V23990-P629-L43-PM [VINCOTECH]

Easy paralleling;High speed switching;Low switching losses;
V23990-P629-L43-PM
型号: V23990-P629-L43-PM
厂家: VINCOTECH    VINCOTECH
描述:

Easy paralleling;High speed switching;Low switching losses

文件: 总21页 (文件大小:7005K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
V23990-P629-L43  
datasheet  
flowBOOST 0 dual  
1200 V / 50 A  
Topology features  
flow 0 12 mm housing  
● Kelvin Emitter for improved switching performance  
● Dual Booster  
● Bypass Diode  
● Open Emitter configuration  
● Temperature sensor  
Component features  
● Easy paralleling  
● High speed switching  
● Low switching losses  
Housing features  
● Base isolation: Al2O3  
Schematic  
● Clip-in, reliable mechanical connection, qualified for wave  
soldering  
● Convex shaped substrate for superior thermal contact  
● Thermo-mechanical push-and-pull force relief  
● Solder pin  
Target applications  
● solar inverter  
Types  
● V23990-P629-L43  
Copyright Vincotech  
1
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Maximum Ratings  
Tj = 25 °C, unless otherwise specified  
Parameter  
Symbol  
Conditions  
Value  
Unit  
Boost Switch  
VCES  
Collector-emitter voltage  
1200  
51  
V
A
IC  
Collector current (DC current)  
Repetitive peak collector current  
Total power dissipation  
Tj = Tjmax  
Ts = 80 °C  
Ts = 80 °C  
Tj = 150 °C  
ICRM  
tp limited by Tjmax  
Tj = Tjmax  
150  
144  
±20  
10  
A
Ptot  
W
V
VGES  
Gate-emitter voltage  
tSC  
Short circuit ratings  
VGE = 15 V, VCC = 800 V  
µs  
°C  
Tjmax  
Maximum junction temperature  
175  
Boost Diode  
VRRM  
Peak repetitive reverse voltage  
1200  
29  
V
A
IF  
Forward current (DC current)  
Repetitive peak forward current  
Surge (non-repetitive) forward current  
Total power dissipation  
Tj = Tjmax  
Ts = 80 °C  
IFRM  
IFSM  
Ptot  
tp limited by Tjmax  
78  
A
Single Half Sine Wave,  
tp = 10 ms  
Tj = 25 °C  
Ts = 80 °C  
138  
81  
A
Tj = Tjmax  
W
°C  
Tjmax  
Maximum junction temperature  
175  
Boost Sw. Protection Diode  
VRRM  
Peak repetitive reverse voltage  
Forward current (DC current)  
Surge (non-repetitive) forward current  
Surge current capability  
1600  
38  
V
A
IF  
IFSM  
I2t  
Tj = Tjmax  
Ts = 80 °C  
Tj = 150 °C  
Ts = 80 °C  
200  
200  
47  
A
Single Half Sine Wave,  
tp = 10 ms  
A2s  
W
°C  
Ptot  
Total power dissipation  
Tj = Tjmax  
Tjmax  
Maximum junction temperature  
150  
Copyright Vincotech  
2
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Maximum Ratings  
Tj = 25 °C, unless otherwise specified  
Parameter  
Symbol  
Conditions  
Value  
Unit  
ByPass Diode  
VRRM  
Peak repetitive reverse voltage  
1600  
38  
V
A
IF  
Forward current (DC current)  
Surge (non-repetitive) forward current  
Surge current capability  
Tj = Tjmax  
Ts = 80 °C  
Tj = 150 °C  
Ts = 80 °C  
IFSM  
I2t  
200  
200  
47  
A
Single Half Sine Wave,  
tp = 10 ms  
A2s  
W
°C  
Ptot  
Total power dissipation  
Tj = Tjmax  
Tjmax  
Maximum junction temperature  
150  
Module Properties  
Thermal Properties  
Tstg  
Tjop  
Storage temperature  
-40…+125  
°C  
°C  
Operation temperature under switching  
condition  
-40…+(Tjmax - 25)  
Isolation Properties  
Isolation voltage  
Isolation voltage  
Creepage distance  
Clearance  
Visol  
Visol  
DC Test Voltage*  
AC Voltage  
tp = 2 s  
6000  
2500  
>12,7  
9,55  
V
tp = 1 min  
V
mm  
mm  
Comparative Tracking Index  
*100 % tested in production  
CTI  
≥ 200  
Copyright Vincotech  
3
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Characteristic Values  
Symbol  
Parameter  
Conditions  
Values  
Typ  
Unit  
VCE [V] IC [A]  
VDS [V] ID [A] Tj [°C]  
VGE [V]  
VGS [V]  
Min  
Max  
VF [V]  
IF [A]  
Boost Switch  
Static  
VGE(th)  
VCEsat  
ICES  
IGES  
rg  
Gate-emitter threshold voltage  
Collector-emitter saturation voltage  
Collector-emitter cut-off current  
Gate-emitter leakage current  
Internal gate resistance  
Input capacitance  
VCE = VGE  
0,0017  
50  
25  
5,3  
5,8  
6,3  
V
25  
1,78  
2,14  
2,57  
2,42(1)  
15  
0
V
125  
1200  
0
25  
25  
1
µA  
nA  
Ω
20  
120  
4
Cies  
Cres  
Qg  
2770  
160  
380  
pF  
pF  
nC  
f = 1 Mhz  
0
25  
25  
25  
Reverse transfer capacitance  
Gate charge  
±15  
0
Thermal  
λpaste = 3,4 W/mK  
(PSX)  
(2)  
Rth(j-s)  
Thermal resistance junction to sink  
Dynamic  
0,66  
K/W  
25  
27,2  
26,6  
14,4  
17  
td(on)  
Turn-on delay time  
Rise time  
ns  
ns  
125  
25  
tr  
125  
25  
Rgon = 4 Ω  
Rgoff = 4 Ω  
255,8  
319,6  
46,87  
56,98  
1,05  
1,22  
1,54  
2,43  
td(off)  
Turn-off delay time  
Fall time  
ns  
125  
25  
0/15  
700  
40  
tf  
ns  
125  
25  
QrFWD=0,243 µC  
QrFWD=0,213 µC  
Eon  
Eoff  
Turn-on energy (per pulse)  
Turn-off energy (per pulse)  
mWs  
mWs  
125  
25  
125  
Copyright Vincotech  
4
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Characteristic Values  
Symbol  
Parameter  
Conditions  
Values  
Typ  
Unit  
VCE [V] IC [A]  
VDS [V] ID [A] Tj [°C]  
VGE [V]  
VGS [V]  
Min  
Max  
VF [V]  
IF [A]  
Boost Diode  
Static  
25  
1,42  
1,69  
1,8(1)  
450  
VF  
IR  
Forward voltage  
15  
V
125  
Reverse leakage current  
Vr = 1200 V  
25  
60  
µA  
Thermal  
λpaste = 3,4 W/mK  
(PSX)  
(2)  
Rth(j-s)  
Thermal resistance junction to sink  
Dynamic  
1,17  
K/W  
25  
16,78  
15,44  
9,11  
IRRM  
Peak recovery current  
Reverse recovery time  
Recovered charge  
A
125  
25  
trr  
ns  
125  
25  
9,45  
0,243  
0,213  
0,093  
0,074  
6570  
5559  
di/dt=4015 A/µs  
di/dt=3013 A/µs  
Qr  
0/15  
700  
40  
μC  
125  
25  
Erec  
Reverse recovered energy  
Peak rate of fall of recovery current  
mWs  
A/µs  
125  
25  
(dirf/dt)max  
125  
Boost Sw. Protection Diode  
Static  
25  
0,96  
1,21(1)  
1,1(1)  
VF  
IR  
Forward voltage  
8
V
125  
0,865  
Reverse leakage current  
Thermal  
Vr = 1600 V  
25  
100  
µA  
λpaste = 3,4 W/mK  
(PSX)  
(2)  
Rth(j-s)  
Thermal resistance junction to sink  
1,49  
K/W  
Copyright Vincotech  
5
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Characteristic Values  
Symbol  
Parameter  
Conditions  
Values  
Typ  
Unit  
VCE [V] IC [A]  
VDS [V] ID [A] Tj [°C]  
VF [V] IF [A]  
VGE [V]  
VGS [V]  
Min  
Max  
ByPass Diode  
Static  
25  
0,96  
1,21(1)  
1,1(1)  
VF  
IR  
Forward voltage  
8
V
125  
0,865  
Reverse leakage current  
Vr = 1600 V  
25  
100  
µA  
Thermal  
λpaste = 3,4 W/mK  
(PSX)  
(2)  
Rth(j-s)  
Thermal resistance junction to sink  
1,49  
K/W  
Thermistor  
Static  
R
ΔR/R  
P
Rated resistance  
Deviation of R100  
Power dissipation  
Power dissipation constant  
B-value  
25  
22  
kΩ  
%
R100 = 1486 Ω  
100  
-12  
14  
200  
2
mW  
mW/K  
K
d
25  
B(25/50)  
Tol. ±3 %  
Tol. ±3 %  
3950  
3998  
B(25/100)  
B-value  
K
Vincotech Thermistor Reference  
B
(1)  
Value at chip level  
(2)  
Only valid with pre-applied Vincotech thermal interface material.  
Copyright Vincotech  
6
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Switch Characteristics  
figure 1.  
IGBT  
figure 2.  
IGBT  
Typical output characteristics  
Typical output characteristics  
IC = f(VCE  
)
IC = f(VCE)  
150  
150  
VGE  
:
7 V  
8 V  
125  
100  
75  
50  
25  
0
125  
100  
75  
50  
25  
0
9 V  
10 V  
11 V  
12 V  
13 V  
14 V  
15 V  
16 V  
17 V  
0
1
2
3
4
5
6
7
8
0
1
2
3
4
5
6
7
8
V
CE(V)  
VCE(V)  
tp  
=
=
tp  
=
250  
15  
μs  
V
250  
125  
μs  
°C  
25 °C  
Tj:  
VGE  
Tj =  
125 °C  
VGE from 7 V to 17 V in steps of 1 V  
figure 3.  
IGBT  
figure 4.  
IGBT  
Typical transfer characteristics  
Transient thermal impedance as a function of pulse width  
IC = f(VGE  
)
Zth(j-s) = f(tp)  
0
50  
10  
40  
30  
20  
10  
0
-1  
10  
-2  
10  
0,5  
0,2  
0,1  
-3  
10  
0,05  
0,02  
0,01  
0,005  
0
-4  
10  
-5  
-4  
10  
-3  
10  
-2  
10  
-1  
10  
0
10  
1
10  
2
0,0  
2,5  
5,0  
7,5  
10,0  
12,5  
10  
10  
tp(s)  
V
GE(V)  
tp  
=
=
250  
10  
μs  
V
D =  
tp / T  
0,66  
25 °C  
Tj:  
VCE  
125 °C  
Rth(j-s) =  
K/W  
IGBT thermal model values  
R (K/W)  
τ (s)  
8,54E-02  
1,79E-01  
3,14E-01  
5,28E-02  
2,90E-02  
1,27E+00  
1,86E-01  
6,03E-02  
4,65E-03  
3,68E-04  
Copyright Vincotech  
7
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Switch Characteristics  
figure 5.  
IGBT  
Safe operating area  
IC = f(VCE  
)
1000  
100  
10  
10µs  
100µs  
1ms  
1
10ms  
100ms  
DC  
0,1  
0,01  
1
10  
100  
1000  
10000  
CE(V)  
V
D =  
single pulse  
Ts =  
80  
15  
°C  
V
VGE  
=
Tj =  
Tjmax  
Copyright Vincotech  
8
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Diode Characteristics  
figure 6.  
FWD  
figure 7.  
FWD  
Typical forward characteristics  
Transient thermal impedance as a function of pulse width  
IF = f(VF)  
Zth(j-s) = f(tp)  
1
40  
30  
20  
10  
0
10  
0
10  
-1  
10  
0,5  
0,2  
-2  
10  
0,1  
0,05  
0,02  
0,01  
0,005  
0
-3  
10  
-5  
-4  
10  
-3  
10  
-2  
10  
-1  
10  
0
1
2
0,0  
0,5  
1,0  
1,5  
2,0  
2,5  
3,0  
3,5  
4,0  
10  
10  
10  
10  
tp(s)  
VF(V)  
tp  
=
250  
μs  
D =  
tp / T  
1,166  
25 °C  
Tj:  
125 °C  
Rth(j-s) =  
K/W  
FWD thermal model values  
R (K/W)  
τ (s)  
4,26E-02  
1,01E-01  
3,83E-01  
3,08E-01  
2,33E-01  
9,82E-02  
9,80E+00  
8,15E-01  
9,79E-02  
2,61E-02  
5,37E-03  
1,21E-03  
Copyright Vincotech  
9
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Sw. Protection Diode Characteristics  
figure 8.  
Rectifier  
figure 9.  
Rectifier  
Typical forward characteristics  
Transient thermal impedance as a function of pulse width  
IF = f(VF)  
Zth(j-s) = f(tp)  
1
50  
40  
30  
20  
10  
0
10  
0
10  
-1  
10  
0,5  
0,2  
-2  
10  
0,1  
0,05  
0,02  
0,01  
0,005  
0
-3  
10  
-5  
-4  
10  
-3  
10  
-2  
10  
-1  
10  
0
1
2
0,00  
0,25  
0,50  
0,75  
1,00  
1,25  
1,50  
10  
10  
10  
10  
VF(V)  
tp(s)  
tp  
=
250  
μs  
D =  
tp / T  
1,487  
25 °C  
Tj:  
125 °C  
Rth(j-s) =  
K/W  
Rectifier thermal model values  
R (K/W)  
τ (s)  
1,10E-01  
1,38E-01  
6,16E-01  
3,90E-01  
1,63E-01  
7,11E-02  
7,06E+00  
3,93E-01  
6,84E-02  
1,63E-02  
2,51E-03  
5,88E-04  
Copyright Vincotech  
10  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
ByPass Diode Characteristics  
figure 10.  
Rectifier  
figure 11.  
Rectifier  
Typical forward characteristics  
Transient thermal impedance as a function of pulse width  
IF = f(VF)  
Zth(j-s) = f(tp)  
1
50  
40  
30  
20  
10  
0
10  
0
10  
-1  
10  
0,5  
0,2  
-2  
10  
0,1  
0,05  
0,02  
0,01  
0,005  
0
-3  
10  
-5  
-4  
10  
-3  
10  
-2  
10  
-1  
10  
0
1
2
0,00  
0,25  
0,50  
0,75  
1,00  
1,25  
1,50  
10  
10  
10  
10  
tp(s)  
VF(V)  
tp  
=
250  
μs  
D =  
tp / T  
1,487  
25 °C  
Tj:  
125 °C  
Rth(j-s) =  
K/W  
Rectifier thermal model values  
R (K/W)  
τ (s)  
1,10E-01  
1,38E-01  
6,16E-01  
3,90E-01  
1,63E-01  
7,11E-02  
7,06E+00  
3,93E-01  
6,84E-02  
1,63E-02  
2,51E-03  
5,88E-04  
Copyright Vincotech  
11  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Thermistor Characteristics  
figure 12.  
Thermistor  
Typical NTC characteristic as function of temperature  
RT = f(T)  
25000  
20000  
15000  
10000  
5000  
0
20  
40  
60  
80  
100  
120  
140  
T(°C)  
Copyright Vincotech  
12  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Switching Characteristics  
figure 13.  
IGBT  
figure 14.  
IGBT  
Typical switching energy losses as a function of collector current  
Typical switching energy losses as a function of IGBT turn on gate resistor  
E = f(IC)  
E = f(Rg)  
5
4
3
2
1
0
3,0  
2,5  
2,0  
1,5  
1,0  
0,5  
0,0  
Eoff  
Eon  
Eoff  
Eon  
Eon  
Eoff  
Eoff  
Eon  
0
10  
20  
30  
40  
50  
60  
70  
80  
IC(A)  
0,0  
2,5  
5,0  
7,5  
10,0  
12,5  
15,0  
17,5  
Rg(Ω)  
With an inductive load at  
With an inductive load at  
25 °C  
25 °C  
Tj:  
Tj:  
VCE  
VGE  
=
=
=
=
VCE  
VGE  
IC  
=
=
=
700  
0/15  
4
V
V
Ω
Ω
125 °C  
700  
0/15  
40  
V
125 °C  
V
A
Rgon  
Rgoff  
4
figure 15.  
FWD  
figure 16.  
FWD  
Typical reverse recovered energy loss as a function of collector current  
Typical reverse recovered energy loss as a function of IGBT turn on gate resistor  
Erec = f(IC)  
Erec = f(Rg)  
0,10  
0,08  
0,06  
0,04  
0,02  
0,00  
0,125  
0,100  
0,075  
0,050  
0,025  
0,000  
Erec  
Erec  
Erec  
Erec  
0
10  
20  
30  
40  
50  
60  
70  
80  
0,0  
2,5  
5,0  
7,5  
10,0  
12,5  
15,0  
17,5  
IC(A)  
Rg(Ω)  
With an inductive load at  
With an inductive load at  
25 °C  
25 °C  
Tj:  
Tj:  
VCE  
VGE  
Rgon  
=
=
=
VCE  
VGE  
IC  
=
=
=
700  
0/15  
4
V
V
Ω
125 °C  
700  
0/15  
40  
V
V
A
125 °C  
Copyright Vincotech  
13  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Switching Characteristics  
figure 17.  
IGBT  
figure 18.  
IGBT  
Typical switching times as a function of collector current  
Typical switching times as a function of IGBT turn on gate resistor  
t = f(IC)  
t = f(Rg)  
0
10  
0
10  
td(off)  
td(off)  
-1  
10  
tf  
-1  
td(on)  
tr  
10  
tf  
-2  
10  
td(on)  
tr  
-3  
10  
-2  
10  
0
10  
20  
30  
40  
50  
60  
70  
80  
IC(A)  
0,0  
2,5  
5,0  
7,5  
10,0  
12,5  
15,0  
17,5  
Rg(Ω)  
With an inductive load at  
With an inductive load at  
Tj =  
Tj =  
125  
700  
0/15  
4
°C  
V
125  
700  
0/15  
40  
°C  
VCE  
=
=
=
=
VCE  
=
=
=
V
V
A
VGE  
Rgon  
Rgoff  
VGE  
IC  
V
Ω
Ω
4
figure 19.  
FWD  
figure 20.  
FWD  
Typical reverse recovery time as a function of collector current  
Typical reverse recovery time as a function of IGBT turn on gate resistor  
trr = f(IC)  
trr = f(Rgon)  
0,0150  
0,0125  
0,0100  
0,0075  
0,0050  
0,0025  
0,0000  
0,0150  
0,0125  
0,0100  
0,0075  
0,0050  
0,0025  
0,0000  
trr  
trr  
trr  
trr  
0
10  
20  
30  
40  
50  
60  
70  
80  
0,0  
2,5  
5,0  
7,5  
10,0  
12,5  
15,0  
17,5  
IC(A)  
Rgon(Ω)  
With an inductive load at  
With an inductive load at  
25 °C  
25 °C  
Tj:  
Tj:  
VCE  
VGE  
Rgon  
=
=
=
VCE  
VGE  
IC  
=
=
=
700  
0/15  
4
V
125 °C  
700  
0/15  
40  
V
V
A
125 °C  
V
Ω
Copyright Vincotech  
14  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Switching Characteristics  
figure 21.  
FWD  
figure 22.  
FWD  
Typical recovered charge as a function of collector current  
Typical recovered charge as a function of IGBT turn on gate resistor  
Qr = f(IC)  
Qr = f(Rgon)  
0,35  
0,30  
0,25  
0,20  
0,15  
0,10  
0,05  
0,00  
0,30  
0,25  
0,20  
0,15  
0,10  
0,05  
0,00  
Qr  
Qr  
Qr  
Qr  
0
10  
20  
30  
40  
50  
60  
70  
80  
0,0  
2,5  
5,0  
7,5  
10,0  
12,5  
15,0  
17,5  
IC(A)  
Rgon(Ω)  
With an inductive load at  
With an inductive load at  
25 °C  
25 °C  
Tj:  
Tj:  
VCE  
VGE  
Rgon  
=
=
=
VCE  
VGE  
IC  
=
=
=
700  
0/15  
4
V
V
Ω
125 °C  
700  
0/15  
40  
V
125 °C  
V
A
figure 23.  
FWD  
figure 24.  
FWD  
Typical peak reverse recovery current as a function of collector current  
Typical peak reverse recovery current as a function of IGBT turn on gate resistor  
IRM = f(IC)  
IRM = f(Rgon)  
20,0  
17,5  
15,0  
12,5  
10,0  
7,5  
25  
20  
15  
10  
5
IRM  
IRM  
IRM  
IRM  
5,0  
2,5  
0,0  
0
0,0  
0
10  
20  
30  
40  
50  
60  
70  
80  
2,5  
5,0  
7,5  
10,0  
12,5  
15,0  
17,5  
IC(A)  
Rgon(Ω)  
With an inductive load at  
With an inductive load at  
25 °C  
25 °C  
Tj:  
Tj:  
VCE  
VGE  
Rgon  
=
=
=
VCE  
VGE  
IC  
=
=
=
700  
0/15  
4
V
V
Ω
125 °C  
700  
0/15  
40  
V
125 °C  
V
A
Copyright Vincotech  
15  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Switching Characteristics  
figure 25.  
FWD  
figure 26.  
FWD  
Typical rate of fall of forward and reverse recovery current as a function of collector current  
Typical rate of fall of forward and reverse recovery current as a function of turn on gate resistor  
diF/dt, dirr/dt = f(IC)  
diF/dt, dirr/dt = f(Rgon)  
8000  
12000  
10000  
8000  
6000  
4000  
2000  
0
diF/dt ‒ ‒ ‒ ‒ ‒  
diF/dt ‒ ‒ ‒ ‒ ‒  
dirr/dt ──────  
7000  
6000  
5000  
4000  
3000  
2000  
1000  
0
dirr/dt ──────  
0
10  
20  
30  
40  
50  
60  
70  
80  
0,0  
2,5  
5,0  
7,5  
10,0  
12,5  
15,0  
17,5  
IC(A)  
Rgon(Ω)  
With an inductive load at  
With an inductive load at  
25 °C  
25 °C  
Tj:  
Tj:  
VCE  
VGE  
Rgon  
=
=
=
VCE  
VGE  
IC  
=
=
=
700  
0/15  
4
V
V
Ω
125 °C  
700  
0/15  
40  
V
V
A
125 °C  
figure 27.  
IGBT  
Reverse bias safe operating area  
IC = f(VCE  
)
120  
IC MAX  
100  
80  
60  
40  
20  
0
0
250  
500  
750  
1000  
1250  
1500  
V
CE(V)  
Tj =  
At  
125  
°C  
Ω
Rgon  
Rgoff  
=
=
4
4
Ω
Copyright Vincotech  
16  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Switching Definitions  
figure 28.  
IGBT  
figure 29.  
IGBT  
Turn-off Switching Waveforms & definition of tdoff, tEoff (ttEoff = integrating time for Eoff  
)
Turn-on Switching Waveforms & definition of tdon, tEon (tEon = integrating time for Eon)  
tdoff  
IC  
IC  
VGE  
VGE  
VCE  
tEoff  
VCE  
tEon  
figure 30.  
IGBT  
figure 31.  
IGBT  
Turn-off Switching Waveforms & definition of tf  
Turn-on Switching Waveforms & definition of tr  
IC  
IC  
VCE  
tr  
VCE  
tf  
Copyright Vincotech  
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08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Boost Switching Definitions  
figure 32.  
FWD  
figure 33.  
FWD  
Turn-off Switching Waveforms & definition of trr  
Turn-on Switching Waveforms & definition of tQr (tQr = integrating time for Qr)  
Qr  
IF  
IF  
fitted  
VF  
Copyright Vincotech  
18  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Ordering Code  
Version  
Ordering Code  
V23990-P629-L43  
Without thermal paste  
With thermal paste (5,2 W/mK, PTM6000HV)  
With thermal paste (3,4 W/mK, PSX-P7)  
V23990-P629-L43-/7/  
V23990-P629-L43-/3/  
Marking  
VIN  
VIN  
Date code  
WWYY  
Type&Ver  
TTTTTTTVV  
Serial  
UL  
UL  
Lot  
Serial  
Text  
LLLLL  
SSSS  
Type&Ver  
Lot number  
Date code  
Datamatrix  
TTTTTTTVV  
LLLLL  
SSSS  
WWYY  
Outline  
Pin table [mm]  
Pin  
1
X
Y
22,5  
22,5  
22,5  
22,5  
22,5  
22,5  
22,5  
22,5  
17,8  
15,3  
7,2  
4,7  
0
Function  
G1  
0
2
2,9  
S1  
3
8,3  
DC1-  
DC1-  
Out1  
4
10,8  
19,6  
22,1  
29,1  
32  
5
6
Out1  
7
Sol1A  
Sol1B  
Boost1A  
Boost1B  
Boost2A  
Boost2B  
Sol2A  
Sol2B  
Out1  
8
9
33,5  
33,5  
33,5  
33,5  
32  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
21  
22  
29,1  
22,1  
19,6  
10,8  
8,3  
0
0
0
Out1  
0
DC2-  
DC2-  
S2  
0
2,9  
0
0
0
G2  
0
8
NTC1  
NTC2  
0
14,5  
Copyright Vincotech  
19  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Pinout  
Out1  
5,6,15,16  
Sol2A  
Sol1A  
7
Sol1B  
8
13  
Sol2B  
14  
D7  
D8  
D1,D2,D3  
D4,D5,D6  
Boost1A  
Boost2A  
9
11  
Boost1B  
Boost2B  
10  
12  
T2  
T1  
D9  
D10  
G2  
20  
G1  
1
S1  
2
S2  
19  
NTC  
3,4  
DC1-  
17,18  
DC2-  
21  
NTC1  
22  
NTC2  
Identification  
Component  
Voltage  
Current  
Function  
Comment  
ID  
T1, T2  
D1, D2, D3, D4, D5,  
D6  
IGBT  
1200 V  
50 A  
Boost Switch  
Boost Diode  
FWD  
1200 V  
15 A  
D9, D10  
D7, D8  
Rectifier  
Rectifier  
1600 V  
1600 V  
18 A  
18 A  
Boost Sw. Protection Diode  
ByPass Diode  
NTC  
Thermistor  
Thermistor  
Copyright Vincotech  
20  
08 Apr. 2022 / Revision 7  
V23990-P629-L43  
datasheet  
Packaging instruction  
Handling instruction  
Standard packaging quantity (SPQ) 135  
>SPQ  
Standard  
<SPQ  
Sample  
Handling instructions for flow 0 packages see vincotech.com website.  
Package data  
Package data for flow 0 packages see vincotech.com website.  
Vincotech thermistor reference  
See Vincotech thermistor reference table at vincotech.com website.  
UL recognition and file number  
This device is certified according to UL 1557 standard, UL file number E192116. For more information see vincotech.com website.  
Document No.:  
Date:  
Modification:  
Pages  
New Datasheet format  
Update of Ir at Protection and Bypass Diode  
V23990-P629-L43-D7-14  
8 Apr. 2022  
DISCLAIMER  
The information, specifications, procedures, methods and recommendations herein (together “information”) are presented by Vincotech to  
reader in good faith, are believed to be accurate and reliable, but may well be incomplete and/or not applicable to all conditions or situations  
that may exist or occur. Vincotech reserves the right to make any changes without further notice to any products to improve reliability,  
function or design. No representation, guarantee or warranty is made to reader as to the accuracy, reliability or completeness of said  
information or that the application or use of any of the same will avoid hazards, accidents, losses, damages or injury of any kind to persons  
or property or that the same will not infringe third parties rights or give desired results. It is reader’s sole responsibility to test and determine  
the suitability of the information and the product for reader’s intended use.  
LIFE SUPPORT POLICY  
Vincotech products are not authorised for use as critical components in life support devices or systems without the express written approval  
of Vincotech.  
As used herein:  
1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or  
sustain life, or (c) whose failure to perform when properly used in accordance with instructions for use provided in labelling can be  
reasonably expected to result in significant injury to the user.  
2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause  
the failure of the life support device or system, or to affect its safety or effectiveness.  
Copyright Vincotech  
21  
08 Apr. 2022 / Revision 7  

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