Don't have a credit card? Never mind we support BANK TRANSFER .

PRICES include / exclude VAT
Homepage>ISO Standards>ISO 17123-6:2022-Optics and optical instruments — Field procedures for testing geodetic and surveying instruments-Part 6: Rotating lasers
download between 0-24 hoursReleased: 2022
ISO 17123-6:2022-Optics and optical instruments — Field procedures for testing geodetic and surveying instruments-Part 6: Rotating lasers

ISO 17123-6:2022

ISO 17123-6:2022-Optics and optical instruments — Field procedures for testing geodetic and surveying instruments-Part 6: Rotating lasers

Format
Availability
Price and currency
English PDF
Immediate download
180.00 EUR
English Hardcopy
In stock
180.00 EUR
Standard´s number:ISO 17123-6:2022
Pages:28
Edition:3
Released:2022
Language:English
DESCRIPTION

ISO 17123-6:2022


This document specifies field procedures to be adopted when determining and evaluating the precision (repeatability) of rotating lasers and their ancillary equipment when used in building and surveying measurements for levelling tasks. Primarily, these tests are intended to be field verifications of the suitability of a particular instrument for the immediate task at hand and to satisfy the requirements of other standards. They are not proposed as tests for acceptance or performance evaluations that are more comprehensive in nature. This document can be considered as one of the first steps in the process of evaluating the uncertainty of a measurement (more specifically a measurand). The uncertainty of a result of a measurement is dependent on a number of parameters. Therefore this document differentiates between different measures of accuracy and objectives in testing, like repeatability and reproducibility (between-day repeatability), and of course gives a thorough assessment of all possible error sources, as prescribed by ISO/IEC Guide 98‑3 and ISO 17123‑1. These field procedures have been developed specifically for in situ applications without the need for special ancillary equipment and are purposefully designed to minimize atmospheric influences.