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PDF PM200RSD060 Data sheet ( Hoja de datos )

Número de pieza PM200RSD060
Descripción INTELLIGENT POWER MODULES
Fabricantes Mitsubishi 
Logotipo Mitsubishi Logotipo



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No Preview Available ! PM200RSD060 Hoja de datos, Descripción, Manual

MITMSUITBSIUSBHIS<HINI T<EINLTLEIGLLEINGTENPOT WPOEWR EMROMDUOLDEUSL>ES>
PM200PRMS20D0R0S6D0060
FLAFTL-ABTA-SBEASTEYPTEYPE
INSIUNLSAUTLEADTEPDACPKAACGKAEGE
PM200RSD060
FEATURE
a) Adopting new 4th generation planar IGBT chip, which per-
formance is improved by 1µm fine rule process.
For example, typical VCE(sat)=1.7V
b) Using new Diode which is designed to get soft reverse
recovery characteristics.
c) Keeping the package compatibility.
The layout/position of both terminal pin and mounting hole
is same as S-series 3rd generation IPM.
• 3φ 150A, 600V Current-sense IGBT for 15kHz switching
• 75A, 600V Current-sense regenerative brake IGBT
• Monolithic gate drive & protection logic
• Detection, protection & status indication circuits for over-
current, short-circuit, over-temperature & under-voltage
(P-Fo available from upper leg devices)
• Acoustic noise-less 15/18.5kW class inverter application
• UL Recognized Yellow Card No.E80276(N)
File No.E80271
APPLICATION
General purpose inverter, servo drives and other motor controls
PACKAGE OUTLINES
Dimensions in mm
40.68
135 ±1
120.5 ±0.5
LABEL
1234
5678
9 11 13 15 17 19
10 12
14 16 18
3.22 10 10 10
3-2 3-2 3-2
66.44
6-2
4- φ5.5
MOUNTING
HOLES
24.1
10.5
0.5 ±0.3
51.5
A
U VW
26
2-φ2.54
26
19- 0.5
4-R6
6-M5 NUTS
Screwing depth
Min9.0
Terminal code
1. VUPC
2. UFO
3. UP
4. VUP1
5. VVPC
6. VFO
7. VP
8. VVP1
9. VWPC
10. WFO
11. WP
12. VWP1
13. VNC
14. VN1
15. Br
16. UN
17. VN
18. WN
19. FO
φ2.54
3.22 3-2
0.5
A : DETAIL
Jul. 2005
Free Datasheet http://www.datasheet4u.com/

1 page




PM200RSD060 pdf
MITSUBISHI <INTELLIGENT POWER MODULES>
PM200RSD060
FLAT-BASE TYPE
INSULATED PACKAGE
PRECAUTIONS FOR TESTING
1. Before appling any control supply voltage (VD), the input terminals should be pulled up by resistores, etc. to their corre-
sponding supply voltage and each input signal should be kept off state.
After this, the specified ON and OFF level setting for each input signal should be done.
2. When performing OCand SCtests, the turn-off surge voltage spike at the corresponding protection operation should not
be allowed to rise above VCES rating of the device.
(These test should not be done by using a curve tracer or its equivalent.)
P, (U,V,W,B)
P, (U,V,W)
VCIN
(0V)
IN
Fo
V Ic
VCIN
(15V)
IN
Fo
V Ic
VD (all) U,V,W, (N)
Fig. 1 VCE(sat) Test
VD (all) U,V,W,B, (N)
Fig. 2 VEC, (VFM) Test
a) Lower Arm Switching
VCIN
(15V)
VCIN
Signal input
(Upper Arm)
Signal input
(Lower Arm)
b) Upper Arm Switching
VCIN
VCIN
(15V)
Signal input
(Upper Arm)
Signal input
(Lower Arm)
Fo
Fo
P
U,V,W
CS
Vcc
trr
Irr
90%
VD (all)
Fo
Fo
N
Ic
P
10%
10%
tc (on)
VCIN
U,V,W
CS Vcc td (on)
tr
(ton= td (on) + tr)
N
VD (all)
Ic
Fig. 3 Switching time Test circuit and waveform
VCE
Ic
90%
10%
tc (off)
10%
td (off)
tf
(toff= td (off) + tf)
VCIN
(15V)
P, (U,V,W,B)
A
IN
Fo Pulse VCE
VCIN
Over Current
VD (all)
U,V,W, (N)
Fig. 4 ICES Test
P, (U,V,W,B)
VCIN
IN
Fo
VCC
VD (all)
U,V,W, (N)
IC
Fig. 5 OC and SC Test
OC
IC
toff (OC)
Constant Current
Short Circuit Current
Constant Current
SC
IC
Fig. 6 OC and SC Test waveform
P
VD
VCINP
U,V,W
Vcc
VD
VCINN
N
Ic
VCINP
0V
VCINN
0V
tdead
tdead
tdead
Fig. 7 Dead time measurement point example
t
t
Jul. 2005
Free Datasheet http://www.datasheet4u.com/

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