T60404-N4646-X661 VACUUMSCHMELZE | Alldatasheet

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V A C U U M S C H M E L Z E SPECIFICATION Item no.: T60404-N4646-X661 K-no.: 24511 25 A Current Sensor for 5V- Supply Voltage Date: 02.02.2017 Customer: Standard type Customers Part no.: Page 1 von 4 Hrsg.: MC-PD editor Bearb: designer DJ MC-PM: Sn. check freig.: BEF released Copying of this document, disclosing it to third parties or using the contents there for any purposes without express written authorization by use illegally forbidden Any offenders are liable to pay all relevant damages. For electronic current measurement: DC, AC, pulsed, mixed ..., with a galvanic isolation between primary circuit (high power) and secondary circuit (electronic circuit)

Description

  • Closed loop (compensation) Current Sensor with magnetic field probe
  • Printed circuit board mounting
  • Casing and materials UL-listed Characteristics
  • Excellent accuracy
  • Very low offset current
  • Very low temperature dependency and offset current drift
  • Very low hysteresis of offset current
  • Short response time
  • Wide frequency bandwidth
  • Compact design
  • Reduced offset ripple

Applications

Mainly used for stationary operation in industrial applications:

  • AC variable speed drives and servo motor drives
  • Static converters for DC motor drives
  • Battery supplied applications
  • Switched Mode Power Supplies (SMPS)
  • Power Supplies for welding applications
  • Uninterruptible Power Supplies (UPS) Electrical data – Ratings IPN Primary nominal r.m.s. current 25 A Vout Output voltage @ I P VRef ± (0.625*I P/I PN ) V Vout Output voltage @ I P=0, T A=25°C V Ref ± 0.00135 V VRef External Reference voltage range 0…4 V Internal Reference voltage 2.5 ±0.005 V KN Turns ratio 1…3 : 2000 Accuracy – Dynamic performance data min. typ. max. Unit IP,max Max. measuring range ±85 X Accuracy @ I PN , T A= 25°C 0.7 % εL Linearity 0.1 % Vout - VRef Offset voltage @ I P=0, T A= 25°C ±1.35 mV ∆Vo / VRef / ∆T Temperature drift of V out @ I P=0, VRef =2,5V, TA= -40…85°C 1.4 10 ppm/°C tr Response time @ 90% von I PN 300 ns ∆t (I P,max ) Delay time at di/dt = 100 A/ µs 200 ns f Frequency bandwidth DC…200 kHz General data min. typ. max. Unit TA Ambient operating temperature -40 +85 °C TS Ambient storage temperature (acc to M3101) -40 +8 5 °C m Mass 12 g VC Supply voltage 4.75 5 5.25 V IC Current consumption 15 mA Constructed and manufactored and tested in accorda nce with EN 61800-5-1 (Pin 1 - 6 to Pin 7 – 10) Reinforced insulation, Insulation material group 1 , Pollution degree 2 Sclear Clearance (component without solder pad) 7.4 mm Screep Creepage (component without solder pad) 8.0 mm Vsys System voltage overvoltage category 3 RMS 300 V Vwork Working voltage (tabel 7 acc. to EN61800-5-1) overvoltage category 2 RMS 650 V U PD Rated discharge voltage peak value 1320 V Note: “According UL 508: Max. potential difference = 600 V AC Date Name Issue Amendment 02.02.17 DJ 83 Page A1, M-sheet M3101 added (storag e temperature). Minor change 11.08.14 KRe 83 Marking changed from 4646X661-83 4646-X661-83. Electrical data: Vout changed. CN-14-074

V A C U U M S C H M E L Z E SPECIFICATION Item no.: T60404-N4646-X661 K-no.: 24511 25 A Current Sensor for 5V- Supply Voltage Date: 02.02.2017 Customer: Standard type Customers Part no.: Page 2 von 4 Hrsg.: MC-PD editor Bearb: designer DJ MC-PM: Sn. check freig.: BEF released Copying of this document, disclosing it to third parties or using the contents there for any purposes without express written authorization by use illegally forbidden Any offenders are liable to pay all relevant damages. For electronic current measurement: DC, AC, pulsed, mixed ..., with a galvanic isolation between primary circuit (high power) and secondary circuit (electronic circuit) Mechanical outline (mm): General tolerances DIN ISO 2768-c Tolerances grid distance ±0,2 mm 22,2 0,5 7,62 1,84 2,54 12,7 2,14 1,905 5,72 Ø1,0 0,46x0,46 ≤14 3,5 6 4 +0,5 - 0,3 Marking DC = Date Code F = Factory Schematic diagram VC Ip R M 1...3 4...6 V ref IN / OUT Vout GND 680 40k int REF 10k 10k OUT 40k Possibilities of wiring (@ TA = 85°C) primary primary current output voltage turns ratio primary wiring windings RMS maximal RMS resistance N P IP [A] Î P,max [A] V out (IP) [V] K N R P [mΩ ] 1 25 ±85 2.5±0.625 1:2000 0.33 2 12 ±42 2.5±0.600 2:2000 1.5 . . 3 8 ±28 2.5±0.600 3:2000 3 . 3 1 4 6 > 3 1 4 6 > 3 1 4 6 > Connections: 1...6: ∅ 1 mm UL-sign 4646-X661-83 DC F Marking: Explanation: DC = Date Code [Format YWW]

V A C U U M S C H M E L Z E SPECIFICATION Item no.: T60404-N4646-X661 K-no.: 24511 25 A Current Sensor for 5V- Supply Voltage Date: 02.02.2017 Customer: Standard type Customers Part no.: Page 3 von 4 Hrsg.: MC-PD editor Bearb: designer DJ MC-PM: Sn. check freig.: released Weitergabe sowie Vervielfältigung dieser Unterlage, Verwertung und Mitteilung ihres Inhalts nicht gestattet, soweit nicht ausdrücklich zugestanden. Zuwiderhandlungen verpflichten zu Schadenersatz. Alle Rechte für den Fall der Patenterteilung oder GM-Eintragung vorbehalten Copying of this document, disclosing it to third parties or using the contents there for any purposes without express written authorization by use illegally forbidden. Any offenders are liable to pay all relevant damages. For electronic current measurement: DC, AC, pulsed, mixed ..., with a galvanic isolation between primary circuit (high power) and secondary circuit (electronic circuit) Electrical Data min. typ. max. Unit VCtot Maximum supply voltage (without function) 7 V IC Supply Current with primary current 15mA +I p*K N +V out /R L mA Iout,SC Short circuit output current ±20 mA R P Resistance / primary winding @ T A=25°C 1 m Ω R S Secondary coil resistance @ T A=85°C 67 Ω R i,Ref Internal resistance of Reference input 670 Ω R i,(V out ) Output resistance of V out 1 Ω R L External recommended resistance of V out 1 k Ω C L External recommended capacitance of V out 500 pF ∆XTi / ∆T Temperature drift of X @ T A = -40 ... +85 °C 40 ppm /Κ ∆V0 = ∆(Vout -VRef ) Sum of any offset drift including: 2 6 mV V 0t Longtermdrift of V 0 1 mV V 0T Temperature drift von V 0 @ T A = -40 ...+85°C 1 mV V 0H Hysteresis of V out @ I P=0 (after an overload of 10 x I PN ) 2 mV Δ V0/ΔVC Supply voltage rejection ratio 1 mV/V voss Offsetripple (with 1 MHz- filter first order) 30 mV voss Offsetripple (with 100 kHz- filter firdt order) 3 6 mV voss Offsetripple (with 20 kHz- filter first order) 0. 8 1.5 mV C k Maximum possible coupling capacity (primary – seco ndary) 5 10 pF Mechanical stress according to M3209/3 30g Settings: 10 – 2000 Hz, 1 min/Octave, 2 hours Inspection (Measurement after temperature balance of the samples at room temperature) SC = significant characteristic Vout (SC) (V) M3011/6: Output voltage vs. external reference (I P=25A, 40-80Hz) 625 ±0,7% mV Vout –VRef (I P=0) (V) M3226: Offset voltage ± 1.35 mV Vd (V) M3014: Test voltage, rms, 1 s 1.5 kV pin 1 – 6 vs. pin 7 – 10 V e (AQL 1/S4) Partial discharge voltage acc.M3024 (RM S) 1400 V with V vor (RMS) 1750 V Type Testing (Pin 1 - 6 to Pin 7 - 10) VW HV transient test according to M3064 (1,2 µs / 50 µs-wave form) 8 kV Vd Testing voltage to M3014 (5 s) 3 kV Ve Partial discharge voltage acc.M3024 (RMS) 1400 V with V vor (RMS) 1750 V Applicable documents Temperature of the primary conductor should not exceed 110°C Current direction: A positive output current appears at point I S, by primary current in direction of the arrow. Housing and bobbin material UL-listed: Flammability class 94V-0. Enclosures according to IEC529: IP50. Further standards UL 508 file E317483, category NMTR2 / NMTR8

V A C U U M S C H M E L Z E SPECIFICATION Item no.: T60404-N4646-X661 K-no.: 24511 25 A Current Sensor for 5V- Supply Voltage Date: 02.02.2017 Customer: Standard type Customers Part no.: Page 4 von 4 Hrsg.: MC-PD editor Bearb: designer DJ MC-PM: Sn. check freig.: released Weitergabe sowie Vervielfältigung dieser Unterlage, Verwertung und Mitteilung ihres Inhalts nicht gestattet, soweit nicht ausdrücklich zugestanden. Zuwiderhandlungen verpflichten zu Schadenersatz. Alle Rechte für den Fall der Patenterteilung oder GM-Eintragung vorbehalten Copying of this document, disclosing it to third parties or using the contents there for any purposes without express written authorization by use illegally forbidden. Any offenders are liable to pay all relevant damages. For electronic current measurement: DC, AC, pulsed, mixed ..., with a galvanic isolation between primary circuit (high power) and secondary circuit (electronic circuit) Explanation of several of the terms used in the tablets (in alphabetical order) t r: Response time (describe the dynamic performance for the specified measurement range), measured as delay time at I P = 0,9 . IPN between a rectangular current and the output voltage V OUt (I p) Δt (I Pmax ): Delay time (describe the dynamic performance for the rapid current pulse rate e.g short circuit current) measured between I Pmax and the output voltage V out (I Pmax ) with a primary current rise of di P/dt ≥ 100 A/ µs. U PD Rated discharge voltage (recurring peak voltage separated by the insulation) proved with a sinusoidal voltage V e U PD = √2 * V e / 1,5 V vor Defined voltage is the RMS valve of a sinusoidal voltage with peak value of 1,875 * U PD required for partial discharge test in IEC 61800-5-1 V vor = 1,875 *U PD / √2 V sys System voltage RMS value of rated voltage according to IEC 61800-5-1 V work Working voltage voltage according to IEC 61800-5-1 which occurs by design in a circuit or across insulation V 0: Offset voltage between V out and the rated reference voltage of Vref = 2,5V. Vo = V out (0) - 2,5V V 0H : Zero variation of V o after overloading with a DC of tenfold the rated value V0t : Long term drift of V o after 100 temperature cycles in the range -40 bis 85 °C. X: Permissible measurement error in the final inspection at RT, defined by 10,625V ) 0 ()(V100 X out −−⋅= out PN VI Xges (I PN ): Permissible measurement error including any drifts over the temperature range by the current measurement I PN ( ) 10,625V 5 , 2IV100 X PN out ges −−⋅= V % or ( ) 10,625V IV100 X PN out ges −−⋅= ref V % ε L: Linearity fault defined by ) 0 ()(V ) 0 () (V I I100 PN P L out PN out out Pout VI VI −−⋅=ε %