MMO 110 MLO 110
AC Controller Modules
IRMS = 112 A VRRM = 800-1400 V
Preliminary Data
VRSM VDSM V 800 1200 1400 VRRM VDRM V 800 1200 1400 MMO 110-08io7 MMO 110-12io7 MMO 110-14io7 MLO 110-08io7 MLO 110-12io7 MLO 110-14io7 Type
MMO
(W1C)
A G/F N
I/H
MLO
(W1H)
A G/F
I/H
Symbol IRMS ITRMS ITAVM ITSM
Conditions TC = 85°C, 50 - 400 Hz, module TC = 85°C; (180° sine) TVJ = 45°C VR = 0 TVJ = 125°C VR = 0 t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine
Maximum Ratings 112 81 51 1000 1070 870 930 5000 4810 3780 3630 100 A A A A A A A A2s A2s A2s A2s A/µs
Features • Thyristor controller for AC (circuit W1C acc. to IEC) for mains frequency • Isolation voltage 3000 V~ • Planar glass passivated chips • Low forward voltage drop • Lead suitable for PC board solering
I2t
TVJ = 45°C VR = 0 TVJ = 125°C VR = 0
Applications • Switching and control of single and three phase AC circuits • Light and temperature control • Softstart AC motor controller • Solid state switches
(di/dt)cr
TVJ = 125°C repetitive, IT = 50 A f = 50 Hz, tP = 200 µs VD = 2/3 VDRM IG = 0.45 A non repetitive, IT = ITAVM diG/dt = 0.45 A/µs TVJ = 125°C; VDR = 2/3 VDRM RGK = ∞; method 1 (linear voltage rise) TVJ = 125°C IT = ITAVM tp = 30 µs tp = 300 µs
500 1000 10 5 0.5 10 -40...+150 150 -40...+125
A/µs V/µs W W W V °C °C °C V~ V~
Advantages • Easy to mount with two screws • Space and weight savings • Improved temperature and power cycling • High power density • Small and light weight
(dv/dt)cr PGM PGAVM VRGM TVJ TVJM Tstg VISOL Md Weight
50/60 Hz, RMS IISOL ≤ 1 mA Mounting torque (M4) typ.
t = 1 min t=1s
2500 3000
1.5...2.0/14...18 Nm/lb.in. 18 g
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© 2002 IXYS All rights reserved
241
Data according to IEC 60747 and to a single thyristor/diode unless otherwise stated. IXYS reserves the right to change limits, test conditions and dimensions.
MMO 110 MLO 110
Symbol ID , IR VT VT0 rT VGT IGT VGD IGD IL IH tgd RthJC RthCH dS dA a Conditions TVJ = 125°C; VR = VRRM; VD = VDRM IT = 150 A; TVJ = 25°C Characteristic Values ≤ ≤ 5 1.57 0.85 5.6 ≤ ≤ ≤ ≤ ≤ ≤ ≤ ≤ ≤ 1.5 1.9 100 200 0.2 1 200 100 2 0.8 0.4 typ. typ. 0.12 0.06 11.2 17.0 50 mA V V mΩ V V mA mA V mA mA mA µs K/W K/W K/W K/W mm mm m/s2
0.1 100 IGD, TVJ = 125°C 101 102 3 1 1 4 2 5 6 VG 10
1: IGT, TVJ = 125°C 2: IGT, TVJ = 25°C 3: IGT, TVJ = -40°C
V
For power-loss calculations only VD = 6 V VD = 6 V TVJ = 25°C TVJ = -40°C TVJ = 25°C TVJ = -40°C
TVJ = 125°C; VD = 2/3 VDRM TVJ = 25°C; tP = 10 µs IG = 0.45 A; diG/dt = 0.45 A/µs TVJ = 25°C; VD = 6 V; RGK = ∞ TVJ = 25°C; VD = ½ VDRM IG = 0.45 A; diG/dt = 0.45 A/µs per thyristor; DC per module per thyristor; sine 180° el per module Creeping distance on surface Creepage distance in air Max. allowable acceleration
4: PGAV = 0.5 W 5: PGM = 5W 6: PGM = 10 W 103 IG
mA 104
Fig. 1 Gate trigger characteristics
1000 TVJ = 25°C
µs
tgd typ. 100 Limit
Dimensions in mm (1 mm = 0.0394")
10
1 10
100 IG
mA
1000
Fig. 2 Gate trigger delay time
© 2002 IXYS All rights reserved
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