®
ULTRAFAST RECTIFIER PDP ENERGY RECOVERY
Table 1: Main Product Characteristics
I
F(AV)
V
RRM
V
(typ)
FP
I
(typ)
RM
T
j
(typ)
V
F
FEATURES AND BENEFITS
■ Ultrafast recovery allowing High Sustain
Frequency
■ Decrease charge evacuation time in the
inductance (see figure 1)
■ Minimize switching-on and total power losses
■ Increase luminuous efficiency and brightness
■ Soft and noise-free recovery
■ High surge capability
■ High junction temperature
60 A
300 V
2.5 V
6 A
175°C
0.9 V
STTH60P03S
A
A
TO-247
STTH60P03SW
Table 2: Order Code
Part Number Marking
STTH60P03SW STTH60P03SW
K
A
K
A
DESCRIPTION
The STTH60P03SW is an Ultrafast Recovery
Power Rectifier dedicated to energy recovery in
PDP application.
The key parameters of the D
diode for the
ERC
energy recovery cicuit have been optimized in
order to decrease power losses.
Table 3: Absolute Ratings (limiting values)
Symbol Parameter Value Unit
V
RRM
I
F(RMS)
I
F(AV)
I
FSM
Repetitive peak reverse voltage 300 V
RMS forward voltage 80 A
Average forward current 60 A
Surge non repetitive forward current tp = 10ms sinusoidal 250 A
F = 200 kHz, tp = 500 ns
I
FRM
Forward repetitive peak surge current
Sinusoidal waveform,
150 A
Tc = 155°C
T
T
Storage temperature range -65 to + 175 °C
stg
Maximum operating junction temperature 175 °C
j
March 2005 REV. 3
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STTH60P03S
Table 4: Thermal Parameters
Symbol Parameter Value Unit
R
th(j-c)
Z
th(j-c)
Table 5: Static Electrical Characteristics
Symbol Parameter Test conditions Min. Typ Max. Unit
I
R
V
F
Pulse test: * tp = 5 ms, δ < 2%
To evaluate the conduction losses use the following equation: P = 0.88 x I
Table 6: Switching Characteristics
Junction to case 0.8 °C/W
Transient thermal resistance at 1µs 0.002 °C/W
*
Reverse leakage current
**
Forward voltage drop
** tp = 380 µs,
δ < 2%
= 25°C VR = V
T
j
T
= 125°C 0.1 1 mA
j
= 25°C
T
j
= 125°C
T
j
I
= 30A
F
F(AV)
RRM
+ 0.009 I
0.9 1.15
F2(RMS)
100
1.5
µA
V
Symbol Parameter Test conditions Min. Typ Max. Unit
Reverse recovery current
= 100°C
T
Softness factor 0.5
Peak forward voltage
FP
j
= 25°C IF = 60A dIF/dt = 400 A/µs
T
j
I
= 60A VR = 100V
F
dI
/dt = 200 A/µs
F
67.5 A
2.5 3.5 V
S
V
I
RM
factor
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