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Siemens Energy AB

Accreditation no: 1853

Org no:
556606-6048
Phone:
0122-81000
Postal and visiting address:
Skäggebyvägen 23B, 612 44 Finspång · Show on map

Calibration, SS-EN ISO/IEC 17025:2018

Latest decision date: 2024-07-05

MätstorhetMetod/procedurProdukt/objektParameter/EgenskaperUtvidgad mätosäkerhet ±Mätområde/mätnivåAnmärkningFlex
CurrentInhouse method; 1CS92448Power generatingAC5 × 10⁻⁴ r + 0,02 mA20 – 200 mA45 Hz – 1 kHz
CurrentInhouse method; 1CS92448Power generatingAC5 × 10⁻⁴ r + 0,2 µA200 µA – 2 mA45 Hz – 1 kHz
CurrentInhouse method; 1CS92448Power generatingAC5 × 10⁻⁴ r + 2 µA2 – 20 mA45 Hz – 1 kHz
CurrentInhouse method; 1CS92448Power generatingAC8 × 10⁻⁴ r + 0,02 µA10 – 200 µA45 Hz – 1 kHz
CurrentInhouse method; 1CS92448Power generatingAC8 × 10⁻⁴ r + 0,4 mA200 mA – 2 A45 Hz – 1 kHz
CurrentInhouse method; 1CS92448Power generatingAC8,5 × 10⁻⁴ r + 4 mA2 – 10 A45 Hz – 1 kHz
CurrentInhouse method; 1CS92448Power generatingDC1 × 10⁻⁴ r + 5 µA20 – 200 mA-
CurrentInhouse method; 1CS92448Power generatingDC2 × 10⁻⁴ r + 0,05 mA200 mA – 2 A-
CurrentInhouse method; 1CS92448Power generatingDC4 × 10⁻⁴ r + 0,5 mA2 – 10 A-
CurrentInhouse method; 1CS92448Power generatingDC5 × 10⁻⁵ r + 0,05 µA200 µA – 2 mA-
CurrentInhouse method; 1CS92448Power generatingDC5 × 10⁻⁵ r + 5 nA10 – 200 µA-
CurrentInhouse method; 1CS92448Power generatingDC7 × 10⁻⁵ r + 0,5 µA2 – 20 mA-
CurrentInhouse method; 1CS92467Current showingAC11 × 10⁻⁴ r + 0,3 mA330 mA – 2,2 A45 Hz – 1 kHz
CurrentInhouse method; 1CS92467Current showingAC14 × 10⁻⁴ r + 4 mA2,2 – 11 A45 Hz – 1 kHz
CurrentInhouse method; 1CS92467Current showingAC15 × 10⁻⁴ r + 30 nA33 – 330 µA45 Hz – 1 kHz
CurrentInhouse method; 1CS92467Current showingAC9 × 10⁻⁴ r + 0,3 µA330 µA – 3,3 mA45 Hz – 1 kHz
CurrentInhouse method; 1CS92467Current showingAC9 × 10⁻⁴ r + 3 µA3,3 – 33 mA45 Hz – 1 kHz
CurrentInhouse method; 1CS92467Current showingAC9 × 10⁻⁴ r + 30 µA33 – 330 mA45 Hz – 1 kHz
CurrentInhouse method; 1CS92467Current showingDC120 × 10⁻⁶ r + 0,7 µA3,3 – 19 mA-
CurrentInhouse method; 1CS92467Current showingDC120 × 10⁻⁶ r + 7 µA19 – 190 mA-
CurrentInhouse method; 1CS92467Current showingDC200 × 10⁻⁶ r + 70 nA190 µA – 3,3 mA-
CurrentInhouse method; 1CS92467Current showingDC300 × 10⁻⁶ r + 7 nA10 – 190 µA-
CurrentInhouse method; 1CS92467Current showingDC300 × 10⁻⁶ r + 70 µA190 mA – 2,2 A-
CurrentInhouse method; 1CS92467Current showingDC500 × 10⁻⁶ r + 0,9 mA2,2 – 11 A-
EffectInhouse method; 1CS94514Effect showingLF, 1-phase0,05 % of AP5 – 2600 W50 – 260 V, 0,1 - 10 A, Frekvens: 45 – 65 Hz, Effektfaktor: cos ϕ = 1,0 AP avser påförd aktiv effekt
EffectInhouse method; 1CS94514Effect showingLF, 1-phase0,08 % of AP5 – 2600 W50 – 260 V, 0,1 – 10 A, Frekvens: 45 – 65 Hz, Effektfaktor: 0,5 < cos ϕ < 1,0 AP avser påförd aktiv effekt
EffectInhouse method; 1CS94514Effect showingLF, 3-phase0,05 % of AP + 0,05 W15 – 7800 W50 – 260 V, 0,1 – 10 A, Frekvens: 45 – 65 Hz, Effektfaktor: cos ϕ = 1,0 AP avser påförd aktiv effekt
EffectInhouse method; 1CS94514Effect showingLF, 3-phase0,08 % of AP + 0,05 W15 – 7800 W50 – 260 V, 0,1 – 10 A, Frekvens: 45 – 65 Hz, Effektfaktor: 0,5 < cos ϕ < 1,0 AP avser påförd aktiv effekt
ResistanceInhouse method; 1CS92448Resistance generatingESR1,5 × 10⁻⁵ r + 0,03 ohm2 – 20 kohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR1,5 × 10⁻⁵ r + 2,5 mohm200 – 2 kohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR2 × 10⁻⁵ r + 0,25 Mohm20 – 200 ohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR2 × 10⁻⁵ r + 0,3 ohm20 – 200 kohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR2 x 10⁻⁵ r + 0,05 mohm1 – 2 ohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR2 x 10⁻⁵ r + 0,05 mohm2 – 20 ohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR3 × 10⁻³ r + 1 Mohm200 Mohm – 2 Gohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR4 × 10⁻⁵ r + 3 ohm200 kohm – 2 Mohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR4,5 × 10⁻⁴ r + 10 kohm20 – 200 Mohm-
ResistanceInhouse method; 1CS92448Resistance generatingESR9 × 10⁻⁵ r + 100 ohm2 Mohm – 20 Mohm-
ResistanceInhouse method; 1CS92467Resistance showingESR100 × 10⁻⁶ r + 0,4 ohm1,1 – 11 kohm-
ResistanceInhouse method; 1CS92467Resistance showingESR100 × 10⁻⁶ r + 30 mohm110 ohm – 1,1 kohm-
ResistanceInhouse method; 1CS92467Resistance showingESR100 × 10⁻⁶ r + 40 ohm11 – 110 kohm-
ResistanceInhouse method; 1CS92467Resistance showingESR200 × 10⁻⁶ r + 400 ohm1,1 – 11 Mohm-
ResistanceInhouse method; 1CS92467Resistance showingESR200 × 10⁻⁶ r + 400 ohm110 kohm – 1,1 Mohm-
ResistanceInhouse method; 1CS92467Resistance showingESR200 x 10⁻⁶ r + 5 mohm30 – 110 ohm-
ResistanceInhouse method; 1CS92467Resistance showingESR500 × 10⁻⁶ r + 0,5 mohm1 – 30 ohm-
ResistanceInhouse method; 1CS92467Resistance showingESR600 × 10⁻⁶ r + 700 ohm11 – 33 Mohm-
ResistanceInhouse method; 1CS93213Resistance showingESR1 × 10⁻⁵ r100 ohm-
ResistanceInhouse method; 1CS93213Resistance showingESR1,5 × 10⁻⁵ r25 ohm-
VoltageInhouse method; 1CS92448Voltage generatingAC1,3 × 10⁻³ r + 0,05 V500 – 1000 V45 Hz – 10 kHz
VoltageInhouse method; 1CS92448Voltage generatingAC2 × 10⁻⁴ r + 0,05 mV200 mV – 2 V45 Hz – 10 kHz
VoltageInhouse method; 1CS92448Voltage generatingAC2 × 10⁻⁴ r + 0,5 mV2 – 20 V45 Hz – 10 kHz
VoltageInhouse method; 1CS92448Voltage generatingAC2 × 10⁻⁴ r + 5 mV20 – 200 V45 Hz – 10 kHz
VoltageInhouse method; 1CS92448Voltage generatingAC3 × 10⁻⁴ r + 20 µV0,1 – 200 mV45 Hz – 10 kHz
VoltageInhouse method; 1CS92448Voltage generatingAC3,5 × 10⁻⁴ r + 0,05 V200 – 500 V45 Hz – 10 kHz
VoltageInhouse method; 1CS92448Voltage generatingDC1 × 10⁻⁵ r + 3,0 µV200 mV – 2V-
VoltageInhouse method; 1CS92448Voltage generatingDC1,5 × 10⁻⁵ r + 0,03 mV2 – 20 V-
VoltageInhouse method; 1CS92448Voltage generatingDC1,5 × 10⁻⁵ r + 0,3 mV20 – 200 V-
VoltageInhouse method; 1CS92448Voltage generatingDC1,5 × 10⁻⁵ r + 2,1 µV10 – 200 mV-
VoltageInhouse method; 1CS92448Voltage generatingDC2 × 10⁻⁵ r + 3 mV200 – 1000 V-
VoltageInhouse method; 1CS92448Voltage generatingDC2,1 µV0,1 – 10 mV-
VoltageInhouse method; 1CS92467Voltage showingAC15 × 10⁻⁴ r + 70 mV300 – 1000 V45 Hz – 1 kHz
VoltageInhouse method; 1CS92467Voltage showingAC20 × 10⁻⁴ r + 60 µV1 – 30 mV45 Hz – 1 kHz
VoltageInhouse method; 1CS92467Voltage showingAC500 × 10⁻⁶ r + 0,7 mV3 – 30 V45 Hz – 1 kHz
VoltageInhouse method; 1CS92467Voltage showingAC500 × 10⁻⁶ r + 60 µV30 – 300 mV45 Hz – 1 kHz
VoltageInhouse method; 1CS92467Voltage showingAC500 × 10⁻⁶ r + 80 µV300 mV – 3 V45 Hz – 1 kHz
VoltageInhouse method; 1CS92467Voltage showingAC600 × 10⁻⁶ r + 7 mV30 – 300 V45 Hz – 1 kHz
VoltageInhouse method; 1CS92467Voltage showingDC100 × 10⁻⁶ r + 10 µV3,3 – 33 V-
VoltageInhouse method; 1CS92467Voltage showingDC100 × 10⁻⁶ r + 3 µV330 mV – 3,3 V-
VoltageInhouse method; 1CS92467Voltage showingDC200 × 10⁻⁶ r + 3 µV0,1 – 330 mV-
VoltageInhouse method; 1CS92467Voltage showingDC50 × 10⁻⁶ r + 0,3 mV33 – 50 V-
VoltageInhouse method; 1CS92467Voltage showingDC50 × 10⁻⁶ r + 20 mV330 – 1000 V-
VoltageInhouse method; 1CS92467Voltage showingDC50 × 10⁻⁶ r + 3 mV50 – 330 V-
MätstorhetMetod/procedurProdukt/objektParameter/EgenskaperUtvidgad mätosäkerhet ±Mätområde/mätnivåAnmärkningFlex
PressureInhouse method; 1CS111876Press showing measuring instrumentGauge pressure0,005 % av utvägt tryck3 kPa – 7 MPa (g)Kvävgas
PressureInhouse method; 1CS111876Press showing measuring instrumentGauge pressure0,005 % av utvägt tryck + 0,5 Pa3 kPa – 7 MPa (abs)Kvävgas
PressureInhouse method; 1CS111876Press showing measuring instrumentGauge pressure0,01 % av diff. + 0,001 % av linjetryck + 20 Pa0,5 – 20 MPa Difftryck1) + linjetryckKvävgas
PressureInhouse method; 1CS111876Press showing measuring instrumentGauge pressure0,01 % av utvägt tryck0,5 – 20 MPa (g)Kvävgas
PressureInhouse method; 1CS111876Press showing measuring instrumentGauge pressure0,03 % av utvägt tryck0,6 – 120 MPa (g)Olja
MätstorhetMetod/procedurProdukt/objektUtvidgad mätosäkerhet ±Mätområde/mätnivåAnmärkningFlex
TemperatureInhouse method; 1CS178656Temperature sensors0,05 °C0 – 90°CPt100
  • The calibration and measurement capability (CMC) includes measureand (technology area), method, measurement range and expanded measurement uncertainty. The expanded measurement uncertainty corresponds to a coverage probability (confidence level) of ~95%.
  • The accredited body has been granted flexible scope. The body shall be able to provide an updated list of the current scope of accreditation upon request.

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