MBR10150CT thru MBR10200CT
Wide Temperature Range and High Tjm Schottky Barrier Rectifiers
A C(TAB) A C A C A Dimensions TO-220AB
Dim. A B C D E F G H J K M N Q R Inches Min. Max. 0.500 0.550 0.580 0.630 0.390 0.420 0.139 0.161 0.230 0.270 0.100 0.125 0.045 0.065 0.110 0.230 0.025 0.040 0.100 BSC 0.170 0.190 0.045 0.055 0.014 0.022 0.090 0.110 Milimeter Min. Max. 12.70 13.97 14.73 16.00 9.91 10.66 3.54 4.08 5.85 6.85 2.54 3.18 1.15 1.65 2.79 5.84 0.64 1.01 2.54 BSC 4.32 4.82 1.14 1.39 0.35 0.56 2.29 2.79
A=Anode, C=Cathode, TAB=Cathode VRRM V 150 200 VRMS V 105 140 VDC V 150 200
MBR10150CT MBR10200CT
Symbol I(AV) IFSM dv/dt
Characteristics Maximum Average Forward Rectified Current @TC=120oC
Maximum Ratings 10 120 10000
o IF=5A @TJ=25 C o IF=5A @TJ=125 C o IF=10A @TJ=25 C IF=10A @TJ=125 oC
Unit A A V/us
Peak Forward Surge Current 8.3ms Single Half-Sine-Wave Superimposed On Rated Load (JEDEC METHOD) Voltage Rate Of Change (Rated VR) Maximum Forward Voltage (Note 1)
VF
0.95 0.95 0.80 0.05 15 4.5 -55 to +150 -55 to +150
o
V
IR ROJC TJ TSTG
Maximum DC Reverse Current At Rated DC Blocking Voltage Typical Thermal Resistance (Note 2) Operating Temperature Range Storage Temperature Range
@TJ=25oC @TJ=125oC
mA C/W
o o
C C
NOTES: 1. 300us Pulse Width, Duty Cycle 2%. 2. Thermal Resistance Junction To Case. 3. Measured At 1.0MHz And Applied Reverse Voltage Of 4.0V DC.
FEATURES
* Metal of silicon rectifier, majority carrier conducton * Guard ring for transient protection * Low power loss, high efficiency * High current capability, low VF * High surge capacity * For use in low voltage, high frequency inverters, free whelling, and polarity protection applications
MECHANICAL DATA
* Case: TO-220AB molded plastic * Polarity: As marked on the body * Weight: 0.08 ounces, 2.24 grams * Mounting position: Any
MBR10150CT thru MBR10200CT
Wide Temperature Range and High Tjm Schottky Barrier Rectifiers
100 70 10,000
IF(AV) , AVERAGE FORWARD CURRENT (AMPS)
50
TJ=150
1,000
TJ=150
IR , REVERSE CURRENT (u A)
TJ=125
100
20
TJ=100
10
TJ=125
10 7 5
TJ=100
1
TJ=25
2
0.1
TJ=25
1 0.2
VF
0.01 0.4 0.6 0.8 1
0
20
40
60
80
100
120
140
160
180
200
, INSTANTANEOUS VOLTAGE (VOLTS)
VR , REVERSE CURRENT (VOLTS)
Figure 1. Typical Forward Voltage (Per Leg)
Figure 2. Typical Reverse Current (Per Leg)
PF(AV) , AVERAGE POWER DISSIPATION (WATTS)
TJ=125
36 32 28 10
SQUARE WAVE
IF(AV) , AVERAGE POWER CURRENT (AMPS)
40
RATED VOLTAGE Rth JC=2 /W 10
dc 24 20 16 12 8 4 0 0 5 10 15 20 25 30 35
IPK =20 IAV
SQUARE WAVE 5
0 90 100 110 120 130 140 150 160
IF(AV) , AVERAGE FORWARD CURRENT (AMPS)
TC , CASE TEMPERATURE
Figure 3. Forward Power Dissipation
Figure 4. Forward Current Derating, Case
IF(AV) , AVERAGE FORWARD CURRENT (AMPS)
10 RATED VOLTAGE Rth JA=16 /W 8
500
TJ=25
400
C , CAPACITANCE (pF)
6
300
4
200
2
100
0 0 25 50 75 100 125 150 175
0 1 2 5 10 20 50 70 100
TA , AMBIENT TEMPERATURE
VR , REVERSE VOLTAGE (VOLTS)
Figure 5. Current Derating, Ambient
Figure 6. Typical Capacitance (Per Leg)
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