BYV95A - BYV96E
PRV : 200 - 1000 Volts
Io : 1.5 Amperes
FEATURES :
*High current capability
*High surge current capability
*High reliability
*Low reverse current
*Low forward voltage drop
*Fast switching for high efficiency
MECHANICAL DATA :
*Case : D2 Molded plastic
*Epoxy : UL94V-O rate flame retardant
*Lead : Axial lead solderable per MIL-STD-202, Method 208 guaranteed
*Polarity : Color band denotes cathode end
*Mounting position : Any
*Weight : 0.465 gram
AVALANCHE FAST RECOVERY RECTIFIER DIODES
D2
1.00 (25.4)
0.161 (4.10) MIN.
0.154 (3.90)
0.284 (7.21)
0.268 (6.81)
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0.034 (0.86) |
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1.00 (25.4) |
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MIN. |
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0.028 (0.71) |
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Dimensions in inches and ( millimeters )
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Rating at 25 °C ambient temperature unless otherwise specified.
Single phase, half wave, 50 Hz, resistive or inductive load.
For capacitive load, derate current by 20%.
RATING |
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SYMBOL |
BYV95A |
BYV95B |
BYV95C |
BYV96D |
BYV96E |
UNITS |
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Maximum Recurrent Peak Reverse Voltage |
VRRM |
200 |
400 |
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600 |
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800 |
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1000 |
Volts |
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Maximum RMS voltage |
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VRMS |
140 |
280 |
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420 |
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560 |
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700 |
Volts |
Maximum DC Blocking Voltage |
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VDC |
200 |
400 |
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600 |
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800 |
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1000 |
Volts |
Min. Avalanche Breakdown Voltage @ 100 μA |
VBR(min. ) |
300 |
500 |
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700 |
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900 |
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1100 |
Volts |
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Maximum Average Forward Rectified Current |
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Lead Length 10 mm. ; Ttp = 65 °C |
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IF(AV) |
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1.5 |
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Amps. |
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Peak Forward Surge Current single half sine wave |
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superimposed on rated load |
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IFSM |
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35 |
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Amps. |
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Maximum Forward Voltage at IF = 3.0 Amps. |
VF |
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1.6 |
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Volts |
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Maximum DC Reverse Current |
TJ = 25 °C |
IR |
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5.0 |
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μA |
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at Rated DC Blocking Voltage |
TJ = 165 °C |
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150 |
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Maximum Reverse Recovery Time ( Note 1 ) |
Trr |
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150 |
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200 |
ns |
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Typical Thermal Resistance (Note 2) |
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RθJA |
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50 |
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°C/W |
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Junction Temperature Range |
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TJ |
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175 |
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°C |
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Storage Temperature Range |
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TSTG |
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- 65 to + 175 |
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°C |
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Notes :
(1)Measured with IF = 0.5A, IR = 1.0A, Irr = 0.25A
(2)Thermal resistance from Junction to Ambient at 0.375" (9.5mm) Lead Lengths, P.C. Board Mounted.
UPDATE : AUGUST 3, 1998