, and achieve the effect of solving the problem of accurate measurement
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Embodiment 1
[0032] Embodiment 1 of the present invention provides an integrating sphere detector, including a hollow spherical shell, a light entrance hole and a sampling hole arranged on the hollow spherical shell, and a cooling device attached to the outside of the hollow spherical shell , for cooling the hollow spherical shell.
[0033] The cooling device can at least have the following implementation forms: use liquid cooling, use refrigeration units for cooling or use semiconductor refrigerators for cooling, and the present invention does not limit the cooling form.
[0034] The integrating sphere detector provided by Embodiment 1 of the present invention has an integrating sphere that can receive light with any divergence angle; it also has a cooling device that can take away the heat generated by the integrating sphere at any time during the use of the integrating sphere detector, thereby Meet the measurement requirements of light with different powers. The integrating sphere dete...
Embodiment 2
[0036] figure 1 The schematic diagram of the integrating sphere detector provided for the second embodiment of the present invention, combined below figure 1 Embodiment 2 of the present invention will be described in detail. Embodiment 2 of the present invention provides an integrating sphere detector, which includes a hollow spherical shell 1, and a light entrance hole 2 and a sampling hole 3 arranged on the hollow spherical shell, and also includes a cooling device 4 attached to the The outer side of the hollow spherical shell 1 is used for cooling the hollow spherical shell 1 .
[0037] A preferred implementation of the cooling device 4 is as follows: the cooling device 4 includes an outer spherical shell 5, which is covered on the outside of part or all of the hollow spherical shell 1, and a cooling channel 6 is formed between the outer spherical shell 5 and the hollow spherical shell 1, and the outer spherical shell 5 The shell 5 is provided with a coolant inlet 7 and a...
Embodiment 3
[0043] figure 2 The schematic diagram of the integrating sphere detector provided for the third embodiment of the present invention, combined below figure 2 Embodiment 3 of the present invention will be described in detail. The difference between the third embodiment and the second embodiment lies in the implementation of the cooling device. Embodiment 3 of the present invention provides an integrating sphere detector, which includes a hollow spherical shell 1, a light entrance hole 2 and a sampling hole 3 arranged on the hollow spherical shell 1, and a cooling device attached to the hollow spherical shell 1. The outer side of the spherical shell 1 is used for cooling the hollow spherical shell 1 .
[0044] An optional implementation of the cooling device is as follows: the cooling device includes a semiconductor refrigerator 9 , and the semiconductor refrigerator 9 is attached to the outside of part or all of the hollow spherical shell 1 for cooling the hollow spherical s...
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