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VB927FI डेटा पत्रक PDF( Datasheet डाउनलोड )


डेटा पत्रक - HIGH VOLTAGE IGNITION COIL DRIVER POWER IC - STMicroelectronics

भाग संख्या VB927FI
समारोह HIGH VOLTAGE IGNITION COIL DRIVER POWER IC
मैन्युफैक्चरर्स STMicroelectronics 
लोगो STMicroelectronics लोगो 
पूर्व दर्शन
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<?=VB927FI?> डेटा पत्रक पीडीएफ

VB927FI pdf
VB927
ABSOLUTE MAXIMUM RATING
Symbol
P ar ame t er
HVc Collect or Voltage
Vin Maximum Input Volt age
Ic Collect or Current
Iin Input Current
Pto t Total Dissipat ion at Tc = 25 oC
Tst g St orage Temperature
Tj Operating Junction T emperature
Value
VB927
V B 92 7F I
Internally Limited
15
Internally Limited
Internally Limited
150 70
-40 to150
-40 to150
Unit
V
V
A
mA
W
oC
oC
THERMAL DATA
Rthj-ca se Thermal Resist ance Junct ion-case
Rthj- amb Thermal Resistance Junction-ambient
Max
Max
T O-247
0.6
ISOWATT5
2
30
Unit
oC/W
oC/W
ELECTRICAL CHARACTERISTICS (Vbatt = 14 V, -40 < Tj < 125 oC unless otherwise specified)
Symb ol
P a ram et er
Test Conditions
Min. Typ . Max. Un it
Ile ak
Vcl *
Vcg( sa t )
Icl *
Collector Cut-off
Cu r re nt
Clamping Voltage
Power Stage
Saturation Voltage
Coil Current Limit
Vin = 0
HVc = 250 V
250 µA
-40 < Tj < 125 oC
380 420 490
Ic = 5 A Iin = 10mA 25 Tj 125 oC
Ic = 6 A Iin = 10mA -40 Tj 25 oC
2.5
3
Vin = 5 V
-40 Tj 125 oC
8.5
9.5
V
V
V
A
Iin
Vf **
Input Current
Vin = 5 V
Vin = 5 V
Diode Forward Voltage If = 10 A
Ic = 5 A
Ic = 5 A Tj = 25 oC
Tj = 25 oC
10 mA
3 10 mA
1.2 2.2 3.2
V
Vin( h) Input Voltage (ON)
On state input threshold
3.2 3.6 V
Vin (l) Input Voltage (OFF )
Off state input threshold
3 3.4 V
Vn(hy st ) Input Voltage (Hyst.)
0.2 0.6 V
td(of f) Turn-off T ime
Ic = 5 A
30 µs
Tj Junction Temperature See note1
Li m it
150 oC
* Coil data: primary resistance Rc = 0.4 - 0.8 , primary inductance Lc = 6 - 8 mH
** Pulsed: Pulse duration = 300 µs, duty cycle 1.5 %
Note1 : Tj min = 150 oC means that the behaviour of the device will not be affected for junction temperature lower then 150 oC . For higher
temperature, the thermal protection circuit will begin its action reducing the Icl limit according with the power dissipation. Chip temperature is
a function of the Rth of the whole system in which the device with be operating.
2/5

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