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 MBR20150CT thru MBR20200CT
Wide Temperature Range and High Tjm Schottky Barrier Rectifiers
A A C A C A Dimensions TO-220AB
Dim. A B C D E F G H J K M N Q R Millimeter 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 0.38 0.56 2.29 2.79 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 0.015 0.022 0.090 0.110
C(TAB)
A=Anode, C=Cathode, TAB=Cathode VRSM V 150 200 VRRM V 150 200 Test Conditions TC=125oC; rectangular, d=0.5 TC=125oC; rectangular, d=0.5; per device TVJ=45oC; tp=10ms (50Hz), sine VA=1.5.VRRM typ.; f=10kHz; repetitive
MBR20150CT MBR20200CT Symbol IFRMS IFAV IFAV IFSM IAR (dv/dt)cr TVJ TVJM Tstg Md Weight
Maximum Ratings 20 10 20 150 0.8 10000 -65...+150 150 -65...+175
Unit A A A V/us
o
C
mounting torque typical
0.4...0.6 2
Nm g
Symbol TVJ=25oC; VR=VRRM TVJ=125oC; VR=VRRM IF=10A; TVJ=125oC IF=10A; TVJ=25oC IF=20A; TVJ=125oC IF=20A; TVJ=25oC
Test Conditions
Characteristic Values typ. max. 1.0 50 0.80 0.90 0.90 1.00 2.0
Unit
IR
mA
VF
V
RthJC
K/W
FEATURES
* International standard package * Very low VF * Extremely low switching losses * Low IRM-values
APPLICATIONS
* Rectifiers in switch mode power supplies (SMPS) * Free wheeling diode in low voltage converters
ADVANTAGES
* High reliability circuit operation * Low voltage peaks for reduced protection circuits * Low noise switching * Low losses
MBR20150CT thru MBR20200CT
Wide Temperature Range and High Tjm Schottky Barrier Rectifiers
100 70 50 T J = 150 C 1,000 10,000
IF, INSTANEOUS FORWARD CURRENT (AMP)
TJ = 1505C IR , REVERSE CURRENT ( A)
T J = 125 C 100 T J = 100 C 10 20
10 7 5
TJ = 1255C TJ = 1005C TJ = 255C
1
2
0.1 T J = 25 C
1
0.01
0.2
0.4 0.6 0.8 vF, INSTANTANEOUS VOLTAGE (VOLTS)
1
0
20
40
60
80
100
120
140
160
180 200
VR , REVERSE CURRENT (VOLTS)
F igure 1. Typic al F orward Voltage (P er L eg)
PF(AV), AVERAGE POWER DISSIPATION (WATTS) TJ = 1255C 10 dc = 20 IF(AV), AVERAGE FORWARD CURRENT (AMPS)
40 36 32 28 24 20 16 12 8 4 0 S QUA R E WAV E
F igure 2. Typic al R evers e C urrent (P er L eg)
25 20 15
R AT E D V OLTA G E R J C = 2 C /W
IP K I AV
S QUA R E WAV E
dc
10
5 0
0
5
10
15
20
25
30
35
90
100
IF(AV), AVERAGE FORWARD CURRENT (AMPS)
110 120 130 140 TC, CASE TEMPERATURE (5C)
150
160
F igure 3. F orward P ower Dis s ipation
IF(AV), AVERAGE FORWARD CURRENT (AMPS)
20 16 12 8 4 dc 0 400 R J A = 16 C /W R AT E D V OLTA G E 500
F igure 4. C urrent Derating, C as e
TJ = 255C
C, CAPACITANCE (pF) 25 50 75 100 125 TA, AMBIENT TEMPERATURE (5C) 150 175
300
S QUA R E WAV E
200
100
0
0
1
2
5
10
20
50 70 100
VR , REVERSE VOLTAGE (VOLTS)
F igure 5. C urrent Derating, A mbient
F igure 6. Typic al C apac itanc e (P er L eg)


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