• Aucun résultat trouvé

Rectifier Diode ModulesSEMIPACK® 0SKKD 15SKKE 15SEMIPACK

N/A
N/A
Protected

Academic year: 2022

Partager "Rectifier Diode ModulesSEMIPACK® 0SKKD 15SKKE 15SEMIPACK"

Copied!
6
0
0

Texte intégral

(1)

© by SEMIKRON 0898 B 1 – 7

1)SKKD types only

2)Using tin plated connectors with flexible leads of 6 mm2 for the main terminals

3)Flexible leads of 6 mm2 soldered to the main terminals

VRSM VRRM IFRMS (maximum value for continuous operation) 24 A2); 28 A3) 24 A2); 28 A3) 60 A

IFAV (sin. 180; Tcase = 71 °C)

V V 17,5 A3) 17,5 A3) 38 A

500 700 900 1300 1500 1700

400 600 800 1200 1400 1600

SKKD 15/06 SKKD 15/08 SKKD 15/12 SKKD 15/14 SKKD 15/16

SKKE 15/04 SKKE 15/06 SKKE 15/08 SKKE 15/12 SKKE 15/14 SKKE 15/16

SKKD 26/12 SKKD 26/14 SKKD 26/16

Symbol Conditions SKKD 15

SKKE 15 SKKD 26 Units IFAV

ID1)

sin. 180 (Tcase = . . . ) B2/B6 Tamb = 45 °C;

P 13A/125 P 3/120 P 3/180

15 (82 °C) – 18 / 22,5

– –

26 (93 °C) 31 (85°C)

– 44 / 48 53 / 59

A A A A A IFSM

i2t

Tvj = 25 °C; 10 ms Tvj = 125 °C; 10 ms Tvj = 25 °C; 8,3 ... 10 ms Tvj = 125 °C; 8,3 ... 10 ms

320 280 510 390

550 480 1 500 1 150

A A A2s A2s

IRD Tvj = 125 °C, VRD = VRRM 2,5 3 mA

VF V(TO) rT

Tvj = 25 °C; IF = 75 A; max.

Tvj = 125 °C Tvj = 125 °C

1,85 0,85 15

1,35 0,85 6

V V mΩ Rthjc

Rthch

2,0 / 1,0 0,2 / 0,1

1,0 / 0,5 0,2 / 0,1

°C/W

°C/W Tvj

Tstg

– 40 ... + 125 – 40 ... + 125

°C

°C

Visol a. c. 50 Hz; r.m.s; 1 s/1 min 3600 / 3000 V~

M1 M2 a w

to heatsink to terminals

approx.

1,5 (13 lb. in.)

± 15 % – 5 . 9,81

50

5 (44 lb. in.)

± 15 % 3 (26 lb.in.)

± 15 % 5 . 9,81

95

Nm Nm m/s2

g

Case

page B 1 – 30 SKKD 15: A 3

SKKE 15: A 4

page B 1 – 95 A 10

Rectifier Diode Modules SEMIPACK

®

0

SKKD 15 SKKE 15 SEMIPACK

®

1

SKKD 26

Features

• Heat transfer through aluminium oxide ceramic isolated metal baseplate

• Hard soldered joints for high reliability

• UL recognized, file no. E 63 532 Typical Applications

• Non-controllable rectifiers for AC/AC converters

• Line rectifiers for transistorized AC motor controllers

• Field supply for DC motors

• SKKE: Free-wheeling diodes

SKKD SKKE

SI (US) units per diode / per module 1)

(2)

© by SEMIKRON B 1 – 8

(3)

© by SEMIKRON B 1 – 9

(4)

© by SEMIKRON B 1 – 10

(5)

© by SEMIKRON

B 1 – 30 0895

(6)

© by SEMIKRON 0898 B 1 – 95 SKKT 19 . . . 105

Case A 5 SEMIPACK® 1

IEC 192-2: A 77 A JEDEC: TO-240 AA

UL recognized, file no. E 63 532

SKKT 20/ . . . 106/

Case A 46 SEMIPACK® 1

IEC 192-2: A 77 A JEDEC: TO-240 AA

Dimensions in mm Dimensions in mm

SKKD 26 . . . 100 Case A 10

SKNH 56 . . . 91 Case A 7

SKKH 26 . . . 105 Case A 6

SKKL 56 . . . 105 Case A 9

SKND 46 . . . 81 Case A 19

SKMT 92 Case A 72

SKKE 81 Case A 12

SKKH 27 . . . 106 Case A 47

SKKT 20 B . . . 106 B Case A 48

SKKL 42 . . . 106 Case A 59

Références

Documents relatifs

[r]

Despite that several studies focused in the study of wind energy conversion systems using doubly fed induction generator (DFIG) (Boukhezzar and Siguerdidjane [2009], Abo-Khalil

We have formally established that the proposed controller achieves the objectives it has been designed to: (i) almost unitary power factor; (ii) well regulated DC-link

A new circuit for driving a piezoelectric transformer with quasisquare waveforms has been presented analytically and verified experimentally and includes recovery of the

This paper presents a design optimization methodology of a Hybrid-Excited Flux-Switching Machine (HEFSM) for aircraft DC power generation using a finite element model.. The use

Keywords induction motor, direct fi led oriented control, Luenberger observer, estimation, space vector modulation (SVM), sliding mode control, boost-recti fi er..

In: The international conference on ‘‘computer as a tool’’, EUROCON, Warsaw, pp 1851–1855 Zhuang X, Rahman MF 2003 Sensorless sliding mode control of an interior permanent

We have formally established that the proposed controller achieves the objectives it has been designed to: (i) almost unitary power factor; (ii) well regulated DC-link