ZH

RU

ES

The most precise balance

The most precise balance, Total:90 items.

In the international standard classification, The most precise balance involves: Linear and angular measurements, Horology, Materials for aerospace construction, Measurement of force, weight and pressure, Pipeline components and pipelines, Radiocommunications, On-board equipment and instruments, Surface treatment and coating, Measurement of volume, mass, density, viscosity, Fluid power systems, Industrial furnaces, Insulating materials, Television and radio broadcasting, Electronic tubes, Components for aerospace construction, Construction materials, Coatings and related processes used in aerospace industry, Metrology and measurement in general, Iron and steel products.


CZ-CSN, The most precise balance

AGMA - American Gear Manufacturers Association, The most precise balance

Standard Association of Australia (SAA), The most precise balance

German Institute for Standardization, The most precise balance

  • DIN 8257-2:1969 Jewels for fine mechanics; watch jewels, balance jewels
  • DIN EN 6025:2021 Aerospace series - Plates - Aluminium alloy 2024 - Close tolerances flatness - Thickness - 6 mm < a ≤ 55 mm - Dimensions; German and English version EN 6025:2021
  • DIN 8263:1969 Jewels for fine mechanics; cap jewels for instruments, flat
  • DIN ISO 10763:2004 Hydraulic fluid power - Plain-end, seamless and welded precision steel tubes - Dimensions and nominal working pressures (ISO 10763:1994)

PT-IPQ, The most precise balance

American Society for Testing and Materials (ASTM), The most precise balance

  • ASTM E898-88(1993) Standard Method of Testing Top-Loading, Direct-Reading Laboratory Scales and Balances
  • ASTM E898-88(2005) Standard Test Method of Testing Top-Loading, Direct-Reading Laboratory Scales and Balances
  • ASTM E898-88(2000) Standard Method of Testing Top-Loading, Direct-Reading Laboratory Scales and Balances
  • ASTM E898-88(2013) Standard Test Method of Testing Top-Loading, Direct-Reading Laboratory Scales and Balances

International Telecommunication Union (ITU), The most precise balance

  • ITU-R S.728-1-1995 Maximum Permissible Level of Off-Axis e.i.r.p. Density from Very Small Aperture Terminals (VSATs)
  • ITU-R S.728-1995 Maximum permissible level of off-axis e.i.r.p. density from very small aperture terminals (VSATs)
  • ITU-R SF.675-3 FRENCH-1994 CALCULATION OF THE MAXIMUM POWER DENSITY (AVERAGED OVER 4 kHz) OF AN ANGLE-MODULATED CARRIER CALCUL DE LA DENSIT?MAXIMALE DE PUISSANCE (MOYENNE DANS UNE BANDE DE 4 kHz) D'UNE ONDE PORTEUSE ?MODULATION ANGULAIRE
  • ITU-R SF.675-3 SPANISH-1994 CALCULATION OF THE MAXIMUM POWER DENSITY (AVERAGED OVER 4 kHz) OF AN ANGLE-MODULATED CARRIER C罫CULO DE LA DENSIDAD DE POTENCIA M罼IMA (VALOR MEDIO EN UNA BANDA DE 4 kHz) DE UNA PORTADORA CON MODULACI覰 ANGULAR
  • ITU-R SF.675-4-2012 Calculation of the maximum power density (averaged over 4 kHz or 1 MHz) of angle-modulated and digital carriers
  • ITU-R SF.675-2012 Calculation of the maximum power density (averaged over 4 kHz or 1 MHz) of angle-modulated and digital carriers
  • ITU-T O.62-1988 SOPHISTICATED EQUIPMENT TO MEASURE INTERRUPTIONS ON TELEPHONE-TYPE CIRCUITS

CH-SNV, The most precise balance

  • SN EN 6025-2021 Aerospace series - Plates - Aluminium alloy 2024 - Close tolerances flatness - Thickness - 6 mm

Natural Gas Processor's Association (NGPA), The most precise balance

  • GPA TP-3-1973 Model for the Precise Calculation of Liquefied Natural Gas Densities

Danish Standards Foundation, The most precise balance

  • DS/EN 6025:2021 Aerospace series – Plates – Aluminium alloy 2024 – Close tolerances flatness – Thickness – 6 mm ≤ a ≤ 55 mm – Dimensions
  • DS/EN 3446:1995 Aerospace series - Bearings, precision ball without flange in corrosion resisting steel, for instruments and equipment - Dimensions and loads

AT-ON, The most precise balance

  • OENORM EN 6025-2021 Aerospace series - Plates - Aluminium alloy 2024 - Close tolerances flatness - Thickness - 6 mm < a <= 55 mm - Dimensions
  • ONORM EN 2236-1992 Aerospace series - Pins, headed, dose tolerance shank, in alloy steel - Technical specification

IT-UNI, The most precise balance

  • UNI EN 6025-2021 Aerospace series - Plates - Aluminium alloy 2024 - Close tolerances flatness - Thickness - 6 mm < a ≤ 55 mm - Dimensions

BE-NBN, The most precise balance

IN-BIS, The most precise balance

International Organization for Standardization (ISO), The most precise balance

  • ISO 3306:1975 Plain end as-welded and sized precision steel tubes — Technical conditions for delivery
  • ISO 6783:1982 Coarse aggregates for concrete; Determination of particle density and water absorption; Hydrostatic balance method
  • ISO 10763:1994 Hydraulic fluid power - Plain-end, seamless and welded precision steel tubes - Dimensions and nominal working pressures
  • ISO 14213:1998 Aerospace - Airframe ball bearings, single-row, rigid, precision, sealed, torque tube design, extra light duty - Inch series

ITU-R - International Telecommunication Union/ITU Radiocommunication Sector, The most precise balance

  • ITU-R SF.675-2-1993 Calculation of the Maximum Power Density (Averaged Over 4 KHs) of an Angle-Modulated Carrier
  • ITU-R S.728-1992 Maximum Permissible Level of Off-Axis e.i.r.p. Density from Very Small Aperture Terminals (VSATs) - Section 4B1 - Systems Aspects
  • ITU-R S.524-4-1992 Maximum Permissible Levels of off-Axis e.i.r.p. Density from Earth Stations in the Fixed-Satellite Service Transmitting in the 6 and 14 GHz Frequency Bands - Section 4D1 - Permissible Levels of Interference
  • ITU-R S.524-3-1990 Maximum Permissible Levels of off-Axis e.i.r.p. Density from Earth Stations in the Fixed-Satellite Service Transmitting in the 6 and 14 GHz Frequency Bands - Section 4D1 - Permissible Levels of Interference
  • ITU-R S.524-5-1994 Maximum Permissible Levels of Off-Axis e.i.r.p. Density from Earth Stations in the Fixed-Satellite Service Transmitting in the 6 and 14 GHz Frequency Bands
  • ITU-R SF.675-1-1992 Calculation of the Maximum Power Density (Averaged over 4 kHz) of an Angle-Modulated Carrier 4/9B - Co-Ordination and Interference Calculations
  • ITU-R SF.675-1990 Calculation of the Maximum Power Density (Averaged over 4 kHz) of a Frequency-Modulated FDM Carrier - Section 4/9B - Co-Ordination and Interference Calculations

Lithuanian Standards Office , The most precise balance

  • LST EN 6025-2021 Aerospace series - Plates - Aluminium alloy 2024 - Close tolerances flatness - Thickness - 6 mm < a ? 55 mm - Dimensions

ES-UNE, The most precise balance

  • UNE-EN 6025:2021 Aerospace series - Plates - Aluminium alloy 2024 - Close tolerances flatness - Thickness - 6 mm < a = 55 mm - Dimensions
  • UNE-EN 2130:2001 Aerospace series. Bearings, precision ball in corrosion ressting steel for instruments and equipment. Technical specification. (Endorsed by AENOR in December of 2001.)

Society of Automotive Engineers (SAE), The most precise balance

  • SAE ARD50093-2002 Unresolved Issues in Training Pilots for Closely-Spaced Parallel Runways and Precision Runway Monitor Operations

Association Francaise de Normalisation, The most precise balance

  • NF L10-623*NF EN 6025:2021 Aerospace series - Plates - Aluminium alloy 2024 - Close tolerances flatness - Thickness - 6 mm < a less than or equal to 55 mm - Dimensions
  • NF C26-304-2*NF EN 60216-4-2:2001 Electrical insulating materials - Thermal endurance properties - Part 4-2 : ageing ovens - Precision ovens for use up to 300 oC
  • NF ISO 35/A1:2006 Concentré de latex de caoutchouc naturel - Détermination de la stabilité mécanique - Amendement 1 : données de fidélité
  • NF EN 2079:1995 Série aérospatiale - Roulements à billes de précision avec collet en acier résistant à la corrosion pour instruments et équipements - Dimensions et charges.
  • NF L31-343*NF EN 2079:1995 Aerospace series. Bearings, precision ball with flange in corrosion resisting steel, for instruments and equipment. Dimensions and loads.
  • NF L31-341*NF EN 3446:1995 Aerospace series. Bearings, precision ball without flange in corrosion resisting steel, for instruments and equipment. Dimensions and loads.

GB-REG, The most precise balance

Institute of Electrical and Electronics Engineers (IEEE), The most precise balance

  • IEEE P1588a/D3.5, June 2023 IEEE Draft Standard for a Precision Clock Synchronization Protocol for Networked Measurement and Control Systems Amendment: Precision Time Protocol (PTP) Enhancements for Best Master Clock Algorithm (BMCA) Mechanisms
  • IEEE P1588a/D3.4, April 2023 IEEE Draft Standard for a Precision Clock Synchronization Protocol for Networked Measurement and Control Systems Amendment: Precision Time Protocol (PTP) Enhancements for Best Master Clock Algorithm (BMCA) Mechanisms
  • IEEE P1588a/D3.0, April 2022 IEEE Draft Standard for a Precision Clock Synchronization Protocol for Networked Measurement and Control Systems Amendment: Enhancements for Best Master Clock Algorithm (BMCA) Mechanisms

European Association of Aerospace Industries, The most precise balance

  • AECMA PREN 2828-1990 Aerospace Series Adhesion Test for Metallic Coatings by Burnishing Edition 1
  • AECMA PREN 2829-1993 Aerospace Series Adhesion Test for Metallic Coatings by Shot Peening Edition 1
  • AECMA PREN 2830-1990 Aerospace Series Adhesion Test for Metallic Coatings by Shearing Action Edition 1
  • AECMA PREN 2204-1998 Heat Resisting Nickel Base Alloy NI-C105-HT Solution Treated and Precipitation Treated Precision Castings Aerospace Series Edition 2 [Refer To: ASD-STAN PREN 2204]

国家市场监督管理总局、中国国家标准化管理委员会, The most precise balance

  • GB/T 41354-2022 Hydraulic fluid power—Plain-end,seamless and welded precision steel tubes—Dimensions and nominal working pressures

IPC - Association Connecting Electronics Industries, The most precise balance

  • IPC FC-219-1984 Environmentally Sealed Flat Cable Connectors for Use in Aerospace Applications

International Electrotechnical Commission (IEC), The most precise balance

  • IEC 60216-4-2:2000 Electrical insulating materials - Thermal endurance porperties - Part 4-2: Ageing ovens; Precision ovens for use up to 300 °C

ASD-STAN - Aerospace and Defence Industries Association of Europe - Standardization, The most precise balance

  • PREN 2161-1999 Aerospace Series Heat Resisting Alloy CO-CH1401 (CoCr26i11W) Not Heat Treated Precision Casting (Edition P1)
  • PREN 2664-1998 Aerospace Series Heat Resisting Nickel Base Alloy Ni-C99HT Not Heat Treated Precision Castings (Edition P 2)

SAE - SAE International, The most precise balance

  • SAE ARP5453-2000 Training Pilots Prior Simultaneous Instrument Landing System (ILS) Precision Runway Monitor (PRM) Approaches to Closely-Spaced Parallel Runways

Professional Standard - Electron, The most precise balance

  • SJ/T 10943-1996 Test method for granulometric distribution of alundum powder for vacuum tubes - Density balance method

工业和信息化部, The most precise balance

  • SJ/T 10943-2020 Density balance method for determination of particle size distribution of corundum powder for electric vacuum devices

American Bearing Manufacturers Association, The most precise balance

  • ABMA 14206-1997 Aerospace - Airframe Ball Bearings, Singlr-Row, Rigid, Sealed, Light Duty - Inch Series
  • ABMA 14207-1998 Aerospace - Airframe ball bearings, single row, rigid, precision, sealed, light duty - Inch series
  • ABMA 14210-1998 Aerospace - Airframe ball bearings, single row, rigid, sealed, torque tube design, light duty - Inch series
  • ABMA 14202-1998 Aerospace - Airframe ball bearings, single row, rigid, diameter series 0 and 2 - Metric series
  • ABMA 14203-1998 Aerospace - Airframe ball bearings, single row, rigid, diameter series 8 and 9 - Metric series
  • ABMA 14209-1997 Aerospace - Airframe Ball Bearings, Single-Row, Rigid, Precision Sealed, Intermediate Duty - Inch Series ISO 14209; 1997
  • ABMA 14211-1997 Aerospace - Airframe Ball Bearings, Singlr-Row, Rigid, Precision, Sealed, Torque Tube Design, Light Duty - Inch Series ISO 14211; 1997
  • ABMA 14213-1997 Aerospace - Airframe Ball Bearings, Single-Row, Rigid, Precision, Sealed, Torque Tube Design, Extra-Light Duty - Inch Series ISO 14213; 1997
  • ABMA 14212-1997 Aerospace - Airframe Ball Bearings, Singlr-Row, Rigid, Sealed, Torque Tube Design, Extra-Light Duty - Inch Series ISO 14212; 1997

TH-TISI, The most precise balance

  • TIS 1743-1999 Coarse aggregates for concrete.determination of particle density and water absorption.hydrostatic balance method

American National Standards Institute (ANSI), The most precise balance

  • ANSI/ABMA/ISO 14211:1998 Aerospace - Airframe Ball Bearings, Single Row, Rigid, Precision, Sealed, Torque Tube Design, Light Duty - Inch Series
  • ANSI/ABMA/ISO 14213:1998 Aerospace - Airframe Ball Bearings, Single Row, Rigid, Precision, Shielded, Torque Tube Design, Extra-Light Duty - Inch Series

Korean Agency for Technology and Standards (KATS), The most precise balance

  • KS B ISO 10767-1-2002(2022) Hydraulic fluid power-Determination of pressure ripple levels generated in systems and components-Part 1 : Precision method for pumps
  • KS W ISO 14211:2004 Aerospace-Airframe ball bearings, single-row, rigid, precision, sealed, torque tube design, light duty-Inch series
  • KS W ISO 14213:2004 Aerospace-Airframe ball bearings, single-row, rigid, precision,sealed, torque tube design, extra-light duty-Inch series
  • KS W 0932-1998 Aerospace-Self-locking, fixed, single-lug anchor nuts,reduced series, with counterbore, strength classification 1100MPa and maximum operating temperature 235 degrees C

European Committee for Standardization (CEN), The most precise balance

  • EN 2130:2001 Aerospace series - Bearings, precision ball in corrosion resisting steel for instruments and equipment - Technical specification
  • EN 2079:1995 Aerospace series - Bearings, precision ball with flange in corrosion resisting steel, for instruments and equipment - Dimensions and loads
  • EN 3446:1995 Aerospace series - Bearings, precision ball without flange in corrosion resisting steel, for instruments and equipment - Dimensions and loads

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, The most precise balance

  • GB/T 11792-1989 Precision of test methods--Check the acceptability of test results obtained under repeatability or reproducibility conditions and to determine final test result

AENOR, The most precise balance

  • UNE-EN 3446:1996 AEROSPACE SERIES. BEARINGS, PRECISION BALL WITHOUT FLANGE IN CORROSION RESISTING STEEL, FOR INSTRUMENTS AND EQUIPMENT. DIMENSIONS AND LOADS.




Copyright ©2007-2023 ANTPEDIA, All Rights Reserved