Prosecution Insights
Last updated: August 17, 2026
Application No. 18/953,449

OPTICAL ARRANGEMENT AND METHOD OF REDUCING REFLECTIONS IN CAMERA, AND CAMERA

Non-Final OA §103§112
Filed
Nov 20, 2024
Examiner
CHANG, AUDREY Y
Art Unit
2872
Tech Center
2800 — Semiconductors & Electrical Systems
Assignee
Varjo Technologies Oy
OA Round
1 (Non-Final)
47%
Grant Probability
Moderate
1-2
OA Rounds
1y 8m
Est. Remaining
67%
With Interview

Examiner Intelligence

Grants 47% of resolved cases
47%
Career Allowance Rate
591 granted / 1268 resolved
-21.4% vs TC avg
Strong +20% interview lift
Without
With
+20.2%
Interview Lift
resolved cases with interview
Typical timeline
3y 5m
Avg Prosecution
74 currently pending
Career history
1324
Total Applications
across all art units

Statute-Specific Performance

§101
0.7%
-39.3% vs TC avg
§103
48.6%
+8.6% vs TC avg
§102
9.5%
-30.5% vs TC avg
§112
35.1%
-4.9% vs TC avg
Black line = Tech Center average estimate • Based on career data from 1268 resolved cases

Office Action

§103 §112
DETAILED ACTION Notice of Pre-AIA or AIA Status The present application, filed on or after March 16, 2013, is being examined under the first inventor to file provisions of the AIA . Remark This Office Action is in response to applicant’s preliminary amendment filed on November 20, 2024, which has been entered into the file. By this amendment, the applicant has amended claims 1-16. Claims 1-16 remain pending in this application. Claim Rejections - 35 USC § 112 The following is a quotation of the first paragraph of 35 U.S.C. 112(a): (a) IN GENERAL.—The specification shall contain a written description of the invention, and of the manner and process of making and using it, in such full, clear, concise, and exact terms as to enable any person skilled in the art to which it pertains, or with which it is most nearly connected, to make and use the same, and shall set forth the best mode contemplated by the inventor or joint inventor of carrying out the invention. The following is a quotation of the first paragraph of pre-AIA 35 U.S.C. 112: The specification shall contain a written description of the invention, and of the manner and process of making and using it, in such full, clear, concise, and exact terms as to enable any person skilled in the art to which it pertains, or with which it is most nearly connected, to make and use the same, and shall set forth the best mode contemplated by the inventor of carrying out his invention. Claim 7 is rejected under 35 U.S.C. 112(a) or 35 U.S.C. 112 (pre-AIA ), first paragraph, as failing to comply with the enablement requirement. The claim(s) contains subject matter which was not described in the specification in such a way as to enable one skilled in the art to which it pertains, or with which it is most nearly connected, to make and/or use the invention. Claim 7 recites the phrase “the filter is a bandpass filter” but the specification and claim fail to teach how the filter with a curved of first surface and a second surface opposite the first curved surface would be a bandpass filter, i.e. to have filter function that filters certain bandpass of light. The specification also does not teach how could bandpass filter is capable of reducing the reflection between the filter and the light sensitive surface. The specification does not enable the claim. The following is a quotation of 35 U.S.C. 112(b): (b) CONCLUSION.—The specification shall conclude with one or more claims particularly pointing out and distinctly claiming the subject matter which the inventor or a joint inventor regards as the invention. The following is a quotation of 35 U.S.C. 112 (pre-AIA ), second paragraph: The specification shall conclude with one or more claims particularly pointing out and distinctly claiming the subject matter which the applicant regards as his invention. Claim 11 is rejected under 35 U.S.C. 112(b) or 35 U.S.C. 112 (pre-AIA ), second paragraph, as being indefinite for failing to particularly point out and distinctly claim the subject matter which the inventor or a joint inventor (or for applications subject to pre-AIA 35 U.S.C. 112, the applicant), regards as the invention. Claim 11 recites the phrase “the cover and the cover surface” that is confusing and indefinite since it lacks proper antecedent basis from its based claim. Claim Rejections - 35 USC § 103 In the event the determination of the status of the application as subject to AIA 35 U.S.C. 102 and 103 (or as subject to pre-AIA 35 U.S.C. 102 and 103) is incorrect, any correction of the statutory basis (i.e., changing from AIA to pre-AIA ) for the rejection will not be considered a new ground of rejection if the prior art relied upon, and the rationale supporting the rejection, would be the same under either status. The following is a quotation of 35 U.S.C. 103 which forms the basis for all obviousness rejections set forth in this Office action: A patent for a claimed invention may not be obtained, notwithstanding that the claimed invention is not identically disclosed as set forth in section 102, if the differences between the claimed invention and the prior art are such that the claimed invention as a whole would have been obvious before the effective filing date of the claimed invention to a person having ordinary skill in the art to which the claimed invention pertains. Patentability shall not be negated by the manner in which the invention was made. Claim(s) 1-11 and 16 is/are rejected under 35 U.S.C. 103 as being unpatentable over US patent application publication by Alspach et al (US 2019/0091872 A1) in view of the patent issued to Carney et al (PN. 9,684,115) and US patent application publication by Singer et al (US 2018/0299678 A1). Alspach et al teaches, with regard to claims 1 and 16, an optical arrangement for reducing reflection in a camera, (please see Figures 1 and 5) wherein the arrangement is comprised of an image sensor (130), comprising a light-sensitive surfaced and an optical filter layer (123, Figure 5) arranged at a first distance from the light sensitive surface along an optical axis of the optical arrangement. The optical filter layer (123) is to reduce glare or improper reflection of one or more optical signals emitted by the sensor (130, please see paragraph [0034]). Alspach et al teaches that the optical filter layer (123) may comprise a coating or a pattern applied to a membrane. The optical filter layer implicitly comprises a first curved surface facing the light sensitive surface and a second curved surface opposite to the first curved surface. This reference however does not teach explicitly that the optical filter layer or filter is configured to reflect the light between the first curved surface and the second curved surface inside the filter. Carney et al in the same field of endeavor teaches a curved waveguide (120, Figure 1C) that has a first curved surface and a second curved surface opposite to the first curved surface that is capable of eliminating glare or stray light reflection, (please see column 3, lines 4-5). Carney et al teaches that the light enters inside the curved waveguide that will undergo reflection within the curved waveguide, (please see column 5, lines 37-39). As demonstrated by Singer et al light enters curved waveguide at an incident angle greater than critical angle of the curved waveguide will undergo total internal reflection between the first curved surface and the second curved surface, (please see 12A). This means the curved waveguide will trap the light enters the waveguide, at angle greater than critical angle, will be trapped within the waveguide so that the glare or unwanted stray light will be eliminated. It would then have been obvious to one skilled in the art to apply the teachings of Carney et al and Singer et al to modify the optical filter layer to include a structure of curved waveguide for the benefit of using curved waveguide to trap the unwanted reflection light (specifically from the sensor to the optical filter) for the benefit of reducing the unwanted glare. In light of Alspach et al, Carney et al and Singer et al the light sensitive surface of the sensor (130, Figure 1) is configured to receive light and reflect the received light toward the optical filter layer. With regard to claim 16, the optical arrangement taught by Alspach et al in light of Carney et al and Singer et al, as described in claim 1 above, also implicitly teaches the method of reducing reflections in a camera, (please see paragraph [0034] of Alspach et al) implemented by the optical arrangement, (please see Figures 1 and 5). Alspach et al teaches the optical arrangement is comprised of an image sensor (130), comprising a light-sensitive surfaced and an optical filter layer (123, Figure 5), serves as the filter having a first curved surface that faces the light sensitive surface of the image sensor (130) and a second surface that is opposite to the first curved surface. The method comprises receiving light on the light sensitive surface of the image sensor (130), reflecting the light towards the filter (123) that is arranged at a first distance from the light sensitive surface along an optical axis of the optical arrangement. In light of curved waveguide taught by the Carney et al in combination with the teachings of Singer et al, (details stated above) the reflecting the light between the first curved surface and the second surface inside the filter to reduce reflection between the filter and the light-sensitive surface. With regard to claim 2, Alspach et al teaches that the image sensor comprises a cover (135, Figure 6) having cover surface. With regard to claim 3, Alspach et al does not teach explicitly that the first distance is ranged from 0.1 mm up to 10 mm, however such modification is considered to be obvious matters of design choice for the benefit of providing a suitable size of the camera. With regard to claim 4, Alspach et al in light of Carney et al and Singer et al teaches that the second surface is curved. With regard to claim 5, Alspach et al in light of Carney et al and Signer et al teaches that a curvature of the first curved surface matches a curvature of the second surface, (please see 123, Figure 5 of Alspach et al, 120, Figure 1C of Carney et al and 42, Figure 12A of Singer et al). With regard to claim 6, these references do not teach explicitly that the radius of the curvature of at least one of the first curved surface, the second curved surface lies in the range from 1 millimeters to 300 millimeters. But Carney et al does teach that the curvature of the curved waveguide is designed to allow glare being eliminated, (please see column 3, lines 1-5). It is therefore within general level skills in the art to modify and design the radius of curvature of the surfaces to achieve the stray reflection light elimination. With regard to claim 7, these references do not teach explicitly that the optical filter is a bandpass filter. However, this claim is rejected under 35 UDC 112, first paragraph for the reasons set forth above. Since the specification fails to teach how could the passband filtering have anything to do with the reducing of reflection light from the sensor, such feature can only be examined as an arbitrary feature of the filter that does not relate to the reduction of the reflection. It would then have been obvious to one skilled in the art to make the optical filter also has certain wavelength filtering property such as infrared filter this is provided in a typical camera. With regard to claim 8, Alspach et al teaches that the camera may comprise a time-of-flight sensor, which makes the camera either a direct or indirect time-of-flight camera (please see paragraph [0028]). With regard to claim 9, Carney et al teaches that the curve waveguide serves as the optical filter may comprise glass, (please see column 3, lines 6-8). With regard to claim 10, these references do not teach explicitly that the optical filter is manufactured using hot forming, however this limitation is considered as product-by-process that is not given patentability for it does not differentiate final product from prior art, (please see MPWP 2173.05(p)). With regard to claim 11, Alspach et al does not teach explicitly that the cover of the sensor is made of glass. However, such modification is considered to be obvious matters of design choice one skilled in the art since it has been held to be within the general skill of a worker in the art to select a known material on the basis of its suitability for the intended used as a matter of obvious design choice. In re Leshin, 125 USPQ 416. Claim(s) 12-15 is/are rejected under 35 U.S.C. 103 as being unpatentable over Alspach et al, Carney et al and Singer et al as applied to claim 1 above, and further in view of US patent application publication by Webster et al (US 2019/0132537 A1). The optical arrangement for reducing reflection in a camera taught by Alspach et al in combination with the teachings of Carney et al and Singer et al as described in claim 1 has met all the limitations of the claims. With regard to claim 12, Alspach et al teaches a time-of-flight camera, (please see paragraph [0028]) comprises the optical arrangement, (please see Figures 1, 3 and 5). This reference does not teach explicitly that camera comprises light source and a lens as claimed. Webster in the same field of endeavor teaches a time of flight camera that is comprised of an optical element comprises the sensor (120, Figure 1), a lens (116) arranged in front of the optical arrangement wherein an optical axis of the optical arrangement coincide with an optical axis of the lens and a light source (102) that is arranged to emit light when in use wherein when in use the light source emits light that the light pass through the les and is incident at the optical arrangement, (please see Figure 1). It would then have been obvious to one skilled in the art to apply the teachings of Webster to explicitly make the camera comprises a lens and a light source. With regard to claim 13, Alspach et al in light of Webster would either implicitly or obvious modified by one skilled in the art to design the lens based on a curvature of the filter layer. With regard to claim 14, these references do not teach explicitly that the operation range of the image sensor in the optical arrangement is from 0.1 meter to 200 meters. However, for a typical camera, the operation range should be at least partially within the claimed range. With regard claim 15, Alspach et al teaches that the camera may comprise a time-of-flight sensor, which makes the camera either a direct or indirect time-of-flight camera (please see paragraph [0028]). Conclusion The prior art made of record and not relied upon is considered pertinent to applicant's disclosure. US patent application publication by Tsai et al (US 2022/0400193 A1) teaches a camera includes an arrangement that would reduce the reflection from the sensor. The arrangement includes an optical plate with first and second surfaces. US patent application publication by Grard et al (US 2025/0121766 A1) teaches a camera includes an optical deflection element to deflect multiple reflections of light to prevent light rays from returning to the optical lenses of the camera. Any inquiry concerning this communication or earlier communications from the examiner should be directed to AUDREY Y CHANG whose telephone number is (571)272-2309. The examiner can normally be reached M-TH 900AM-430PM. Examiner interviews are available via telephone, in-person, and video conferencing using a USPTO supplied web-based collaboration tool. To schedule an interview, applicant is encouraged to use the USPTO Automated Interview Request (AIR) at http://www.uspto.gov/interviewpractice. If attempts to reach the examiner by telephone are unsuccessful, the examiner’s supervisor, Stephone B Allen can be reached at 571-272-2434. The fax phone number for the organization where this application or proceeding is assigned is 571-273-8300. Information regarding the status of published or unpublished applications may be obtained from Patent Center. Unpublished application information in Patent Center is available to registered users. To file and manage patent submissions in Patent Center, visit: https://patentcenter.uspto.gov. Visit https://www.uspto.gov/patents/apply/patent-center for more information about Patent Center and https://www.uspto.gov/patents/docx for information about filing in DOCX format. For additional questions, contact the Electronic Business Center (EBC) at 866-217-9197 (toll-free). If you would like assistance from a USPTO Customer Service Representative, call 800-786-9199 (IN USA OR CANADA) or 571-272-1000. AUDREY Y. CHANG Primary Examiner Art Unit 2872 /AUDREY Y CHANG/Primary Examiner, Art Unit 2872
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Prosecution Timeline

Nov 20, 2024
Application Filed
Jul 30, 2026
Non-Final Rejection mailed — §103, §112 (current)

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Prosecution Projections

1-2
Expected OA Rounds
47%
Grant Probability
67%
With Interview (+20.2%)
3y 5m (~1y 8m remaining)
Median Time to Grant
Low
PTA Risk
Based on 1268 resolved cases by this examiner. Grant probability derived from career allowance rate.

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