STMICROELECTRONICS ST2310FX

ST2310FX
®
HIGH VOLTAGE FAST-SWITCHING
NPN POWER TRANSISTOR
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NEW SERIES, ENHANCED PERFORMANCE
FULLY INSULATED PACKAGE (U.L.
COMPLIANT) FOR EASY MOUNTING
HIGH VOLTAGE CAPABILITY ( > 1500 V)
HIGH SWITCHING SPEED
TIGTHER hfe CONTROL
IMPROVED RUGGEDNESS
APPLICATIONS:
HORIZONTAL DEFLECTION FOR
MONITORS 17" AND HIGH END TVS
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DESCRIPTION
The device is manufactured using Diffused
Collector technology for more stable operation Vs
base drive circuit variations resulting in very low
worst case dissipation.
ISOWATT218FX
INTERNAL SCHEMATIC DIAGRAM
ABSOLUTE MAXIMUM RATINGS
Symbol
V CES
V CEO
V EBO
IC
I CM
IB
P tot
V isol
T stg
Tj
Parameter
Collector-Emitter Voltage (V BE = 0)
Collector-Emitter Voltage (I B = 0)
Emitter-Base Voltage (I C = 0)
Collector Current
Collector Peak Current (t p < 5 ms)
Base Current
Total Dissipation at T C = 25 o C
Insulation Withstand Voltage (RMS) from All
Three Leads to External Heatsink
Storage Temperature
Max. Operating Junction Temperature
October 2003
Value
1500
600
7
12
25
7
65
2500
-65 to 150
150
Unit
V
V
V
A
A
A
W
V
o
o
C
C
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ST2310FX
THERMAL DATA
R thj-case
Thermal Resistance Junction-case
Max
o
1.9
C/W
ELECTRICAL CHARACTERISTICS (Tcase = 25 oC unless otherwise specified)
Symbol
Parameter
Test Conditions
I CES
Collector Cut-off
Current (V BE = 0)
V CE = 1500 V
V CE = 1500 V
I EBO
Emitter Cut-off Current
(I C = 0)
V EB = 7 V
V CEO(sus) ∗ Collector-Emitter
Sustaining Voltage
(I B = 0)
Min.
Typ.
T J = 125 o C
I C = 100 mA
L = 25 mH
Max.
Unit
1
2
mA
mA
1
mA
600
V
V CE(sat) ∗
Collector-Emitter
Saturation Voltage
IC = 7 A
I B = 1.75 A
3
V
V BE(sat) ∗
Base-Emitter
Saturation Voltage
IC = 7 A
I B = 1.75 A
1.1
V
DC Current Gain
IC = 1 A
IC = 7 A
IC = 7 A
V CE = 5 V
V CE = 1 V
V CE = 5 V
IC = 6 A
I B(on) = 1 A
L BB(off) = 1.3 µH
f h = 64 KHz
V BE(off) = -2.5 V
(see figure 1)
h FE ∗
ts
tf
INDUCTIVE LOAD
Storage Time
Fall Time
∗ Pulsed: Pulse duration = 300 µs, duty cycle 1.5 %
Safe Operating Area
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Thermal Impedance
25
5.5
9.5
6.5
2.3
0.16
3
0.35
µs
µs
ST2310FX
Derating Curve
Output Characteristics
Collector Emitter Saturation Voltage
Base Emitter Saturation Voltage
DC Current Gain
DC Current Gain
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ST2310FX
Power Losses
Reverse Biased SOA
Figure 1: Inductive Load Switching Test Circuit.
4/6
Switching Time Inductive Load
ST2310FX
ISOWATT218FX MECHANICAL DATA
DIM.
A
C
D
D1
E
F
F2
G
G1
H
L
L2
L3
L4
L5
L6
L7
N
R
DIA
MIN.
5.30
2.80
3.10
1.80
0.80
0.65
1.80
10.30
mm
TYP.
MAX.
5.70
3.20
3.50
2.20
1.10
0.95
2.20
11.50
MIN.
0.209
0.110
0.122
0.071
0.031
0.026
0.071
0.406
15.70
10.20
23.20
26.70
44.40
4.70
24.70
15.00
2.20
4.20
3.80
0.602
0.386
0.898
1.035
1.701
0.169
0.957
0.575
0.071
0.150
0.134
5.45
15.30
9.80
22.80
26.30
43.20
4.30
24.30
14.60
1.80
3.80
3.40
inch
TYP.
MAX.
0.224
0.126
0.138
0.087
0.043
0.037
0.087
0.453
0.215
0.618
0.402
0.913
1.051
1.748
0.185
0.972
0.591
0.087
0.165
0.150
- Weight : 5.6 g (typ.)
- Maximum Torque (applied to mounting flange) Recommended: 0.55 Nm; Maximum: 1 Nm
- The side of the dissipator must be flat within 80 µm
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ST2310FX
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences
of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is
granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specification mentioned in this publication are
subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products
are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics.
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All other names are the property of their respective owners.
© 2003 STMicroelectronics – All Rights reserved
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