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MCC44-12IO1B

Silicon Controlled Rectifier, 80A I(T)RMS, 49000mA I(T), 1200V V(DRM), 1200V V(RRM), 2 Element, TO-240AA, TO-240AA, 7 PIN

器件类别:模拟混合信号IC    触发装置   

厂商名称:Littelfuse

厂商官网:http://www.littelfuse.com

器件标准:

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器件:MCC44-12IO1B

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器件参数
参数名称
属性值
是否Rohs认证
符合
包装说明
FLANGE MOUNT, R-XUFM-X7
Reach Compliance Code
compliant
其他特性
UL RECOGNIZED
外壳连接
ISOLATED
配置
SERIES CONNECTED, CENTER TAP, 2 ELEMENTS
最大直流栅极触发电流
100 mA
最大直流栅极触发电压
1.5 V
快速连接描述
2G-2GR
螺丝端子的描述
A-K-AK
最大维持电流
200 mA
JEDEC-95代码
TO-240AA
JESD-30 代码
R-XUFM-X7
最大漏电流
15 mA
通态非重复峰值电流
1200 A
元件数量
2
端子数量
7
最大通态电流
49000 A
最高工作温度
125 °C
最低工作温度
-40 °C
封装主体材料
UNSPECIFIED
封装形状
RECTANGULAR
封装形式
FLANGE MOUNT
峰值回流温度(摄氏度)
NOT SPECIFIED
认证状态
Not Qualified
最大均方根通态电流
80 A
断态重复峰值电压
1200 V
重复峰值反向电压
1200 V
表面贴装
NO
端子形式
UNSPECIFIED
端子位置
UPPER
处于峰值回流温度下的最长时间
NOT SPECIFIED
触发设备类型
SCR
Base Number Matches
1
文档预览
MCC44-12io1B
Thyristor Module
V
RRM
I
TAV
V
T
=
2x 1200 V
=
=
49 A
1.34 V
Phase leg
Part number
MCC44-12io1B
Backside: isolated
3
6
7
1
5
4
2
Features / Advantages:
Thyristor for line frequency
Planar passivated chip
Long-term stability
Direct Copper Bonded Al2O3-ceramic
Applications:
Line rectifying 50/60 Hz
Softstart AC motor control
DC Motor control
Power converter
AC power control
Lighting and temperature control
Package:
TO-240AA
Isolation Voltage: 3600 V~
Industry standard outline
RoHS compliant
Soldering pins for PCB mounting
Base plate: DCB ceramic
Reduced weight
Advanced power cycling
Disclaimer Notice
Information furnished is believed to be accurate and reliable. However, users should independently
evaluate the suitability of and test each product selected for their own applications. Littelfuse products are not designed for,
and may not be used in, all applications. Read complete Disclaimer Notice at
www.littelfuse.com/disclaimer-electronics.
IXYS reserves the right to change limits, conditions and dimensions.
Data according to IEC 60747and per semiconductor unless otherwise specified
20191209c
© 2019 IXYS all rights reserved
MCC44-12io1B
Thyristor
Symbol
V
RSM/DSM
V
RRM/DRM
I
R/D
V
T
Definition
Conditions
T
VJ
= 25°C
T
VJ
= 25°C
T
VJ
= 25°C
T
VJ
= 125°C
T
VJ
= 25°C
T
VJ
= 125 °C
T
VJ
= 125 °C
T
VJ
= 125 °C
min.
max. non-repetitive reverse/forward blocking voltage
max. repetitive reverse/forward blocking voltage
reverse current, drain current
forward voltage drop
Ratings
typ.
max. Unit
1300
V
1200
100
5
1.34
1.75
1.34
1.80
49
77
0.85
5.3
0.2
T
C
= 25°C
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
VJ
= 45°C
V
R
= 0 V
T
VJ
= 125 °C
V
R
= 0 V
T
VJ
= 45°C
V
R
= 0 V
T
VJ
= 125 °C
V
R
= 0 V
T
VJ
= 25°C
T
C
= 125 °C
54
10
5
0.5
T
VJ
= 125 °C; f = 50 Hz
repetitive, I
T
= 150 A
t
P
= 200 µs; di
G
/dt = 0.45 A/µs;
I
G
= 0.45 A; V =
V
DRM
non-repet., I
T
=
49 A
V =
V
DRM
R
GK
=
∞; method 1 (linear voltage rise)
V
D
= 6 V
V
D
= 6 V
V
D
=
V
DRM
t
p
=
10 µs
T
VJ
= 125°C
T
VJ
= 25 °C
T
VJ
= -40 °C
T
VJ
= 25 °C
T
VJ
= -40 °C
T
VJ
= 125°C
T
VJ
= 25 °C
T
VJ
= 25 °C
T
VJ
= 25 °C
150
180
1.15
1.24
980
1.06
V
µA
mA
V
V
V
V
A
A
V
mΩ
K/W
W
kA
kA
A
kA
V
R/D
= 1200 V
V
R/D
= 1200 V
I
T
= 100 A
I
T
= 200 A
I
T
= 100 A
I
T
= 200 A
I
TAV
I
T(RMS)
V
T0
r
T
R
thJC
R
thCH
P
tot
I
TSM
average forward current
RMS forward current
threshold voltage
slope resistance
T
C
= 85 °C
180° sine
for power loss calculation only
thermal resistance junction to case
thermal resistance case to heatsink
total power dissipation
max. forward surge current
0.53 K/W
I²t
value for fusing
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
6.62 kA²s
6.40 kA²s
4.80 kA²s
4.63 kA²s
pF
W
W
W
C
J
P
GM
P
GAV
(di/dt)
cr
junction capacitance
max. gate power dissipation
V
R
= 400 V f = 1 MHz
t
P
= 30 µs
t
P
= 300 µs
average gate power dissipation
critical rate of rise of current
150 A/µs
500 A/µs
1000 V/µs
1.5
1.6
100
200
0.2
10
450
200
2
V
V
mA
mA
V
mA
mA
mA
µs
µs
(dv/dt)
cr
V
GT
I
GT
V
GD
I
GD
I
L
I
H
t
gd
t
q
critical rate of rise of voltage
gate trigger voltage
gate trigger current
gate non-trigger voltage
gate non-trigger current
latching current
I
G
= 0.45 A; di
G
/dt = 0.45 A/µs
holding current
gate controlled delay time
V
D
= 6 V R
GK
=
V
D
= ½ V
DRM
I
G
= 0.45 A; di
G
/dt = 0.45 A/µs
turn-off time
V
R
= 100 V; I
T
= 120A; V =
V
DRM
T
VJ
=100 °C
di/dt = 10 A/µs dv/dt =
20 V/µs t
p
= 200 µs
IXYS reserves the right to change limits, conditions and dimensions.
Data according to IEC 60747and per semiconductor unless otherwise specified
20191209c
© 2019 IXYS all rights reserved
MCC44-12io1B
Package
Symbol
I
RMS
T
VJ
T
op
T
stg
Weight
M
D
M
T
d
Spp/App
d
Spb/Apb
V
ISOL
isolation voltage
t = 1 second
t = 1 minute
50/60 Hz, RMS; I
ISOL
1 mA
mounting torque
terminal torque
creepage distance on surface | striking distance through air
terminal to terminal
terminal to backside
TO-240AA
Definition
RMS current
virtual junction temperature
operation temperature
storage temperature
Ratings
Conditions
per terminal
min.
-40
-40
-40
typ.
max.
200
125
100
125
Unit
A
°C
°C
°C
g
Nm
Nm
mm
mm
V
V
81
2.5
2.5
13.0
16.0
9.7
16.0
3600
3000
4
4
Ordering
Standard
Ordering Number
MCC44-12io1B
Marking on Product
MCC44-12io1B
Delivery Mode
Box
Quantity
36
Code No.
452904
Similar Part
MCMA50P1200TA
MCMA65P1200TA
Package
TO-240AA-1B
TO-240AA-1B
Voltage class
1200
1200
Equivalent Circuits for Simulation
I
V
0
R
0
threshold voltage
slope resistance *
Thyristor
* on die level
T
VJ
= 125°C
V
0 max
R
0 max
0.85
4.1
V
mΩ
IXYS reserves the right to change limits, conditions and dimensions.
Data according to IEC 60747and per semiconductor unless otherwise specified
20191209c
© 2019 IXYS all rights reserved
MCC44-12io1B
Outlines TO-240AA
3
6
7
1
5
4
2
IXYS reserves the right to change limits, conditions and dimensions.
Data according to IEC 60747and per semiconductor unless otherwise specified
20191209c
© 2019 IXYS all rights reserved
MCC44-12io1B
Thyristor
1200
50 Hz, 80% V
RRM
1000
10
4
V
R
= 0 V
100
80
T
VJ
= 45°C
DC
180° sin
120°
60°
30°
800
I
TSM
I
FSM
600
T
VJ
= 45°C
I
2
t
T
VJ
= 125°C
I
TAVM
[A]
60
[A]
400
T
VJ
= 125°C
200
[A s]
2
40
20
0
10
-3
10
-2
10
-1
10
0
10
1
10
3
1
2
3
6
8
10
0
0
50
100
150
t [s]
Fig. 1 Surge overload current
I
TSM
, I
FSM
: Crest value, t: duration
t [ms]
Fig. 2 I
2
t versus time (1-10 ms)
T
C
[°C]
Fig. 3 Maximum forward current
at case temperature
120
R
thJA
[K/W]
1
10
1: I
GT
, T
VJ
= 125°C
2: I
GT
, T
VJ
= 25°C
3: I
GT
, T
VJ
= -40°C
100
1.5
2
P
T
[W]
80
2.5
3
V
G
1
60
2
1
3
5
4
6
4
5
[V]
40
20
DC
180° sin
120°
60°
30°
6
I
GD
, T
VJ
= 125°C
0
0
20
40
60
80
0
50
100
150
4: P
GAV
= 0.5 W
5: P
GM
= 5 W
6: P
GM
= 10 W
10
2
10
3
10
4
0.1
10
0
10
1
I
TAVM
, I
FAVM
[A]
T
A
[°C]
I
G
[mA]
Fig. 5 Gate trigger characteristics
1000
Fig. 4 Power dissipation vs. onstate current and ambient temperature (per thyristor/diode)
500
R
thKA
[K/W]
0.1
400
0.15
0.2
0.25
T
VJ
= 25°C
100
typ.
Limit
P
tot
[W]
300
0.3
0.4
t
gd
[µs]
10
200
Circuit
B6
3x MCC44 or
3x MCD44
0.5
0.6
100
0
0
50
100
0
50
100
150
1
10
100
1000
I
dAVM
[A]
T
A
[°C]
I
G
[mA]
Fig. 7 Gate trigger delay time
Fig. 6 Three phase rectifier bridge: Power dissipation versus direct output current
and ambient temperature
IXYS reserves the right to change limits, conditions and dimensions.
Data according to IEC 60747and per semiconductor unless otherwise specified
20191209c
© 2019 IXYS all rights reserved
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