DMV1500HD STMicroelectronics, DMV1500HD Datasheet

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DMV1500HD

Manufacturer Part Number
DMV1500HD
Description
DAMPER + MODULATION DIODE
Manufacturer
STMicroelectronics
Datasheet

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DMV1500HDFD
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Table 1: Main Product Characteristics
FEATURES AND BENEFITS
DESCRIPTION
High voltage semiconductor especially designed
for horizontal deflection stage in standard and high
resolution video display with E/W correction.
The insulated TO-220FPAB package includes
both the DAMPER diode and the MODULATION
diode, thanks to a dedicated design.
Assembled on automated line, it offers very low
dispersion values on insulating and thermal
performances.
March 2005
I
Fpeak
Full kit in one package
High breakdown voltage capability
Very fast recovery diode
Specified turn on switching characteristics
Low static and peak forward voltage drop for
low dissipation
Insulated version:
Insulated voltage = 2000 V
Capacitance = 7 pF
Planar technology allowing high quality and
best electrical characteristics
Outstanding performance of well proven DTV
as damper and new faster Turbo 2 600V
technology as modulation
V
V
t
FP
rr
V
I
F
F(AV)
RRM
(typ)
(typ)
(typ)
(max)
®
DAMPER
1500 V
150 ns
1.0 V
12 A
21 V
6 A
DAMPER + MODULATION DIODE FOR CRT TV
RMS
MODUL.
600 V
60 ns
1.0 V
12 A
3 A
5 V
REV. 1
Table 2: Order Codes
DMV1500HDFD6
DMV1500HDFD
Part Number
TO-220FPAB FD6 Bending
DAMPER
DMV1500HDFD
DMV1500HDFD6
TO-220FPAB
1
(optional)
2
DMV1500HD
MODULATION
3
1
2
DMV1500HD
DMV1500HD
1
2
Marking
3
3
1/8

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DMV1500HD Summary of contents

Page 1

... March 2005 DAMPER + MODULATION DIODE FOR CRT TV MODUL 600 1 RMS Table 2: Order Codes REV. 1 DMV1500HD DAMPER MODULATION TO-220FPAB DMV1500HDFD TO-220FPAB FD6 Bending DMV1500HDFD6 (optional) Part Number Marking DMV1500HDFD DMV1500HD DMV1500HDFD6 DMV1500HD 1/8 ...

Page 2

... DMV1500HD Table 3: Absolute Maximum Ratings Symbol V Repetitive peak reverse voltage RRM I Peak working forward current Fpeak I Surge non repetitive forward current FSM T Storage temperature range stg T Maximum operating junction temperature j Table 4: Thermal Resistance Symbol R Junction to case thermal resistance th(j-c) Table 5: Static Electrical Characteristics ...

Page 3

... Figure 4: Forward voltage drop versus forward current (modulation diode =25° (maximum values ( 1.6 1.8 2.0 2.2 2.4 0.2 DMV1500HD Value Typ. Max 100°C 330 470 100°C 85 125 100° 100°C 5 7 th(j-c) ...

Page 4

... DMV1500HD Figure 5: Relative variation impedance junction to case versus pulse duration Z /R th(j-c) th(j-c) 1.0 0.9 0.8 0.7 0.6 MODULATION diode 0.5 0.4 0.3 0.2 0.1 t (s) p 0.0 1.E-03 1.E-02 1.E-01 1.E+00 Figure 7: Reverse recovery charges versus dI /dt (modulation diode, typical values (nC) rr 300 =125°C j 250 200 150 100 50 dI /dt(A/µ 0.1 1.0 Figure 9: Peak reverse recovery current versus ...

Page 5

... =2. =100°C j 1.0 0 0.6 0.4 0.2 0.0 140 160 180 200 25 versus F=1MHz V =30mV OSC RMS T =25°C j DAMPER diode 100 1000 DMV1500HD dI /dt(A/µ 100 120 140 , =125° (° ...

Page 6

... DMV1500HD Figure 17: TO-220FPAB FD6 Option Package Mechanical Data Figure 18: TO-220FPAB FD6 PCB layout (typical, in millimeters) 2.54 7.9 1.0 6/8 REF Dia. 7.5 2.2 DIMENSIONS Millimeters Inches Min. Max. Min. Max. 4.4 4.9 0.173 0.192 2.5 2.9 0.098 0.114 2.45 2.75 0.096 0.108 0.4 0.7 0.016 0.028 0.6 1 0.024 ...

Page 7

... DMV1500HDFD DMV1500HD DMV1500HDFD6 DMV1500HD Table 9: Revision History Date Revision 16-Mar-2005 REF Dia. Package TO-220FPAB TO-220FPAB F6 Description of Changes 1 First issue DMV1500HD DIMENSIONS Millimeters Inches Min. Max. Min. 4.4 4.9 0.173 2.5 2.9 0.098 2.45 2.75 0.096 0.4 0.7 0.016 0.6 1 0.024 1.15 1.7 0.045 1.15 1.7 0.045 4.95 5.2 0.195 2 ...

Page 8

... DMV1500HD 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. Specifications mentioned in this publication are subject to change without notice ...

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