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SIM689XM Datasheet(PDF) 31 Page - Sanken electric

Part # SIM689XM
Description  600 V High Voltage 3-phase Motor Drivers
PDF  55 Pages
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Manufacturer  SANKEN [Sanken electric]
Direct Link  http://www.sanken-ele.co.jp/en
Logo SANKEN - Sanken electric

SIM689XM Datasheet(HTML) 31 Page - Sanken electric

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SIM689xM Series
SIM689xM-DSE Rev.3.4
SANKEN ELECTRIC CO., LTD.
31
Mar. 05, 2024
https://www.sanken-ele.co.jp/en
© SANKEN ELECTRIC CO., LTD. 2021
14.1.3
Estimating Junction Temperature
of IGBT
The junction temperature of all IGBTs operating, TJ,
can be estimated with Equation (6):
TJ = R(J−C)Q × {(PON + PSW) × 6} + TC .
(6)
Where:
R(J-C)Q is the junction-to-case thermal resistance
(°C/W) of all the IGBTs operating, and
TC is the case temperature (°C), measured at the point
defined in Figure 3-1.
14.2 Power MOSFET
Total power loss in a power MOSFET can be
obtained by taking the sum of the following losses:
steady-state loss, PRON; switching loss, PSW; the steady-
state loss of a body diode, PSD. In the calculation
procedure we offer, the recovery loss of a body diode,
PRR, is considered negligibly small compared with the
ratios of other losses.
The following subsections contain the mathematical
procedures to calculate these losses (PRON, PSW, and PSD)
and the junction temperature of all power MOSFETs
operating.
14.2.1
Power MOSFET Steady-state Loss,
PRON
Steady-state loss in a power MOSFET can be
computed by using the RDS(ON) vs. ID curves, listed in
Section 15.3.1. As expressed by the curves in Figure
14-2, a linear approximation at a range the ID is actually
used is obtained by: RDS(ON) = α × ID + β. The values
gained by the above calculation are then applied as
parameters in Equation (7), below. Hence, the equation
to obtain the power MOSFET steady-state loss, PRON, is:
PRON =
1
2π
∫ ID (φ)2 × RDS(ON)(φ) × DT × dφ
π
0
= 2√2α (
1
3π
+
3
32
M × cos θ) IM
3
+2β (
1
8
+
1
3π
M × cos θ) IM
2 .
(7)
Where:
ID is the drain current of the power MOSFET (A),
RDS(ON) is the drain-to-source on-resistance of the
power MOSFET (Ω),
DT is the duty cycle, which is given by
DT =
1 + M × sin(φ + θ)
2
,
M is the modulation index (0 to 1),
cosθ is the motor power factor (0 to 1),
IM is the effective motor current (A),
α is the slope of the linear approximation in the RDS(ON)
vs. ID curve, and
β is the intercept of the linear approximation in the
RDS(ON) vs. ID curve.
Figure 14-2.
Linear Approximate Equation of
RDS(ON) vs. ID
14.2.2
Power MOSFET Switching Loss,
PSW
Switching loss in a power MOSFET can be calculated
by Equation (8), letting IM be the effective current value
of the motor:
PSW =
√2
π
× fC × αE × IM ×
VDC
300
.
(8)
Where:
fC is the PWM carrier frequency (Hz),
VDC is the main power supply voltage (V), i.e., the
VBB pin input voltage, and
αE is the slope of the switching loss curve (see Section
14.2.2).
y = 0.56x + 3.7
0.0
1.0
2.0
3.0
4.0
5.0
6.0
0.0
0.5
1.0
1.5
2.0
2.5
I
D (A)
VCCx = 15 V
25°C
75°C
125°C



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