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ESM6045DV Scheda tecnica(PDF) 2 Page - STMicroelectronics

Il numero della parte ESM6045DV
Spiegazioni elettronici  NPN DARLINGTON POWER MODULE
PDF  8 Pages
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Produttore elettronici  STMICROELECTRONICS [STMicroelectronics]
Homepage  http://www.st.com
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ESM6045DV Scheda tecnica(HTML) 2 Page - STMicroelectronics

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THERMAL DATA
Rthj-case
Rthj-case
Rthc-h
Thermal Resistance Junction-case (transistor)
Max
Thermal Resistance Junction-case (diode)
Max
Thermal Resistance Case-heatsink With Conductive
Grease Applied
Max
0.5
1.2
0.05
oC/W
oC/W
oC/W
ELECTRICAL CHARACTERISTICS (Tcase = 25
oC unless otherwise specified)
Symbol
Parameter
Test Conditions
Min.
Typ.
Max.
Unit
ICER #
Collector Cut-off
Current (RBE = 5
Ω)
VCE = VCEV
VCE = VCEV
Tj = 100
oC
1.5
22
mA
mA
ICEV #
Collector Cut-off
Current (VBE = -5)
VCE = VCEV
VCE = VCEV
Tj = 100
oC
1
15
mA
mA
IEBO #
Emitter Cut-off Current
(IC = 0)
VEB = 5 V
1
mA
VCEO(SUS)* Collector-Emitter
Sustaining Voltage
(IB = 0)
IC = 0.2 A
L = 25 mH
Vclamp = 450 V
450
V
hFE
DC Current Gain
IC = 70 A
VCE = 5 V
120
VCE(sat)
∗ Collector-Emitter
Saturation Voltage
IC = 50 A
IB = 1 A
IC = 50 A
IB = 1 A
Tj = 100
oC
IC = 70 A
IB = 4 A
IC = 70 A
IB = 4 A
Tj = 100
oC
1.2
1.6
1.35
1.7
2
2
V
V
V
V
VBE(sat)
∗ Base-Emitter
Saturation Voltage
IC = 70 A
IB = 4 A
IC = 70 A
IB = 4 A
Tj = 100
oC
2.3
2.4
3
V
V
diC/dt
Rate of Rise of
On-state Collector
VCC = 300 V
RC = 0
tp = 3
µs
IB1 = 1.5 A
Tj = 100
oC
375
450
A/
µs
VCE(3
µs)••
Collector-Emitter
Dynamic Voltage
VCC = 300 V
RC = 6
IB1 = 1.5 A
Tj = 100
oC
69
V
VCE(5
µs)••
Collector-Emitter
Dynamic Voltage
VCC = 300 V
RC = 6
IB1 = 1.5 A
Tj = 100
oC
3
4.5
V
ts
tf
tc
Storage Time
Fall Time
Cross-over Time
IC = 50 A
VCC = 50 V
VBB = -5 V
RBB = 0.3
Vclamp = 450 V
IB1 = 1 A
L = 0.05 mH
Tj = 100
oC
3.5
0.3
0.8
5.5
0.5
1.7
µs
µs
µs
VCEW
Maximum Collector
Emitter Voltage
Without Snubber
ICWoff = 84 A
IB1 = 4 A
VBB = -5 V
VCC = 50 V
L = 0.03 mH
RBB = 0.3
Tj = 125
oC
450
V
VF
Diode Forward Voltage
IF = 70 A
Tj = 100
oC
1.6
1.9
V
IRM
Reverse Recovery
Current
VCC = 200 V
IF = 70 A
diF/dt = -375 A/
µs L < 0.05 µH
Tj = 100
oC
38
45
A
∗ Pulsed: Pulse duration = 300 µs, duty cycle 1.5 %
# See test circuits in databook introduction
To evaluate the conduction losses of the diode use the following equations:
VF = 1.5 + 0.0055 IF
P = 1.5 IF(AV) + 0.0055 I
2
F(RMS)
ESM6045DV
2/8



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