MBRS3200T3G
SURFACE MOUNT SCHOTTKY BARRIER RECTIFIER
Features
DO-214AA(SMB)
The plastic package carries Underwriters Laboratory
Flammability Classification 94V-0
For surface mounted applications
Metal silicon junction,majority carrier conduction
Low power loss,high efficiency
Built-in strain relief,ideal for automated placement
High forward surge current capability
High temperature soldering guaranteed:
250 °C/10 seconds at terminals
Dimensions in inches and (millimeters)
Mechanical Data
MARKING DIAGRAM
Case : JEDEC DO-214AC/SMA molded plastic body
Terminals : Solderable per MIL-STD-750,Method 2026
Polarity : Color band denotes cathode end Mounting
Position : Any
Weight : 0.003 ounce, 0.093 grams
SS320
ORDERING INFORMATION
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Device
Package
Shipping
SS320
SMB
(Pb−Free)
3000 /
Tape & Reel
MBRS3200T3G
MAXIMUM RATINGS
Rating
Symbol
Value
Unit
Peak Repetitive Reverse Voltage
Working Peak Reverse Voltage
DC Blocking Voltage
VRRM
VRWM
VR
200
V
Average Rectified Forward Current (TL = 150 °C)
IF(AV)
3.0
A
Non−Repetitive Peak Surge Current
(Surge Applied at Rated Load Conditions Halfwave, Single Phase, 60 Hz)
IFSM
Operating Junction Temperature
A
100
TJ
−65 to +175
Symbol
Value
Unit
RqJL
RqJA
13
62
°C/W
°C
THERMAL CHARACTERISTICS
Characteristic
Thermal Resistance, Junction−to−Lead (Note 1)
Thermal Resistance, Junction−to−Ambient (Note 2)
ELECTRICAL CHARACTERISTICS
Maximum Instantaneous Forward Voltage (Note 3)
(IF = 3.0 A, TJ = 25°C)
(IF = 4.0 A, TJ = 25°C)
(IF = 3.0 A, TJ = 150°C)
VF
Maximum Instantaneous Reverse Current (Note 3)
(Rated dc Voltage, TJ = 25°C)
(Rated dc Voltage, TJ = 150°C)
IR
TA = 150°C
10
TA = 175°C
100
TA = 100°C
IF, FORWARD CURRENT (A)
IF, FORWARD CURRENT (A)
100
TA = 25°C
1
0.1
0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3
V
0.84
0.86
0.59
1.0
5.0
TA = 150°C
mA
mA
TA = 100°C
TA = 175°C
10
TA = 25°C
1
0.1
0.2 0.3 0.4
0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3
VF, FORWARD VOLTAGE (V)
VF, FORWARD VOLTAGE (V)
Figure 1. Typical Forward Voltage
Figure 2. Maximum Forward Voltage
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MBRS3200T3G
1.0E−02
1.0E−02
TA = 175°C
TA = 150°C
TA = 100°C
TA = 100°C
1.0E−05
1.0E−06
1.0E−06
1.0E−07
1.0E−08
TA = 150°C
1.0E−04
1.0E−04
1.0E−05
TA = 175°C
1.0E−03
IR, REVERSE CURRENT (A)
IR, REVERSE CURRENT (A)
1.0E−03
TA = 25°C
1.0E−07
TA = 25°C
1.0E−09
0
20
1.0E−08
40
60
80
100
120 140 160 180 200
1.0E−09
0
20
40
60
Figure 3. Typical Reverse Current
120 140 160 180 200
TC = 25°C
f = 1 MHz
Typical Capacitance
at 0 V = 209 V
100
0
20
40
60
80
100
120 140 160 180 200
IF, AVERAGE FORWARD CURRENT (A)
7
RqJL = 13°C/W
6
dc
5
SQUARE WAVE
4
3
2
1
0
80
90
100 110 120 130 140 150 160 170 180
VR, REVERSE VOLTAGE (V)
TL, LEAD TEMPERATURE (°C)
Figure 5. Typical Capacitance
Figure 6. Current Derating − Lead
Pfo, AVERAGE POWER DISSIPATION (W)
C, CAPACITANCE (pF)
100
Figure 4. Maximum Reverse Current
1000
10
80
VR, REVERSE VOLTAGE (V)
VR, REVERSE VOLTAGE (V)
5
4.5
4
SQUARE WAVE
3.5
dc
3
2.5
2
1.5
1
0.5
0
0
1
2
3
4
5
IO, AVERAGE FORWARD CURRENT (A)
Figure 7. Forward Power Dissipation
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6
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