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APT15GT60BRDQ1 Datenblatt(PDF) 5 Page - Advanced Power Technology

Teilenummer APT15GT60BRDQ1
Bauteilbeschribung  Thunderbolt IGBT
PDF  9 Pages
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Hersteller  ADPOW [Advanced Power Technology]
Direct Link  http://www.advpowertech.com
Logo ADPOW - Advanced Power Technology

APT15GT60BRDQ1 Datenblatt(HTML) 5 Page - Advanced Power Technology

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APT15GT60BRDQ1(G)
TYPICAL PERFORMANCE CURVES
0.70
0.60
0.50
0.40
0.30
0.20
0.10
0
0.3
D = 0.9
0.7
SINGLE PULSE
RECTANGULAR PULSE DURATION (SECONDS)
Figure 19a, Maximum Effective Transient Thermal Impedance, Junction-To-Case vs Pulse Duration
10-5
10-4
10-3
10-2
10-1
1.0
2,000
1,000
500
100
50
10
50
45
40
35
30
25
20
15
10
5
0
V
CE, COLLECTOR-TO-EMITTER VOLTAGE (VOLTS)
V
CE, COLLECTOR TO EMITTER VOLTAGE
Figure 17, Capacitance vs Collector-To-Emitter Voltage
Figure 18,Minimim Switching Safe Operating Area
0
10
20
30
40
50
0
100 200
300
400 500
600
700
FIGURE 19b, TRANSIENT THERMAL IMPEDANCE MODEL
C
res
0.5
0.1
0.05
Peak TJ = PDM x ZθJC + TC
Duty Factor D =
t1/t2
t2
t1
Note:
C
oes
C
ies
0.243
0.165
0.271
0.0013
0.00675
0.0969
Dissipated Power
(Watts)
TJ (°C)
TC (°C)
Z
EXT are the external thermal
impedances: Case to sink,
sink to ambient, etc. Set to
zero when modeling only
the case to junction.
0
5
10
15
20
25
30
I
C, COLLECTOR CURRENT (A)
Figure 20, Operating Frequency vs Collector Current
TJ = 125°C
TC = 75°C
D = 50 %
VCE = 400V
RG = 10Ω
180
100
50
10
F
max
= min (f
max, fmax2)
0.05
f
max1 = t
d(on) + tr + td(off) + tf
P
diss - Pcond
E
on2 + Eoff
f
max2 =
P
diss =
T
J - TC
RθJC



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