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PM150RSE120 Datasheet(PDF) 4 Page - Mitsubishi Electric Semiconductor

Part No. PM150RSE120
Description  INTELLIGENT POWER MODULES FLAT-BASE TYPE INSULATED PACKAGE
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Manufacturer  MITSUBISHI [Mitsubishi Electric Semiconductor]
Direct Link  http://www.mitsubishichips.com
Logo MITSUBISHI - Mitsubishi Electric Semiconductor

PM150RSE120 Datasheet(HTML) 4 Page - Mitsubishi Electric Semiconductor

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MITSUBISHI <INTELLIGENT POWER MODULES>
PM150RSE120
FLAT-BASE TYPE
INSULATED PACKAGE
Jul. 2005
Inverter part
VD = 15V
(Fig. 5,6)
Break part
–20
≤ Tj ≤ 125°C, VD = 15V
(Fig. 5,6)
–20
≤ Tj ≤ 125°C, VD = 15V (Fig. 5,6)
VD = 15V
(Fig. 5,6)
CONTROL PART
(Note-3) Fault output is given only when the internal OC, SC, OT & UV protection.
Fault output of OT protection operate by lower arm.
Fault output of OC, SC protection given pulse.
Fault output of OT, UV protection given pulse while over level.
VCE(sat)
ICES
VFM
V
mA
Min.
Typ.
Max.
V
Collector-Emitter
Saturation Voltage
FWDi Forward Voltage
Collector-Emitter
Cutoff Current
IF = 50A
(Fig. 2)
Tj = 25
°C
Tj = 125
°C
Unit
Parameter
Symbol
Test Condition
Limits
3.30
3.25
3.5
1
10
2.65
2.60
2.5
Tj = 25
°C
Tj = 125
°C
BRAKE PART
VD = 15V, IC = 50A
VCIN = 0V, Pulsed
(Fig. 1)
VCE = VCES, VCIN = 15V
(Fig. 4)
3.5
3.5
Main terminal
screw : M5
Mounting part
screw : M5
Symbol
Parameter
Mounting torque
Mounting torque
Weight
Test Condition
Unit
N • m
N • m
g
Limits
Min.
Typ.
Max.
2.5
2.5
3.0
3.0
920
MECHANICAL RATINGS AND CHARACTERISTICS
ID
Circuit Current
Input ON Threshold Voltage
Input OFF Threshold Voltage
Over Current Trip Level
Short Circuit Trip Level
Over Current Delay Time
Over Temperature Protection
Supply Circuit Under-Voltage
Protection
Fault Output Current
Minimum Fault Output Pulse
Width
Vth(on)
Vth(off)
OC
SC
toff(OC)
OT
OTr
UV
UVr
IFO(H)
IFO(L)
tFO
Parameter
Symbol
Trip level
Reset level
Trip level
Reset level
°C
V
mA
ms
82
20
1.8
2.3
125
12.5
0.01
15
mA
1.2
1.7
282
200
75
111
11.5
1.0
Max.
Min.
Typ.
Unit
Limits
60
15
1.5
2.0
410
540
144
10
118
100
12.0
12.5
10
1.8
V
µs
A
A
Inverter part
Brake part
VD = 15V, VCIN = 15V
Applied between : UP-VUPC, VP-VVPC, WP-VWPC
UN • VN • WN • Br-VNC
Test Condition
Base-plate
Temperature detection, VD = 15V
–20
≤ Tj ≤ 125°C
VD = 15V, VFO = 15V
(Note-3)
VD = 15V
(Note-3)
VN1-VNC
VXP1-VXPC
Tj = 25
°C
Tj = 125
°C
RECOMMENDED CONDITIONS FOR USE
Recommended value
Unit
Test Condition
Symbol
Parameter
V
Applied across P-N terminals
Applied between : VUP1-VUPC, VVP1-VVPC
VWP1-VWPC, VN1-VNC
(Note-4)
Applied between : UP-VUPC, VP-VVPC, WP-VWPC
UN • VN • WN • Br-VNC
Using Application Circuit input signal of IPM, 3
φ
sinusoidal PWM VVVF inverter
(Fig. 8)
For IPM’s each input signals
(Fig. 7)
Supply Voltage
Control Supply Voltage
Input ON Voltage
Input OFF Voltage
PWM Input Frequency
Arm Shoot-through
Blocking Time
≤ 800
15
± 1.5
≤ 0.8
≥ 4.0
≤ 20
≥ 3.0
VCC
VCIN(on)
VCIN(off)
fPWM
tdead
VD
V
kHz
µs
V
(Note-4) Allowable Ripple rating of Control Voltage : dv/dt
≤ ±5V/µs, 2Vp-p


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