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 CTT60
Thyristor-Thyristor Modules
Dimensions in mm (1mm=0.0394") Type VRSM VDSM V 900 1300 1500 1700 1900 VRRM VDRM V 800 1200 1400 1600 1800
CTT60GK08 CTT60GK12 CTT60GK14 CTT60GK16 CTT60GK18
Symbol ITRMS, IFRMS TVJ=TVJM ITAVM, IFAVM TC=85oC; 180o sine TVJ=45oC VR=0 ITSM, IFSM TVJ=TVJM VR=0
2
Test Conditions
Maximum Ratings 100 60
Unit A
t=10ms (50Hz), sine t=8.3ms (60Hz), sine t=10ms(50Hz), sine t=8.3ms(60Hz), sine t=10ms (50Hz), sine t=8.3ms (60Hz), sine t=10ms(50Hz), sine t=8.3ms(60Hz), sine repetitive, IT=150A
1500 1600 1350 1450 11200 10750 9100 8830 150
A
i dt
TVJ=45oC VR=0 TVJ=TVJM VR=0
A2s
TVJ=TVJM f=50Hz, tp=200us (di/dt)cr VD=2/3VDRM IG=0.45A diG/dt=0.45A/us (dv/dt)cr PGM PGAV VRGM TVJ TVJM Tstg VISOL Md Weight 50/60Hz, RMS _ IISOL<1mA
A/us non repetitive, IT=ITAVM 500 1000 10 5 0.5 10 -40...+125 125 -40...+125 t=1min t=1s 3000 3600 2.5-4.0/22-35 2.5-4.0/22-35 90 V/us W W V
o
TVJ=TVJM; VDR=2/3VDRM RGK= ; method 1 (linear voltage rise) TVJ=TVJM IT=ITAVM tp=30us tp=300us
C
V~ Nm/lb.in. g
Mounting torque (M5) Terminal connection torque (M5) Typical including screws
DEECorp.
CTT60
Thyristor-Thyristor Modules
Symbol Test Conditions Characteristic Values 5 1.57 0.85 3.7 VD=6V; VD=6V; TVJ=TVJM;
o
Unit mA V V m V mA V mA mA mA us us uC A K/W K/W mm mm m/s2
IRRM, IDRM TVJ=TVJM; VR=VRRM; VD=VDRM VT, VF VTO rT VGT IGT VGD IGD IL IH tgd tq QS IRM RthJC RthJK dS dA a per thyristor/diode; DC current per module per thyristor/diode; DC current per module Creeping distance on surface Strike distance through air Maximum allowable acceleration TVJ=25 C; tp=10us; VD=6V IG=0.45A; diG/dt=0.45A/us TVJ=25oC; VD=6V; RGK= TVJ=25 C; VD=1/2VDRM IG=0.45A; diG/dt=0.45A/us TVJ=TVJM; IT=150A; tp=200us; -di/dt=10A/us VR=100V; dv/dt=20V/us; VD=2/3VDRM TVJ=TVJM; IT, IF=50A; -di/dt=3A/us typ.
o
IT, IF=200A; TVJ=25 C For power-loss calculations only (TVJ=125oC)
o
o
TVJ=25 C TVJ=-40oC TVJ=25oC TVJ=-40oC VD=2/3VDRM
1.5 1.6 100 200 0.2 10 450 200 2 150 100 24 0.45 0.225 0.65 0.325 12.7 9.6 50
FEATURES
* International standard package * Direct copper bonded Al2O3-ceramic base plate * Planar passivated chips * Isolation voltage 3600 V~ * UL registered, E 72873 * Gate-cathode twin pins for version 1
APPLICATIONS
* DC motor control * Softstart AC motor controller * Light, heat and temperature control
ADVANTAGES
* Space and weight savings * Simple mounting with two screws * Improved temperature and power cycling * Reduced protection circuits
DEECorp.
CTT60
Thyristor-Thyristor Modules
Fig. 1 Surge overload current ITSM, IFSM: Crest value, t: duration
Fig. 2 i2dt versus time (1-10 ms)
Fig. 2a Maximum forward current at case temperature 10
1: IGT, TVJ = 125oC 2: IGT, TVJ = 25oC 3: IGT, TVJ = -40oC
V
VG
3 1 1 4 2 5 6
4: PGAV = 0.5 W IGD, TVJ = 125 C 0.1 100 101 102
o
5: PGM =
5W
6: PGM = 10 W 103 IG
mA 104
Fig. 3 Power dissipation versus on-state current and ambient temperature (per thyristor or diode)
Fig. 4 Gate trigger characteristics
1000 TVJ = 25oC
s
tgd typ. 100 Limit
10
3 x CTT60
1 10
100 IG
mA
1000
Fig. 5 Three phase rectifier bridge: Power dissipation versus direct output current and ambient temperature
Fig. 6 Gate trigger delay time
DEECorp.
CTT60
Thyristor-Thyristor Modules
Fig. 7 Three phase AC-controller: Power dissipation versus RMS output current and ambient temperature
3 x CTT60
CTT60
Fig. 8 Transient thermal impedance junction to case (per thyristor or diode) RthJC for various conduction angles d: d DC 180oC 120oC 60oC 30oC RthJC (K/W) 0.45 0.47 0.49 0.505 0.52
Constants for ZthJC calculation: i 1 2 3 Rthi (K/W) 0.014 0.026 0.41 ti (s) 0.015 0.0095 0.175
CTT60
Fig. 9 Transient thermal impedance junction to heatsink (per thyristor or diode) RthJK for various conduction angles d: d DC 180oC 120oC 60oC 30oC RthJK (K/W) 0.65 0.67 0.69 0.705 0.72
Constants for ZthJK calculation: i 1 2 3 4 Rthi (K/W) 0.014 0.026 0.41 0.2 ti (s) 0.015 0.0095 0.175 0.67
DEECorp.


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