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SF61G Datasheet, PDF (1/2 Pages) MIC GROUP RECTIFIERS – SUPER FAST GLASS PASSIVATED RECTIFIER
SUPER FAST GLASS PASSIVATED RECTIFIER
SF61G THRU SF66G
VOLTAGE RANGE
CURRENT
50 to 400 Volts
6.0 Ampere
FEATURES
• Super fast switching speed
• Glass passivated chip junction
• Low power loss, high efficiency
• Low leakage
• High Surge Capacity
• High temperature soldering guaranteed
260℃/10 seconds, 0.375″(9.5mm) lead length
MECHANICAL DATA
• Case: Transfer molded plastic
• Epoxy: UL94V-0 rate flame retardant
• Polarity: Color band denotes cathode end
• Lead: Plated axial lead, solderable per MIL-STD-202E method 208C
• Mounting position: Any
• Weight: 0.07ounce, 2.0 gram
1.0(25.4)
MIN.
R-6
.052(1.3)
.048(1.2)
DIA.
.360(9.1)
.340(8.6)
1.0(25.4)
MIN.
.360(9.1)
.340(8.6)
DIA.
Dimensions in inches and (millimeters)
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
• Ratings at 25℃ ambient temperature unless otherwise specified
• Single Phase, half wave, 60Hz, resistive or inductive load
• For capacitive load derate current by 20%
SYMBOLS
SF
61G
SF
62G
SF
63G
SF
64G
Maximum Repetitive Peak Reverse Voltage
VRRM
50
100
150
200
Maximum RMS Voltage
VRMS
35
70
105
140
Maximum DC Blocking Voltage
Maximum Average Forward Rectified Current
0.375”(9.5mm) lead length at TA=55℃
Peak Forward Surge Current
8.3mS single half sine wave superimposed on
rated load (JEDEC method)
VDC
50
100
100
200
I(AV)
6.0
IFSM
150
Maximum Instantaneous Forward Voltage at 6.0A
VF
0.95
Maximum DC Reverse Current
at rated DC blocking Voltage at
TA = 25℃
TA = 125℃
IR
5.0
50
Maximum Reverse Recovery Time
Test conditions lF= 0.5A, lR= 1.0A, lRR=0.25A
trr
Typical Junction Capacitance
(Measured at 1.0MHz and applied reverse voltage of 4.0V)
CJ
35
50
Typical Thermal Resistance (NOTE 1)
RθJA
30
Operating Junction Temperature Range
Storage Temperature Range
TJ
TSTG
(-55 to +150)
(-55 to +150)
Notes:
1. Thermal Resistance from Junction to Ambient with 0.375″(9.5mm) lead length, PCB mounted.
SF
65G
300
210
300
1.25
30
SF
66G
UNIT
400 Volts
280 Volts
400 Volts
Amps
Amps
Volts
µA
nS
pF
℃/W
℃
℃
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