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In-House Calibration

In House Calibration

Compliant to ISO/IEC 17025-2005

MX Industrial
35 Steamwhistle Drive
Ivyland, PA 18974
Phone: 215-322-8909
www.mxindustrial.com

I. Electrical 

 

Parameter/Equipment

 

Range

 

 Best Uncertainty  (+/-)


Laboratory

 

 


On-Site

 

Comments

 

Magnetic Particle
Inspection
Equipment-

      Current

 

 

       Time

 

 

 

Up to 20000A
AC,HWDC,FWDC

 

(0.15 TO 9)S
(0-999.999)S

 

 

 

2% rdg +20A

 

 

4% rdg +0.04s

 

 

 

2% rdg +20A

 

4% rdg +0.04s

 

ASTM
E1444 &
E709

Magwerks
SMTS-30

 

Liquid Penetrant
Inspection
Equipment-

       Pressure

 

      Temperature

 

 

 

Up to 100psig

 

-328f to 2498f
-200c to 1370c

 

 

 

0.03% of reading

 

0.8f
0.4c

 

 

 

0.03% of reading

0.8f
0.4c

 

ASTM
E1417

 

USG

 

FLUKE 51

 

 

 

Parameter/Equipment

 

Range

 

 Best Uncertainty  (+/-)

 

Laboratory

 

 


On-Site

 

Comments

 

DC Voltage

 

Up to 100mV

 

100mV to 1V

 

 

0.01%rdg +0.0007%rndg

0.008% +0.00014%rng

 

 

See footnote 3

 

HP 6920B
Systron
7000A

 

DC Gauss
Measuring Equipment
Fixed Points

 

Measure only

 

2Gs
5Gs
10Gs
20Gs
Up to 297Cs

1G to 20KG

 

0.07Gs
0.2Gs
0.4Gs
0.8Gs

 

4% of rdg

 

0.07Gs
0.2Gs
0.4Gs
0.8Gs

 

See footnote 3

 

Model 25
Gauss fixtures
VA-704
Magnet

SHT-6

 

II. Time & Frequency

 

Parameter/Equipment

 

Range

 

Best Uncertainty (+/-)


Laboratory

 

 


On-Site

 

Comments

 

Time

(.001 to 60s)

Up to 60s/min

4% of rdg +0.04s

0.44s

See footnote 3

S-1

Gralab 300

 

III. Mechanical

 

Parameter/Equipment

 

Range

 

Best Uncertainty (+/-)


Laboratory

 

 


On-Site

 

Comments

 

Yokes – Magnetic Lift

 

Pressure-Measure

 

(10 to 50)lbs.

 

 

Up to 100psig

Up to 1000psig

 

2oz.

 

 

2.2psig

4% of rdg

 

2oz.

 

 

2.2psig

see footnote 3

ASTM E1444 and E709
Parker TB-10Weights

WIKA

USG

IV. Thermodynamics

 

Parameter/Equipment

 

Range

 

Best Uncertainty (+/-)


Laboratory

 

 


On-Site

 

Comments

 

Temperatures – Measure only

 

-328f to 2498f

-200c to 1370c

 

4% of rdg

4% of rdg

 

4% of rdg

4% of rdg

 

Fluke 51

 

V. Optical Quantities

 

Parameter/Equipment

 

Range

 

Best Uncertainty (+/-)


Laboratory

 

 


On-Site

 

Comments

 

Irradiance –
Ultraviolet Light
(320 to 380) nm

 

 

 

 

 

 

Illuminance –

   Visible Light,
(380 to 760) nm

 

 

 

 

 

 

 

 

Luminance –

   Visible Light,
(380 to 760)nm

 

 

 

 

 

 

 

Up to 30000 mW/cm2

Up to 19990 mW/cm2

Up to 19990 mW/cm2

 

Up to 199.9 mW/cm2

 

Up to 199.9Fc

 

Up to 1999Fc

 

Up to 1999Fc

 

Up to 5000Fc

 

Up to 50,000Lux

 

 

Up to 199,990Fl

 

 

20% of rdg

 

10% of rdg

 

10% of rdg

 

10% of rdg

 

 

10% of rdg

 

10% of rdg

 

10% of rdg

 

5%  + fs

 

5%  + fs

 

 

10% or rdg

 

See footnote 3

 

UVP J-221

 

Gould-Bass
DLM-1000

Spectronics
DIX-365A
DSE-100X

Spectronics
DIX-365A
DSE-100H

 

Spectronics
DIX-555A
DSE-100X

Spectronics
DIX-555A
DSE-100H

Gould Bass
DLM-1000

Extech 401025

Extech
401025

 

 

Gould-Bass
DLM-1500


1.  This laboratory offers commercial calibration service and on-site calibration service, where noted.

2.  “Best Uncertainty” is the smallest uncertainty of measurement that a laboratory can achieve within its scope when performing more or less routine calibrations or nearly ideal measurement standards of nearly ideal measuring equipment.  Best uncertainties represent expanded uncertainties expressed at approximately the 95% level of confidence, usually using a coverage factor of k=2.  The best uncertainty of a specific calibration performed by the laboratory may be greater than the best uncertainty due to the behavior of the customer’s device and to influences from the circumstances of the specific calibration.

3.  Calibration service on site is not offered for this parameter.

4.  The Best Uncertainty stated for calibrations performed in the laboratory is applicable for calibrations performed on-site.

5.  The uncertainties achievable on a customer’s site can normally be expected to be larger than the Best Measurement Capabilities (BMC) that the laboratory has been assigned as Best Uncertainty on the scope.  Allowance must be made for aspects such as the environment at the place of calibration and for other possible adverse effects such as those caused by transportation of the calibration equipment.  The usual allowance for the uncertainty introduced by the item being calibrated, (e.g. resolution) must also be considered and this, on its own, could result in the calibration uncertainty being larger than the BMC.

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