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Passive Autofocus (Two-Array Comparison)
Mark

Ṣẹ́dá nipasẹ̀

Mark

22. Oṣù Kẹsàn 2026FI
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Passive Autofocus (Two-Array Comparison)

Norman Stauffer at Honeywell built a focus detector from two rows of tiny light sensors side by side on one chip. In his FIGURE 2 each row views the subject through its own small lens, a short distance from the other - like the two windows of a rangefinder. How far one row's picture is shifted against the other's gives the subject's distance, and the camera sets the taking lens to match, without trial and error. Compact cameras from 1977 used it; later SLRs moved the same comparison behind the taking lens itself (phase detection). **US 4,002,899**, "Focus detecting apparatus", Stauffer, assigned to Honeywell, filed 31. October 1975, granted 11. January 1977: "radiation responsive elements formed on a single planar substrate and divided into two similar coplanar detector arrays lying immediately adjacent each other". **You see the principle with a card**: a two-hole mask gives a lens two viewpoints, just as Stauffer's two lenses do; out of focus the point splits in two, and which spot vanishes when you cover one hole tells you which way to focus.
Àárín
90 minutes

Ìlànà

1

Make the two-hole mask

Cut a card disc to fit a lens holder. Punch two 3 mm holes 20 mm apart, symmetric about the centre.

Àwọn ohun èlò fún ìgbésẹ̀ yìí:

Káàdì dúdú tí ó nípọnKáàdì dúdú tí ó nípọn1 ewé

Àwọn irinṣẹ́ tí a nílò:

Ọ̀bẹ Iṣẹ́ Ọwọ́Ọ̀bẹ Iṣẹ́ Ọwọ́
Ìwọ̀n IrinÌwọ̀n Irin
2

A point of light

Cover the torch with foil pierced by one pin-sized hole. Put it 2 m from the bench in a dim room.

Àwọn ohun èlò fún ìgbésẹ̀ yìí:

Bébà Alumíníọ̀mùBébà Alumíníọ̀mù1 ewé
Tépù ìbòmọ́lẹ̀Tépù ìbòmọ́lẹ̀1 ìyípo

Àwọn irinṣẹ́ tí a nílò:

Tọ́ọ̀ṣì LED fún àyẹ̀wòTọ́ọ̀ṣì LED fún àyẹ̀wò
Okùn Ìdíwọ̀nOkùn Ìdíwọ̀n
3

Split and join

Mount a 100 mm convex lens with the mask right in front of it, and a tracing-paper screen behind. Slide the screen: two spots merge into one exactly at focus. Measure their separation 5 and 10 mm either side of focus.

Àwọn ohun èlò fún ìgbésẹ̀ yìí:

Àkójọ ẹ̀rọ ìgbéhìn tí ó gbòÀkójọ ẹ̀rọ ìgbéhìn tí ó gbò1 ìtò
Yíyíká bébà ìtọpa àwòṣeYíyíká bébà ìtọpa àwòṣe1 ewé

Àwọn irinṣẹ́ tí a nílò:

Tábìlì ìmọ̀ ìmọ́lẹ̀ àti ojú irinTábìlì ìmọ̀ ìmọ́lẹ̀ àti ojú irin
Ìṣètò ìdìmú lẹ́ńsìÌṣètò ìdìmú lẹ́ńsì
Ìwọ̀n IrinÌwọ̀n Irin
4

Which way?

With the screen too close, cover the left hole and note which spot disappears. Repeat with the screen too far. The answer flips: that is the direction signal phase detection gives for free.
5

Triangles and correlation

Ń ṣí ìwé Jupyter…
6

History & Context

**What the patent specifies:** two similar, adjacent, coplanar arrays of radiation-sensitive elements on one substrate, whose outputs are compared to measure distance or focus. **Modern build (derived):** a Scheiner two-hole mask - two viewpoints and an image shift, made visible. Christoph Scheiner described the two-hole experiment in 1619 to study the eye's focusing. Honeywell's chips put it into cameras; today's phones put phase-detection pixels directly into the image sensor. Its limits: it needs contrast (a blank wall defeats it) and precise alignment between the detector and the lens.
Ìgbésẹ̀ 6 - Image 1

Àwọn ohun-èlò

5

Àwọn irinṣẹ́ tó nílò

6

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