SPECIFICATION Item no.: T60404-N4646-X400

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1 SPECFCATON tem no: T60404-N4646-X400 Date: For the electronic measurement of currents: solation between the primary circuit (high power) and the secondary circuit (electronic circuit) Customer: Standard type Customers Part no: Page 1 of 2 Description Closed loop (compensation) Current Sensor with magnetic field probe Printed circuit board mounting Casing and materials UL-listed Electrical data Ratings 1) Characteristics Excellent accuracy Very low offset current Very low temperature dependency and offset current drift Very low hysteresis of offset current Low response time Wide frequency bandwidth Compact design Reduced offset ripple Applications ainly 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 ode Power Supplies (SPS) Power Supplies for welding applications Uninterruptable Power Supplies (UPS) PN Primary nominal rms current 25 A R easuring resistance V C=± 12V Ω V C=± 15V Ω SN Secondary nominal rms current 25 ma K N Turns ratio 1 3 : 1000 min typ max Unit P,max ax measuring V C = ±12V, R = 10 Ω (t max = 10sec) ±120 V C = ±15V, R = 22 Ω (t max = 10sec) ±130 A X PN, T A= 25 C % ε L Linearity 01 % 0 Offset P=0, T A= 25 C ma t r Response time 500 ns t ( P,max) Delay time at di/dt = 100 A/µs 200 ns f Frequency bandwidth DC200 khz min typ max Unit T A Ambient operating temperature C T S Ambient storage temperature C m ass 12 g V C Supply voltage ±114 ±12 or ±15 ±1575 V C Current consumption 18,5 ma Constructed and manufactored and tested in accordance with EN (Pin 1-6 to Pin 7 9) Reinforced insulation, nsulation material group 1, Pollution degree 2 S clear clearance (component without solder pad) 102 mm S creep creepage (component without solder pad) 102 mm V sys System voltage overvoltage category 3 RS 600 V V work Working voltage (table 7 acc to EN ) RS 1020 V U PD Rated discharge voltage peak value 1400 V ax potential difference acc to UL 508 RS 600 V AC Date Name suue Amendment KRe 82 echanical outline: marking with UL-sign and max potential difference added CN Le 82 Write error: 50 A Current sensor changed into 25 A current sensor nsignificant KB-P A: KRe purposes without express written authorization by use illegally forbidden freig: HS

2 SPECFCATON tem no: T60404-N4646-X400 Date: For the electronic measurement of currents: solation between the primary circuit (high power) and the secondary circuit (electronic circuit) Customer: Standard type Customers Part no: Page 2 of 2 echanical outline (mm): General tolerances DN SO 2768-c 1,74 1, ,25 2x254= 5,08 Z 4 6 Tolerances grid distance ±0,2mm Detail Z 0,6 DC = Date Code F= Factory Connections: 16: 1,0 mm 79: 0,6x0,7 mm 1,29 11,43 (2,64) 12, x2,54 7, ,7 14,45 arking arking: UL-sign 4646X400 F DC 21 35±05 0,65 3x0,7x0,6 6xØ1,0 Schematic diagram 13 p 8 V C 7 S - R C A V C Possibilities of wiring for V C = ±15V 1) (@ T A = 85 C, R = 22 Ω) primary primary current output current turns ratio primary wiring windings RS maximal RS resistance N P P [A] Î P,max [A] S ( P) [ma] K N R P [mω] :1000 0,12 > > :1000 0,54 > > :1000 1,1 > > Temperature of the primary conductor should not exceed 100 C Additional information is obtainable on request This specification is no declaration of warranty acc BGB 443 dar KB-P A: KRe purposes without express written authorization by use illegally forbidden freig: HS

3 Additional nformation tem No: T60404-N4646-X400 Date: Customer: Customers Part No: Page 1 of 3 min typ max Unit V Ctot aximum supply voltage (without function) ±18 V ±1575 ±18 V: for 1s per hour R S Secondary coil T A=85 C 88 Ω R p Primary coil resistance per T A=25 C 1 mω X Ti Temperature drift of T A = C 01 % 0ges Offset current (including 0, 0t, 0T) 015 ma 0t Long term drift Offset current ma 0T Offset current temperature drift T A = C 005 ma 0H Hyteresis P=0 (caused by primary current 3 x PN) ma 0/ V C Supply voltage rejection ratio 001 ma/v i oss Offset ripple* (with1 Hz- filter first order) 0,15 ma i oss Offset ripple* (with 100 khz- filter first order) ma i oss Offset ripple* (with 20 khz- filter first order) ma C k aximum possible coupling capacity (primary secondary) 4 pf echanical Stress according to 3209/3 10g Settings: Hz, 1 min/oktave, 2 hours An exceptionally high rate of on/off switching of the supply voltage accelerates the aging process of the sensor nspection 1) (easurement after temperature balance of the samples at room temperature) K N(N 1/N 2) (V) 3011/6 Transformation ratio ( P=3*10A, Hz) 1 3 : 1000 ± 05 % 0 (V) 3226 Offset current < 01 ma V P,eff (V) 3014 Test voltage, rms, 1s 25 kv Pin 1-6 to Pin 7-9 V e (AQL 1/S4) Partial discharge voltage acc 3024 (RS) 1300 V with V vor (RS) 1625 V Type Testing (Pin 1-6 to Pin 7 9) Designed according standard EN with insulation material group 1 V W HV transient test according (to 3064) 8 kv (1,2 µs / 50 µs-wave form) V d Testing voltage acc 3014 (RS) (5 s) 5 kv V e Partial discharge voltage acc 3024 (RS) 1500 V with V vor (RS) 1875 V Date Name ssue Amendment KRe 82 Applicable documents: further standards added CN Le 82 Write error: 50 A Current sensor changed into 25 A current sensor nsignificant Weitergabe sowie Vervielfältigung dieser Unterlage, Verwertung und itteilung ihres nhalts nicht gestattet, soweit nicht ausdrücklich zugestanden Zuwiderhandlungen verpflichten zu Schadenersatz Alle Rechte für den Fall der Patenterteilung oder G-Eintragung vorbehalten KB-P A: KRe freig: HS purposes without express written authorization by use illegally forbidden

4 Additional nformation tem No: T60404-N4646-X400 Date: Customer: Customers Part No: Page 2 of 3 E A=km 1=St 2=kg 3=g 4=l 5=m 6=m² 7=m³ 8=mm 9:Paar Limit curve of measurable current Î P(R ambient temperature T A 85 C N P * Î P [A] V C = /-12V - 5% V C = /-15V - 5% R [Ω] 1) aximum measuring range (µs-range) 1) Output current behaviour of a 3kA current V C = ±15V und R = 25Ω [A] p [A] a / KN [A] t [µs] Fast increasing currents (higher than the specified p,max), eg in case of a short circuit, can be transmitted because the currents are transformed directly The offset ripple can be reduced by an external low pass Simplest solution is a passive low pass filter of 1st order with f g 1 = 2π R C a n this case the response time is enlarged t is calculated from: t t 2, 5R r r C a Applicable documents Current direction: A positive output current appears at point S, by primary current in direction of the arrow Constructed and manufactored and tested in accordance with EN Further standards UL 508 ; file E317483, category NTR2 / NTR8 Hrsg: KB-E designer Weitergabe sowie Vervielfältigung dieser Unterlage, Verwertung und itteilung ihres nhalts nicht gestattet, soweit nicht ausdrücklich zugestanden Zuwiderhandlungen verpflichten zu Schadenersatz Alle Rechte für den Fall der Patenterteilung oder G-Eintragung vorbehalten KB-P A:KRe freig: check purposes without express written authorization by use illegally forbidden

5 Additional nformation tem No: T60404-N4646-X400 Date: Customer: Customers Part No: Page 3 of 3 E A=km 1=St 2=kg 3=g 4=l 5=m 6=m² 7=m³ 8=mm 9:Paar 0H: 0t: t r: t ( Pmax): X ges( PN): Zero variation of o after overloading with a DC of tenfold the rated value (R = R N) Long term drift of o after 100 temperature cycles in the range -40 bis 85 C Response time (describe the dynamic performance for the specified measurement range), measured as delay time at P = 0,9 Pmax between a rectangular current and the output current Delay time (describe the dynamic performance for the rapid current pulse rate eg short circuit current) measured between Pmax and the output current i a with a primary current rise of di 1/dt = 100 A/µs The sum of all possible errors over the temperature range by measuring a current PN: S ( PN ) Xges = % K N SN X: Permissible measurement error in the final inspection at RT, defined by X = 100 SB 1 % SN where SB is the output DC value of an input DC current of the same magnitude as the (positive) rated current ( o = 0 ) X Ti: ε L: Temperature drift of the rated value orientated output term SN (cf Notes on F i) in a specified temperature range, obtained by: ( T ) ( T ) SB A2 SB A1 X Ti = 100 % SN Linearity fault defined by = 100 P Sx ε % L PN SN Where P is any input DC and Sx the corresponding output term SN: see notes of F i ( o = 0) This Additional information is no declaration of warranty according BGB 443 Hrsg: KB-E designer Weitergabe sowie Vervielfältigung dieser Unterlage, Verwertung und itteilung ihres nhalts nicht gestattet, soweit nicht ausdrücklich zugestanden Zuwiderhandlungen verpflichten zu Schadenersatz Alle Rechte für den Fall der Patenterteilung oder G-Eintragung vorbehalten KB-P A:KRe freig: check purposes without express written authorization by use illegally forbidden

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