Fluke 2470 specifications Specifications, Low Range Piston

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Introduction

1

 

Specifications

Specifications

 

 

Low Range Piston

 

 

Pressure Range (Model 2465)

1.4 to 172 kPa (0.2 to 25 psi) psi gauge

 

Pressure Range (Model 2468)

1.4 to 345 kPa (0.2 to 50 psi) psi gauge

 

Pressure Uncertainty Rating

0.0010% (10 ppm) or 0.07 Pa (1.0E-05 psi), whichever is greater (1,2)

 

Uncertainty Threshold

7 kPa (1 psi)

 

Resolution

1 ppm or 1 mg, whichever is greater

 

Precision (Typical Type A Unc.)

3 ppm (3)

 

Long Term Stability

3 ppm per year

 

Piston/Cylinder Material

440C Stainless Steel/Tungsten Carbide

 

Thermal Coefficient

1.5E-05 per deg. C

 

Sink Rate at Maximum Pressure

typical <2 mm per minute, maximum 4 mm per minute

 

Mid Range Piston

 

 

Pressure Range (Model 2465)

12 to 700 kPa (1.7 to 100 psi) absolute or gauge

 

Pressure Range (Model 2468)

12 to 1380 kPa (1.7 to 200 psi) absolute or gauge

 

Pressure Uncertainty Rating

0.0010% (10 ppm) or 0.07 Pa (1.0E-05 psi), whichever is greater (1,2)

 

Uncertainty Threshold

35 kPa (5 psi)

 

Resolution

1 ppm or 1 mg, whichever is greater

 

Precision (Typical Type A Unc.):

3 ppm (3)

 

Long Term Stability

3 ppm per year

 

Piston/Cylinder Material

Tungsten Carbide/Tungsten Carbide

 

Thermal Coefficient

9.1E-06 per deg. C

 

Sink Rate at Maximum Pressure

typical <2 mm per minute, maximum 4 mm per minute

 

High Range Piston

 

 

Pressure Range

700 to 20680 kPa (100 to 3000) absolute or gauge

 

Pressure Uncertainty Rating

0.0030% (30 ppm) or 3.7 Pa (5.4E-04 psi), whichever is greater (1,2)

 

Uncertainty Threshold

248 kPa (36 psi)

 

Resolution

1 ppm or 1 mg, whichever is greater

 

Precision (Typical Type A Unc.)

3 ppm (3)

 

Long Term Stability

3 ppm per year

 

Piston/Cylinder Material

Tungsten Carbide/Tungsten Carbide

 

Thermal Coefficient

9.1E-06 per deg. C

 

Sink Rate at Maximum Pressure

typical <2 mm per minute, maximum 4 mm per minute

 

Mass Set

 

 

Approximate Total Mass

17.8 kg

 

Approximate Carrier Mass

0.58 kg

 

Smallest Increment

5.9 gram

 

Mass Material

300 Series, Non-magnetic, Austenitic, Stainless Steel (3)

 

Adjustment Method

Completely machined with no fill cavities

 

Mass Uncertainty

0.0005% (5 ppm) or 5E-07 kg, whichever is greater

 

Optional Fine Increment Trim Set

ASTM Class 1, 20g to 1 mg

 

(1)Absolute mode uncertainty higher due to reference pressure sensor.

(2)Approximate 95% level of confidence (Refer to Chapter 1, Accuracy, and to Calibration Report.)

(3)Mass carrier composite construction 300 Series, Non-magnetic, Austenitic, Stainless Steel and other non-magnetic material.

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Contents Ruska Limited Warranty and Limitation of Liability Table of Contents Appendices List of Tables Ruska List of Figures Ruska Compressed Gas How to Contact FlukeSafety Information IntroductionOxygen Compatibility Symbols Used in this ManualHeavy Weights Lubricants and SealsLow Range Piston SpecificationsHumidity Range AccuracyTypes of Piston Pressure Gauges General Piston Pressure Gauge ConsiderationsControlled Clearance Cylinder Measurement of Pressure with the Piston Pressure Gauge CalculationsBuoyant Effect of the Air Elastic Distortion of the CylinderGravity Reference Plane of Measurements TemperatureReference Plane Determination Is the density of the test media Bibliography CrossfloatingGeneral Piston Pressure Gauge Considerations Ruska General Information DescriptionDescription of the Gauge Base Description of the Mass SetDescription Ruska Introduction InstallationAlways remove the thermometer before shipping the gauge base Installation Ruska Operation PrecautionsGeneral Low Range Piston AssemblyOperation 24-580 Bearing 2460-4-25 2460-5-6 Handling the Low Range Piston and Cylinder Step Low Range Piston and Cylinder Showing O-Ring Groove Mid Range Piston Assembly Section View, Mid Range Piston/Cylinder Thrust Cylinder Assembly Spacer Bearing 2460-70-2 2460-70-3 11. Retaining Nut and Bearing High Range Piston Assembly12. Section View, High Range Piston/Cylinder 13. Parts Required for High Range Piston Operation Gauge Pressures Establishing Pressure16. Float Position Automating the Calculations and Data StorageLeaks Maintenance of the GaugeRuska General Information and Preparation Piston / Cylinder Cleaning InstructionsCleaning the Low Range Piston/Cylinder Assembly Functional Testing of Piston/Cylinder AssembliesPiston / Cylinder Cleaning Instructions Preparations for Cleaning the Low Range Cylinder Preparing the Low Range Cleaning Tool Step Mid Range Piston/Cylinder Materials for Cleaning the Mid Range Piston/CylinderPreparing the Mid Range Cleaning Tool Materials for Cleaning the High Range Piston Cylinder Cleaning the High Range Piston/Cylinder AssemblyCleaning the High Range Piston/Cylinder Assembly Gmq33.bmp 13. Cleaning the High Range Cylinder 14. Drying the High Range Cylinder Explanation of Pressure Calculation Worksheet For English Units Temp. Coef. x actual temperature expected temperatureFor SI Units K2 = 1/ g1 1 − ρa / ρbAe t Explanation of Pressure Calculation Worksheet a Ruska Date Ruska Expected Temperature, t Ruska Nitrogen Density English Units 1,000 to 15,000 Psig Equation A-4 Air DensityEquation A-4 Air Density Nitrogen Density English Units 0 to 1000 PsigHelium Density SI Units 0 to 6.9 MPa Nitrogen Density SI Units 0 to 6.9 MPaNitrogen Density SI Units 6.9 MPa to 100 MPa Zero Air Density SI Units 0 MPa to 20.7 MPaTable B-1. Conversion Factors To Convert From Multiply By Conversion FactorsRuska Glossary GlossaryDUT +INF, -INF Pressure Factor Sink Rate Ruska

2470 specifications

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