MULTI-CHANNEL ARRAY TYPE OPTICAL SENSING DEVICE AND MANUFACTURING METHOD THEREOF
20220099488 · 2022-03-31
Inventors
- Shuo-Ting YAN (Hsinchu City, TW)
- I-Hua Wang (Hsinchu City, TW)
- Chen-Chung CHANG (Hsinchu City, TW)
- Tsung-Jui LIN (Hsinchu City, TW)
Cpc classification
G01J3/0291
PHYSICS
International classification
Abstract
Disclosed are a multi-channel array type optical sensing device and its manufacturing method, and the device includes an encapsulating housing and at least one electrical contact on a side of the encapsulating housing. The encapsulating housing includes a printed circuit board, a light receiving unit, and a filter array for receiving an external incident light and converting the external incident light into a multi-channel optical signal with a non-continuous wavelength. The light receiving unit is electrically connected to the printed circuit board for receiving the multi-channel optical signal. The printed circuit board is provided for transmitting the multi-channel optical signal to the outside through the at least one electrical contact. With a simple design, the multi-channel array type optical sensing device becomes an optical component with the features of low cost and easily extended application and suitable for the spectral analysis of various testing objects.
Claims
1. A multi-channel array type optical sensing device, comprising: an encapsulating housing, having at least one electrical contact disposed on a side of thereof the encapsulating housing; a filter array having a plurality of filters of different wavelengths, installed in the encapsulating housing, receiving an external incident light, and converting the external incident light into a multi-channel optical signal with a non-continuous wavelength; a light receiving unit, encapsulated into the encapsulating housing, disposed under the filter array, and receiving the multi-channel optical signal; a reflective light shielding layer disposed between adjacent filters of the plurality of filters of the filter array to limit a stray light distribution of the multi-channel optical signal; and a printed circuit board, encapsulated into the encapsulating housing, electrically coupled between the light receiving unit and the at least one electrical contact, and transmitting the multi-channel optical signal to the outside out through the at least one electrical contact.
2. The multi-channel array type optical sensing device as claimed in claim 1, wherein the filter array is an array type glass filter unit having the plurality of filters installed thereon.
3. The multi-channel array type optical sensing device as claimed in claim 1, wherein the filter array is formed by the plurality of filters.
4. The multi-channel array type optical sensing device as claimed in claim 1, wherein the light receiving unit is a photodiode array.
5. (canceled)
6. The multi-channel array type optical sensing device as claimed in claim 1, further comprising a transparent protective layer disposed above the filter array.
7. A manufacturing method of a multi-channel array type optical sensing device, comprising the steps of: providing an encapsulating housing, and installing at least one electrical contact on a side of the encapsulating housing; installing a filter array in the encapsulating housing, and using the filter array to receive an external incident light and convert the external incident light into a multi-channel optical signal with a non-continuous wavelength, wherein the filter array has a plurality of filters of different wavelengths; installing a light receiving unit under the filter array to receive the multi-channel optical signal; providing a reflective light shielding layer between adjacent filters of the plurality of filters of the filter array to limit a stray light distribution of the multi-channel optical signal; and electrically coupling a printed circuit board between the light receiving unit and the at least one electrical contact to transmit the multi-channel optical signal to the outside through the at least one electrical contact.
8. The manufacturing method of a multi-channel array type optical sensing device as claimed in claim 7, wherein the filter array is an array type glass filter unit having the plurality of filters installed thereon.
9. The manufacturing method of a multi-channel array type optical sensing device as claimed in claim 7, wherein the filter array is comprised of the plurality of filters.
10. The manufacturing method of a multi-channel array type optical sensing device as claimed in claim 7, wherein the light receiving unit is a photodiode array.
11. (canceled)
12. The manufacturing method of a multi-channel array type optical sensing device as claimed in claim 7, further comprising the step of providing a transparent protective layer disposed above the filter array.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0026] To make it easier for our examiner to understand the objective of the invention, its structure, innovative features, and performance, we use a preferred embodiment together with the attached drawings for the detailed description of the invention.
[0027] The directional terms and their similar terms used in the specification of the present invention such as “front”, “rear”, “left”, “right” “up (top)”, down (bottom)”, “inside”, “outside”, “side”, etc. are primarily used by referring the directions of the attached drawings, and the directional terms, or their similar terms just only used for assisting the description and illustration of each embodiment of the present invention, but not intended for limiting the scope of the present invention.
[0028] With reference to
[0029] The encapsulating housing 11 comprises a printed circuit board 14, a light receiving unit 13 and a filter array 12. The filter array 12 is an array type glass filter unit for receiving external incident light. With reference to
[0030] The light receiving unit 13 is a photodiode array electrically coupled to the printed circuit board 14. In other embodiments, the light receiving unit ‘3 can be fixed onto the printed circuit board 14 for receiving a multi-channel optical signal with a non-continuous wavelength. The multi-channel optical signal is transmitted by the light receiving unit 13 to the printed circuit board 14, and the printed circuit board 14 transmits the multi-channel optical signal to the outside through the at least one electrical contact 15.
[0031] With reference to
[0032] The multi-channel array type optical sensing device 10 of the present invention further comprises a reflective light shielding layer 16 installed between the filter array 12 and the light receiving unit 13 for limiting a stray light distribution of the multi-channel optical signal to avoid the output of stray light from affecting the testing result.
[0033] With reference to
[0034] With reference to
[0035] With reference to
[0036] By using the filter array formed by the filters of different wavelengths for the division of light, and the non-continuous light division method for the biological test, the manufacturing cost of the multi-channel array type optical sensing device of the present invention can be reduced significantly, and the light characteristics of the testing object can be used for the configuration of the wavelength of the filters of the filter array. In addition, the stacked structure of the optical components of the multi-channel array type optical sensing device of the present invention is not complicated, so as to achieve the effects of miniaturizing the optical structure, simplifying the assembling process, reducing the consumption of materials, lowering the level of difficulty, and also providing easily extended applications for various spectral analyses (such as the sweetness of fruits, pesticide detection of vegetables, analysis of biomedical samples and application and development of photoelectric technology, etc.), which assists general home/life testing and overcomes the drawbacks of the prior art.
[0037] While the invention has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the invention set forth in the claims.