[go: up one dir, main page]

SU122896A1 - Photoelectric photometer for measuring the degree of blackening of a negative - Google Patents

Photoelectric photometer for measuring the degree of blackening of a negative

Info

Publication number
SU122896A1
SU122896A1 SU620674A SU620674A SU122896A1 SU 122896 A1 SU122896 A1 SU 122896A1 SU 620674 A SU620674 A SU 620674A SU 620674 A SU620674 A SU 620674A SU 122896 A1 SU122896 A1 SU 122896A1
Authority
SU
USSR - Soviet Union
Prior art keywords
negative
blackening
measuring
degree
kinescope
Prior art date
Application number
SU620674A
Other languages
Russian (ru)
Inventor
Л.М. Котляр
р Л.М. Котл
Original Assignee
Л.М. Котляр
р Л.М. Котл
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Л.М. Котляр, р Л.М. Котл filed Critical Л.М. Котляр
Priority to SU620674A priority Critical patent/SU122896A1/en
Application granted granted Critical
Publication of SU122896A1 publication Critical patent/SU122896A1/en

Links

Landscapes

  • Photometry And Measurement Of Optical Pulse Characteristics (AREA)

Description

Известные фотометры дл  измерени  степени почернени  негатива с засн тыми на нем результатами наблюдениГ, например, астрономических и астрофизических, требуют много времени дл  получени  необходимых результатов измерений и дают отсчеты, пронорциональные только пропусканию негатива.Famous photometers for measuring the degree of blackening of a negative with results of observation on it, for example, astronomical and astrophysical, take a long time to obtain the necessary measurement results and give readings that are only proportional to the transmission of a negative.

Предлагаемый фотоэлектрический фотометр дл  измерени  степени почернени  негатива не имеет указанных недостатков. Прибор позвол ет значительно ускорить процесс измерений и обеспечивает получение иезультатов измерений, пропорциональных интенсивности светового потока , вызвавшего почернение соответствующих участков негатива. Достигаетс  это тем, что в приборе перед экраном электронно-лучевой трубки установлен держатель дл  закреплени  в нем исследуемого негатнза, за которым последовательно установлены два блока, состо щие нз лиизы , фотоумножител , усилител  и кинескопа, а между блоками помещена непрозрачна  маска, вырезанна  по форме характеристической кривой исследуемого негатива.The proposed photoelectric photometer for measuring the degree of blackening of a negative does not have these disadvantages. The device allows you to significantly speed up the measurement process and provides measurement results that are proportional to the intensity of the luminous flux that caused the blackening of the corresponding areas of the negative. This is achieved by the fact that in the device in front of the screen of the cathode ray tube there is a holder for fixing the negating material in it, behind which two blocks are successively installed, consisting of the lyse, photomultiplier, amplifier and kinescope, and an opaque mask is placed between the blocks characteristic curve of the studied negative.

Принципиальна  схема прибора, по си юща  его устройство и работу , представлена на чертеже.A schematic diagram of the device for its device and operation is shown in the drawing.

Па негатив 1 с номощыо микрообъектива 2 проектируетс  изображение телевизионного растра с экрана кинескопа 3 дл  обеспечени  «просмотра негатива «бегающим лучом. Свет, прощедщий через негатив , собираетс  линзой 4 на катод фотоумножител  5. Фототок, усиленный усилителем 6, производит горизонтальное отклонение луча кинескопа 7. Луч кинескопа 7 раст нут в вертикальную полосу. Под экраном этого кинескопа помещена непрозрачна  маска 8, вырезанна  по форме характеристической кривой данного негатива. Свет, прощедщий через маску, собираетс  линзой 9 на катод фотоумножител  10, фототок которого пропорционален интенсивност м света, вызвавщим почернени  соответствующих участков негатива.Pa negative 1 with a micro lens 2 is projected an image of a television raster from the screen of the kinescope 3 to provide a "viewing of the negative" by a running beam. The light passing through the negative is collected by the lens 4 on the cathode of the photomultiplier 5. The photocurrent amplified by the amplifier 6 produces a horizontal deflection of the ray of the kinescope 7. The ray of the kinescope 7 is stretched into a vertical strip. Under the screen of this kinescope, an opaque mask 8 is placed, cut out according to the shape of the characteristic curve of this negative. The light passing through the mask is collected by the lens 9 onto the cathode of the photomultiplier 10, the photocurrent of which is proportional to the intensities of the light causing the corresponding negative areas to blacken.

Фототок после усилени  усилителем Л производит вертикальное отклонение луча кинескопа 12, в то врем  как горизонтальное его отклонение нроизводитс  синхронно с лучом кинескопа 3 от блока разверток 13. При необходимости получени  регистрограммы распределени  интенсивности вдоль одной строки негатива кадрова  развертка в блоке разверток 13 выключаетс ; при этом на экране кинескопа 12 будет сун1ествоThe photocurrent, after amplification by amplifier L, produces a vertical deflection of the ray of the kinescope 12, while its horizontal deflection is produced synchronously with the ray of the kinescope 3 from the scanner unit 13. If it is necessary to obtain an intensity distribution pattern along the negative line, the frame sweep in the sweep unit 13 is turned off; while on the screen of the kinescope 12 there will be a sun

SU620674A 1959-02-28 1959-02-28 Photoelectric photometer for measuring the degree of blackening of a negative SU122896A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU620674A SU122896A1 (en) 1959-02-28 1959-02-28 Photoelectric photometer for measuring the degree of blackening of a negative

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU620674A SU122896A1 (en) 1959-02-28 1959-02-28 Photoelectric photometer for measuring the degree of blackening of a negative

Publications (1)

Publication Number Publication Date
SU122896A1 true SU122896A1 (en) 1959-11-30

Family

ID=48394513

Family Applications (1)

Application Number Title Priority Date Filing Date
SU620674A SU122896A1 (en) 1959-02-28 1959-02-28 Photoelectric photometer for measuring the degree of blackening of a negative

Country Status (1)

Country Link
SU (1) SU122896A1 (en)

Similar Documents

Publication Publication Date Title
JPS4932484U (en)
GB1420161A (en) X-ray inspection system
GB1285301A (en) Solar stimulated fluorescent radiation detection method and apparatus
GB555565A (en) Improvements in and relating to colour television
JPS5413769A (en) Color picture tube
SU122896A1 (en) Photoelectric photometer for measuring the degree of blackening of a negative
JPS54106225A (en) Display device in finder for auto-focus camera
GB1521761A (en) Investigating an object with radiation
AT277331B (en) Device for holding a shadow mask on the front glass frame of a color television picture tube
US2989909A (en) Photographic method
GB549890A (en) Electron camera
SU128047A1 (en) The method of implementation of the combined television programs
JPS5610201A (en) Object dimension measuring device
GB1221071A (en) Pattern detection apparatus
GB1373649A (en) Luminance distribution photometers
JPS5333141A (en) Automatic converting device for converting monochrome picture into color one
SU133750A1 (en) Combined frame printing method
SU140094A1 (en) Electronic method of printing combined frames
JPS5321944A (en) Displaying device
GB1186372A (en) Improvements in or relating to Photo-Electronic Imaging Devices
GB1446899A (en) Colour picture tubes
SU131106A1 (en) Multiparameter scalar field analyzer
SU82583A1 (en) Method for determining oversized tunnel lining places
SU147001A1 (en) The way to install the output slit on the spectral line
SU120663A1 (en) The method for determining the resolution power of optical systems, such as photographic lenses