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GB/T 26596-2011 English PDF

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GB/T 26596-2011: Optics and optical instruments -- Geodetic and surveying instruments -- Vocabulary
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 26596-2011454 Add to Cart 4 days Optics and optical instruments -- Geodetic and surveying instruments -- Vocabulary Valid

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Basic data

Standard ID: GB/T 26596-2011 (GB/T26596-2011)
Description (Translated English): Optics and optical instruments -- Geodetic and surveying instruments -- Vocabulary
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: N31
Classification of International Standard: 17.180.30
Word Count Estimation: 23,296
Date of Issue: 2011-06-16
Date of Implementation: 2011-11-01
Adopted Standard: ISO 9849-2000, IDT
Regulation (derived from): Announcement of Newly Approved National Standards No. 9 of 2011
Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary: This standard specifies the relevant range finder, level, theodolite and other geodetic instruments as well as in the military topographic survey, geological survey, flat and construction survey components used terms and definitions. With photogrammetry, astronomy, hydrographic survey and industrial measurement related terms thereof. This standard does not apply to the instrument functions unrelated parts. The terms in alphabetical order.

GB/T 26596-2011: Optics and optical instruments -- Geodetic and surveying instruments -- Vocabulary


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Optics and optical instruments.Geodetic and survering instruments.Vocabulary ICS 17.180.30 N31 National Standards of People's Republic of China Optical and optical instruments Terminology of Geodetic Instruments (ISO 9849..2000, IDT) 2011-06-16 release 2011-11-01 implementation General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China China National Standardization Management Committee released Directory Preface I 1 Scope 1 2 Instrument terminology 1 3 Parts Terminology 4 Reference 12 Index 13 Chinese Pinyin Index 13 English Correspondence Index

Foreword

This standard is equivalent to ISO 9849..2000 "Terminology for geodetic instruments for optical and optical instruments". This standard is equivalent to ISO 9849..2000. For ease of use, this standard has been modified as follows. - the word "international standard" is changed to "this standard"; - to remove the preamble of international standards; - the international standard "scope" chapter number. This standard is proposed by the China Machinery Industry Federation. This standard is nationalized by the National Committee for the Standardization of Optics and Photonics (SAC/TC103). The drafting of this standard. Shanghai University of Science and Technology, Suzhou, a light Instrument Co., Ltd., Jiangnan Yongxin Optical Co., Ltd., Ningbo Shun Yu instrument Ltd., Ningbo Yongxin Optics Co., Ltd., Ningbo Huayao Precision Instrument Co., Ltd., Wuzhou Oka Optical Instrument Company, Nanjing Dongli Optoelectronics Industry Co., Ltd., Mike Audi Chemical Industry Group Co., Ltd., Guiyang Xintian Optoelectronics Technology Co., Ltd. the company. The main drafters of this standard. Huang Weijia, Hou Yuwei, Zhang Huixian, Feng Qionghui, Hu Senhu, Zeng Lizhu, Wang Guorui, Xu Liming, Zhang Jinghua, Yang Guanglie, Xiao Qian, Hu Qing. Optical and optical instruments Terminology of Geodetic Instruments

1 Scope

This standard specifies geometric instruments such as range finder, level meter, theodolite and other geodesy instruments, as well as in military terrain survey, geological survey, Quantities and terms used in engineering measurements. And terms related to photogrammetry, astronomy, hydrological measurements and industrial measurements except. This standard does not apply to components that are not related to the instrument function. The terms are in alphabetical order.

2 Instrument terminology

2.1 Line alignment Contains a high magnification telescope, fixed at the end of the optical axis of the telescope fixed target. Note. The middle of each target should be placed in the vertical axis of the alignment machine. 2.1.1 Alignment lasers alignmentlaser Use a laser beam instead of an optical sight line. Note. Using the lens group, the laser beam is expanded into two linear rays perpendicular to each other, and then converged into a cross light source. 2.2 Antenna antenna Emitting and/or receiving electromagnetic waves. See also. Electronic range finder (2.4), GPS ground receiver (2.6). 2.3 Barometer barometer Instruments for measuring atmospheric pressure. Note. Since the barometric pressure varies with height, it can also be used to measure elevation. 2.3.1 Empty box barometer aneroidbarometer A barometer of atmospheric pressure is measured by some resilient means. Note. also known as no liquid barometer. 2.3.2 Barometrical altimeter barometricaltimeter A barometer for elevation measurement. 2.3.3 Mercury barometer mercurybarometer A barometer for measuring atmospheric pressure with a mercury column. 2.4 Electronic range finder electronicdistancemeter Electromagnetic range finder EDMinstrument; electromagneticdistancemeter An instrument that directly measures the distance between the instrument and the target, including a transmitter and a receiver. Note. The transmitter emits a modulated wave of a certain speed, after reaching the target, uses an optical or electronic device to reflect the modulated wave back to the instrument, received by the receiver Calculate the distance.
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