MBRA340T3G
SURFACE MOUNT SCHOTTKY BARRIER RECTIFIER
FEATURES
*
*
*
*
DO-214AC(SMA)
Ideal for surface mount applications
Easy pick and place
Built-in strain relief
Low forward voltage drop
MECHANICAL DATA
* Case: Molded plastic
* Epoxy: UL 94V-0 rate flame retardant
* Metallurgically bonded construction
* Polarity: Color band denotes cathode end
* Mounting position: Any
* Weight: 0.063 grams
Dimensions in inches and (millimeters)
1
Cathode
2
Anode
MARKING DIAGRAM
SS34
ORDERING INFORMATION
Device
SS34
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Package
Shipping
SMA
(Pb−Free)
2000 /
Tape & Reel
MBRA340T3G
MAXIMUM RATINGS
Rating
Peak Repetitive Reverse Voltage
Working Peak Reverse Voltage
DC Blocking Voltage
Average Rectified Forward Current
(At Rated VR, TL = 100°C)
Symbol
Value
Unit
VRRM
VRWM
VR
40
V
IO
Non−Repetitive Peak Surge Current
(Surge Applied at Rated Load Conditions Halfwave, Single Phase, 60 Hz)
IFSM
Storage/Operating Case Temperature
Operating Junction Temperature (Note 1)
Voltage Rate of Change
(Rated VR, TJ = 25°C)
A
3.0
A
100
Tstg, TC
−55 to +150
°C
TJ
−55 to +150
°C
dv/dt
V/ms
10,000
THERMAL CHARACTERISTICS
Characteristic
Thermal Resistance − Junction−to−Lead (Note 2)
Thermal Resistance − Junction−to−Ambient (Note 2)
Symbol
Value
Unit
RθJL
RθJA
15
81
°C/W
2. Mounted on 2″ Square PC Board with 1″ Square Total Pad Size, PC Board FR4.
ELECTRICAL CHARACTERISTICS
Symbol
Characteristic
Value
VF
Instantaneous Forward Voltage (Typ.)
(IF = 3.0 A)
Instantaneous Reverse Current (Typ.)
IR
(VR = 40 V)
Unit
TJ = 25°C
TJ = 100°C
0.450
0.390
TJ = 25°C
TJ = 100°C
0.3
15
Volts
mA
3. Pulse Test: Pulse Width ≤ 250 μs, Duty Cycle ≤ 2.0%.
TYPICAL CHARACTERISTICS
1
10
IF, INSTANTANEOUS FORWARD
CURRENT (AMPS)
IF, INSTANTANEOUS FORWARD
CURRENT (AMPS)
10
TJ = 125°C
0.1
0.10
TJ = 100°C
0.20
TJ = 25°C
0.30
0.40
TJ = −55°C
0.50
0.60
1
0.1
0.10
VF, INSTANTANEOUS FORWARD VOLTAGE (VOLTS)
Figure 1. Typical Forward Voltage
TJ = 125°C
TJ = 100°C
TJ = −55°C
TJ = 25°C
0.20
0.30
0.40
0.50
VF, MAXIMUM INSTANTANEOUS FORWARD
VOLTAGE (VOLTS)
Figure 2. Maximum Forward Voltage
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0.60
IR, REVERSE CURRENT (AMPS)
100E−3
IR, MAXIMUM REVERSE CURRENT (AMPS)
MBRA340T3G
100E−3
TJ = 125°C
10E−3
1E−3
TJ = 100°C
100E−6
10E−6
TJ = 25°C
1E−6
10E−3
TJ = 100°C
1E−3
TJ = −55°C
10E−9
1E−9
0
10
20
30
VR, REVERSE VOLTAGE (VOLTS)
TJ = −55°C
10E−6
40
1E−6
0
5
dc
freq = 20 kHz
4
3.5
3
2.5
2
1.5
SQUARE WAVE
Ipk/IO = p
Ipk/IO = 5
Ipk/IO = 10
1
0.5
0
25
50
75
100
125
150
TL, LEAD TEMPERATURE (°C)
1.6
SQUARE
WAVE
1.4
5
10
15
20
25
30
VR, REVERSE VOLTAGE (VOLTS)
35
40
TJ, DERATED OPERATING TEMPERATURE (°C)
TJ = 25 °C
0
dc
1.2
1.0
0.8
Ipk/IO = p
0.6
Ipk/IO = 5
0.4
Ipk/IO = 10
0.2
0
Ipk/IO = 20
0
0.5
1
1.5
2
2.5
3
3.5
4
4.5
5
IO, AVERAGE FORWARD CURRENT (AMPS)
Figure 6. Forward Power Dissipation
C, CAPACITANCE (pF)
100
40
1.8
Figure 5. Current Derating
1000
10
20
30
VR, REVERSE VOLTAGE (VOLTS)
Figure 4. Maximum Reverse Current
PFO, AVERAGE POWER DISSIPATION (WATTS)
IO, AVERAGE FORWARD CURRENT (AMPS)
Figure 3. Typical Reverse Current
4.5
TJ = 25°C
100E−6
100E−9
100E−12
TJ = 125°C
125
RqJA = 22 °C/W
115
105
RqJA = 43 °C/W
95
RqJA = 63 °C/W
85
RqJA = 81 °C/W
75
RqJA = 96 °C/W
65
55
0
Figure 7. Capacitance
5
35
10
15
20
25
30
VR, DC REVERSE VOLTAGE (VOLTS)
Figure 8. Typical Operating Temperature
Derating
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40
R(t), TRANSIENT THERMAL RESISTANCE (°C/W)
MBRA340T3G
100
D = 0.5
0.2
0.1
10
0.05
0.02
0.01
1
SINGLE PULSE
0.1
0.00001
0.0001
0.001
0.01
0.1
1
10
100
1000
100
1000
t, TIME (S)
R(t), TRANSIENT THERMAL RESISTANCE (°C/W)
Figure 9. Thermal Response, Junction−to−Ambient (min pad)
100
D = 0.5
0.2
10
0.1
0.05
0.02
1
0.1
0.01
SINGLE PULSE
0.00001
0.0001
0.001
0.01
0.1
1
10
t, TIME (S)
Figure 10. Thermal Response, Junction to Ambient (1 inch pad)
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