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Details, datasheet, quote on part number: DTV1500MFP
 
 
Part numberDTV1500MFP
CategoryDiscrete => Diodes & Rectifiers => Damper Diodes
DescriptionHigh Voltage Damper Diode (CRT Horizontal DEFLECTION)
CompanyST Microelectronics, Inc.
DatasheetDownload DTV1500MFP datasheet
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Specifications, Features, Applications

(CRT HORIZONTAL DEFLECTION) HIGH VOLTAGE DAMPER DIODE
MAIN PRODUCTS CHARACTERISTICS IF(AV) VRRM VF (max) trr (max) FEATURES AND BENEFITS

High breakdown voltage capability High frequency operation Specified turn on switching characteristics Very fast recovery diode Low static and peak forward voltage drop for low dissipation Insulated package (ISOWATT220AC, TO-220FPAC): Insulating voltage 2000V DC Capacitance = 12pF Planar technology allowing high quality and best electrical characteristics

DESCRIPTION High voltage diode especially designed for horizontal deflection stage in standard and high resolution displays for TV's and monitors. This device is packaged TO-220AC, ISOWATT220AC and TO-220FPAC (insulated package). ABSOLUTE MAXIMUM RATINGS Symbol VRRM IF(RMS) IFSM Tstg Tj Parameter Repetitive peak reverse voltage RMS forward current Surge non repetitive forward current Storage temperature Maximum operating junction temperature = 10ms sinusoidal Value to 150 Unit A C

THERMAL RESISTANCE Symbol Rth(j-c) Parameter Junction to Case thermal resistance ISOWATT220AC TO-220AC Value 4.75 2.5 Unit C/W

RECOVERY CHARACTERISTICS Value Symbol trr Parameter Reverse recovery time Reverse recovery time = 25C Test Conditions Typ 1 A dIF/dt = 100mA IRR 110 750 Max 135 ns Unit

TURN-ON SWITCHING CHARACTERISTICS Value Symbol tfr VFp Parameter Forward recovery time Peak forward voltage = 100C Test Conditions Typ 6 A dIF/dt = 80 A/s VFR = 6A dIF/dt = 80 A/s 21 28 Max ns V Unit

To evaluate the maximum conduction losses use the following equation 1.37 x IF(AV) x IF2(RMS)
Fig. 1: Power dissipation versus peak forward current (triangular waveform, = 0.45)
Fig. 2-1: Average current versus case temperature 0.5) (TO-220FPAC)
Fig. 2-2: Average current versus case temperature 0.5) (ISOWATT220AC)
Fig. 2-3: Average current versus case temperature 0.5) (TO-220AC)
Fig. 3: Forward voltage drop versus forward current (DTV1500MFP/F/D)
Fig. 4-1: Non repetitive surge peak forward current versus overload duration (TO-220FPAC)



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DTV1500MD   DTV1500MF   DTV1500Mxx  


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