MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
Order this document by MUR3020PT/D
SWITCHMODE Power Rectifiers
. . . designed for use in switching power supplies, inverters and as free wheeling diodes, these state±of±the±art devices have the following features:
•Ultrafast 35 and 60 Nanosecond Recovery Time
•175°C Operating Junction Temperature
•High Voltage Capability to 600 Volts
•Low Forward Drop
•Low Leakage Specified @ 150°C Case Temperature
•Current Derating Specified @ Both Case and Ambient Temperatures
•Epoxy Meets UL94, VO @ 1/8″
•High Temperature Glass Passivated Junction
Mechanical Characteristics:
•Case: Epoxy, Molded
•Weight: 4.3 grams (approximately)
•Finish: All External Surfaces Corrosion Resistant and
Terminal Leads are Readily Solderable |
1 |
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• Lead Temperature for Soldering Purposes: 260°C Max. |
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2, 4 |
for 10 Seconds |
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• Shipped 30 units per plastic tube |
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• Marking: U3020, U3040, U3060 |
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MAXIMUM RATINGS, PER LEG
MUR3020PT MUR3040PT* MUR3060PT*
*Motorola Preferred Devices
ULTRAFAST RECTIFIERS
30 AMPERES
200±400±600 VOLTS
1
2
3
CASE 340D±02, Style 2
TO±218AC
Rating |
Symbol |
MUR3020PT |
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MUR3040PT |
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MUR3060PT |
Unit |
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Peak Repetitive Reverse Voltage |
VRRM |
200 |
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400 |
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600 |
Volts |
Working Peak Reverse Voltage |
VRWM |
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DC Blocking Voltage |
VR |
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Average Rectified Forward Current (Rated VR) |
IF(AV) |
15 @ TC = 150°C |
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Amps |
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Per Leg |
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15 @ TC = |
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Per Device |
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30 @ TC = 150°C |
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30 145°C |
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Peak Rectified Forward Current, Per Leg |
IFRM |
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30 |
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30 |
Amps |
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(Rated VR, Square Wave, 20 kHz, TC = 150°C) |
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@ TC = 150°C |
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@ TC =145°C |
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Nonrepetitive Peak Surge Current |
IFSM |
200 |
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150 |
Amps |
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(Surge applied at rated load conditions, |
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halfwave, single phase, 60 Hz) Per Leg |
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Operating Junction and Storage Temperature |
TJ, Tstg |
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± 65 to +175 |
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°C |
THERMAL CHARACTERISTICS PER DIODE LEG |
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Maximum Thermal Resistance Ð Junction to Case |
RθJC |
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1.5 |
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°C/W |
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Ð Junction to Ambient |
RθJA |
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40 |
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ELECTRICAL CHARACTERISTICS PER DIODE LEG |
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Maximum Instantaneous Forward Voltage (1) |
VF |
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Volts |
(IF = 15 Amp, TC = 150°C) |
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0.85 |
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1.12 |
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1.2 |
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(IF = 15 Amp, TC = 25°C) |
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1.05 |
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1.25 |
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1.5 |
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Maximum Instantaneous Reverse Current (1) |
iR |
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μA |
(Rated DC Voltage, TJ = 150°C) |
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500 |
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1000 |
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(Rated DC Voltage, TJ = 25°C) |
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10 |
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10 |
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Maximum Reverse Recovery Time |
trr |
35 |
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60 |
ns |
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(iF = 1.0 Amp, di/dt = 50 Amps/μs) |
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(1) Pulse Test: Pulse Width = 300 μs, Duty Cycle ≤ 2.0%. |
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SWITCHMODE is a trademark of Motorola, Inc.
Preferred devices are Motorola recommended choices for future use and best overall value.
Rev 4
Rectifier Device Data |
1 |
MUR3020PT |
MUR3040PT |
MUR3060PT |
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100 |
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TJ = 150°C |
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100 |
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TJ = 150°C |
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° |
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100 C |
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25°C |
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A) |
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20 |
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100°C |
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50 |
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10 |
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5 |
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CURRENT |
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1 |
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30 |
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2 |
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REVERSE, |
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0.1 |
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20 |
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0.5 |
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25°C |
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(AMPS) |
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0.2 |
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I |
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10 |
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R |
0.05 |
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CURRENT |
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0.02 |
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0.01 |
20 |
40 |
60 |
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100 |
120 |
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180 |
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5 |
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0 |
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FORWARD |
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VR, REVERSE VOLTAGE (VOLTS) |
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3 |
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Figure 2. Typical Reverse Current (Per Leg) |
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INSTANTANEOUS |
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(AMPS) |
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2 |
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16 |
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i |
1 |
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CURRENT |
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dc |
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F |
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0.5 |
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FORWARD |
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10 |
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SQUARE WAVE |
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0.3 |
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AVERAGE, |
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0.2 |
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4 |
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RATED VOLTAGE APPLIED |
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F(AV) |
2 |
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0.1 |
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0.4 |
0.6 |
0.8 |
1 |
1.2 |
1.4 |
1.6 |
I |
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150 |
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160 |
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180 |
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0.2 |
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140 |
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v , INSTANTANEOUS VOLTAGE (VOLTS) |
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TC, CASE TEMPERATURE (°C) |
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F |
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Figure 1. Typical Forward Voltage (Per Leg) |
Figure 3. Current Derating, Case (Per Leg) |
I F(AV) , AVERAGE FORWARD CURRENT (AMPS)
14
12
10
8
6
4
2
0
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(WATTS) |
14 |
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IAV |
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16 |
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IPK = π |
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dc |
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DISSIPATION |
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(RESISTIVE LOAD) |
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RθJA = 15°C/W AS OBTAINED |
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IPK = 5 |
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USING A SMALL FINNED |
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(CAPACITIVE LOAD) |
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dc |
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SQUARE WAVE |
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HEAT SINK. |
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10 |
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IAV |
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10 |
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POWER |
6 |
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dc |
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RθJA |
= 40°C/W |
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AVERAGE, |
2 |
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SQUARE WAVE |
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SQUARE WAVE |
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4 |
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TJ = 125°C |
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AS OBTAINED IN FREE AIR |
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F(AV) |
0 |
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WITH NO HEAT SINK. |
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0 |
20 |
40 |
60 |
80 |
100 |
120 |
140 |
160 |
180 |
200 |
P |
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0 |
2 |
4 |
6 |
8 |
10 |
12 |
14 |
16 |
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TA, AMBIENT TEMPERATURE (°C) |
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IF(AV), AVERAGE FORWARD CURRENT (AMPS) |
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Figure 4. Current Derating, Ambient (Per Leg) |
Figure 5. Power Dissipation (Per Leg) |
2 |
Rectifier Device Data |
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MUR3020PT |
MUR3040PT |
MUR3060PT |
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100 |
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100 |
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TJ = 150°C |
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50 |
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50 |
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A) |
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20 |
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100°C |
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10 |
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100°C |
° |
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25°C |
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( |
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30 |
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TJ = 150°C |
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25 C |
CURRENT |
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1 |
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2 |
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20 |
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REVERSE, |
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0.1 |
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10 |
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0.5 |
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(AMPS) |
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0.2 |
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I |
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R |
0.05 |
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CURRENT |
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0.02 |
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5 |
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0.01 |
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0 |
50 |
100 |
150 |
200 |
250 |
300 |
350 |
400 |
450 |
500 |
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INSTANTANEOUS, FORWARD |
3 |
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VR, REVERSE VOLTAGE (VOLTS) |
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Figure 7. Typical Reverse Current (Per Leg) |
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2 |
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CURRENT(AMPS) |
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16 |
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10 |
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14 |
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1 |
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12 |
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dc |
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i |
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FORWARD |
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SQUARE WAVE |
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F |
0.5 |
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8 |
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0.3 |
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AVERAGE, |
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6 |
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0.2 |
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4 |
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RATED VOLTAGE APPLIED |
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F(AV) |
2 |
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0.1 |
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0.4 |
0.6 |
0.8 |
1 |
1.2 |
1.4 |
1.6 |
I |
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150 |
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160 |
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170 |
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180 |
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0.2 |
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140 |
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vF, INSTANTANEOUS VOLTAGE (VOLTS) |
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TC, CASE TEMPERATURE (°C) |
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Figure 6. Typical Forward Voltage (Per Leg) |
Figure 8. Current Derating, Case (Per Leg) |
I F(AV) , AVERAGE FORWARD CURRENT (AMPS)
14
12
10
8
6
4
2
0
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(WATTS) |
14 |
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IAV |
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16 |
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(RESISTIVE±INDUCTIVE LOAD) |
IPK = π |
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dc |
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° |
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DISSIPATION |
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(CAPACITIVE LOAD) |
IPK = 5 |
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dc |
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RθJA = 15 C/W AS OBTAINED |
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12 |
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IAV |
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USING A SMALL FINNED |
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10 |
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HEAT SINK. |
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SQUARE WAVE |
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10 |
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POWER |
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20 |
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SQUARE WAVE |
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6 |
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dc |
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8 |
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AVERAGE, |
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RθJA |
= 40°C/W |
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2 |
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SQUARE WAVE |
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4 |
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TJ = 125°C |
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AS OBTAINED IN FREE AIR |
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F(AV) |
0 |
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WITH NO HEAT SINK. |
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0 |
20 |
40 |
60 |
80 |
100 |
120 |
140 |
160 |
180 |
200 |
P |
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0 |
2 |
4 |
6 |
8 |
10 |
12 |
14 |
16 |
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TA, AMBIENT TEMPERATURE (°C) |
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IF(AV), AVERAGE FORWARD CURRENT (AMPS) |
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|||||||||
Figure 9. Current Derating, Ambient (Per Leg) |
Figure 10. Power Dissipation (Per Leg) |
Rectifier Device Data |
3 |
MUR3020PT |
MUR3040PT |
MUR3060PT |
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100 |
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200 |
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100 |
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μ A) |
50 |
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TJ = 150°C |
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50 |
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20 |
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( |
10 |
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TJ = 150°C |
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CURRENT |
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100°C |
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5 |
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30 |
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2 |
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100°C |
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1 |
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20 |
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REVERSE |
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0.5 |
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25°C |
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25°C |
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(AMPS) |
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0.2 |
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, |
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10 |
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R |
0.1 |
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I |
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CURRENT |
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0.05 |
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0.02 |
200 |
250 |
300 |
350 |
400 |
450 |
500 |
550 |
600 |
650 |
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5 |
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150 |
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FORWARD |
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VR, REVERSE VOLTAGE (VOLTS) |
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3 |
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Figure 12. Typical Reverse Current (Per Leg) |
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INSTANTANEOUS |
2 |
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(AMPS) |
16 |
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1 |
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14 |
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dc |
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, |
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CURRENT |
12 |
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F |
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i |
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10 |
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SQUARE WAVE |
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0.5 |
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FORWARD |
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8 |
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0.3 |
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6 |
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,AVERAGE |
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0.2 |
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4 |
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RATED VOLTAGE APPLIED |
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||||||
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2 |
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F(AV) |
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0.1 |
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0 |
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0.2 |
0.4 |
0.6 |
0.8 |
1 |
1.2 |
1.4 |
1.6 |
I |
140 |
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150 |
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160 |
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170 |
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180 |
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||||||||||||||
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vF, INSTANTANEOUS VOLTAGE (VOLTS) |
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T |
C |
, CASE TEMPERATURE (°C) |
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Figure 11. Typical Forward Voltage (Per Leg) |
Figure 13. Current Derating, Case (Per Leg) |
(AMPS)CURRENTFORWARDAVERAGE, |
10 |
RθJA |
= 60°C/W |
|
|
|
= 16°C/W AS OBTAINED |
|
(WATTS)DISSIPATIONPOWER |
16 |
|
(CAPACITIVE LOAD) |
IPK = 5 |
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dc |
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R |
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9 |
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dc |
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θJA |
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14 |
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IAV |
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8 |
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FROM A SMALL TO±220 |
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10 |
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HEAT SINK. |
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12 |
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7 |
SQUARE WAVE |
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6 |
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10 |
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20 |
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SQUARE WAVE |
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5 |
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8 |
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4 |
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dc |
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6 |
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(RESISTIVE±INDUCTIVE LOAD) |
|
|||
F(AV) |
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AVERAGE, |
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||||||
3 |
WITH NO HEAT SINK. |
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4 |
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IPK = π |
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||||
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2 |
SQUARE WAVE |
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° |
|
IAV |
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||
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2 |
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|
TJ = 125 C |
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1 |
AS OBTAINED IN FREE AIR |
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F(AV) |
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I |
0 |
20 |
40 |
60 |
80 |
100 |
120 |
140 |
160 |
180 |
200 |
0 |
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2 |
4 |
6 |
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10 |
12 |
14 |
16 |
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P |
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TA, AMBIENT TEMPERATURE (°C) |
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IF(AV), AVERAGE FORWARD CURRENT (AMPS) |
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Figure 14. Current Derating, Ambient (Per Leg) |
Figure 15. Power Dissipation (Per Leg) |
4 |
Rectifier Device Data |
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MUR3020PT |
MUR3040PT |
MUR3060PT |
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(NORMALIZED) |
1 |
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0.5 |
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D = 0.5 |
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RESISTANCE |
0.2 |
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0.1 |
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0.1 |
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ZθJC(t) = r(t) RθJC |
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0.05 |
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P(pk) |
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RθJC = 1.5°C/W MAX |
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THERMAL |
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0.05 |
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0.01 |
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t1 |
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D CURVES APPLY FOR POWER |
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PULSE TRAIN SHOWN |
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t2 |
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SINGLE PULSE |
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READ TIME AT T1 |
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TRANSIENT |
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DUTY CYCLE, D = t /t |
TJ(pk) ± TC = P(pk) ZθJC(t) |
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0.02 |
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1 2 |
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0.01 |
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0.01 |
0.02 |
0.05 |
0.1 |
0.2 |
0.5 |
1 |
2 |
5 |
10 |
20 |
50 |
100 |
200 |
500 |
1K |
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r(t), |
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t, TIME (ms) |
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Figure 16. Thermal Response
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1K |
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500 |
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TJ = 25°C |
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(pF) |
200 |
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C, CAPACITANCE |
100 |
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50 |
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20 |
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10 |
2 |
5 |
10 |
20 |
50 |
100 |
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1 |
VR, REVERSE VOLTAGE (VOLTS)
Figure 17. Typical Capacitance (Per Leg)
Rectifier Device Data |
5 |