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A101M A2010 BCM54 80N60 5V8T1E 44000 TIP29A BD6522F
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  Datasheet File OCR Text:
 B120/B - B160/B
1.0A SURFACE MOUNT SCHOTTKY BARRIER RECTIFIER Features
* * * * * * Guard Ring Die Construction for Transient Protection Ideally Suited for Automatic Assembly Low Power Loss, High Efficiency Surge Overload Rating to 30A Peak For Use in Low Voltage, High Frequency Inverters, Free Wheeling, and Polarity Protection Application Plastic Material - UL Flammability Classification 94V-0
B
SMA Dim A B C D E G H J Min 2.29 4.00 1.27 0.15 4.80 0.10 0.76 2.01 Max 2.92 4.60 1.63 0.31 5.59 0.20 1.52 2.62
SMB Min 3.30 4.06 1.96 0.15 5.00 0.10 0.76 2.00 Max 3.94 4.57 2.21 0.31 5.59 0.20 1.52 2.62
A
C
D
J
Mechanical Data
* * * * * Case: Molded Plastic Terminals: Solder Plated Terminal Solderable per MIL-STD-202, Method 208 Polarity: Cathode Band or Cathode Notch Approx. Weight: SMA 0.064 grams SMB 0.093 grams Marking: Type Number
H
G E
All Dimensions in mm
No Suffix Designates SMA Package "B" Suffix Designates SMB Package
Maximum Ratings and Electrical Characteristics
Single phase, half wave, 60Hz, resistive or inductive load. For capacitive load, derate current by 20%. Characteristic Peak Repetitive Reverse Voltage Working Peak Reverse Voltage DC Blocking Voltage RMS Reverse Voltage Average Rectified Output Current @ TT = 130C Non-Repetitive Peak Forward Surge Current 8.3ms single half sine-wave superimposed on rated load (JEDEC Method) Forward Voltage @ IF = 1.0A Peak Reverse Current at Rated DC Blocking Voltage Typical Junction Capacitance (Note 2) Typical Thermal Resistance Junction to Terminal (Note 1) Operating and Storage Temperature Range @TA = 25C @ TA = 100C Symbol VRRM VRWM VR VR(RMS) IO IFSM VFM IRM Cj RqJT Tj, TSTG
@ TA = 25C unless otherwise specified
B120/B 20 14
B130/B 30 21
B140/B 40 28 1.0 30
B150/B 50 35
B160/B 60 42
Unit V V A A
0.50 0.5 10 110 20 -65 to +150
0.70
V mA pF C/W C
Notes:
1. Thermal Resistance: Junction to terminal, unit mounted on PC board with 5.0 mm 2 (0.013 mm thick) copper pads as heat sink. 2. Measured at 1.0 MHz and applied reverse voltage of 4.0V DC.
DS13002 Rev. H-2
1 of 3
B120/B-B160/B
IF, INSTANTANEOUS FWD CURRENT (A)
10
TA = +125C
IO, AVERAGE RECTIFIED CURRENT (A)
1.0
TA = +75C
1.0
TA = +25C TA = -25C
0.5
0 25 50 75 100 125 150 TT, TERMINAL TEMPERATURE (C) Fig. 1 Forward Current Derating Curve
IF, INSTANTANEOUS FORWARD CURRENT (A)
10
0.1
IF Pulse Width = 300ms
0.2
0.4
0.6
0.8
1.0
1.2
VF, INSTANTANEOUS FORWARD VOLTAGE (V) Fig. 2 Typical Forward Characteristics - B120/B thru B140/B
40
IFSM, PEAK FORWARD SURGE CURRENT (A)
Single Half Sine-Wave (JEDEC Method)
30
1.0
TA = +125C
TA = +25C
20
0.1
10
Tj = 150C
0.01 0 0.2 0.4
IF Pulse Width = 300 ms
0 1 10 NUMBER OF CYCLES AT 60 Hz Fig. 4 Max Non-Repetitive Peak Fwd Surge Current 100
0.6
0.8
1.0
VF, INSTANTANEOUS FWD VOLTAGE (V) Fig. 3 Typ. Forward Characteristics - B150/B thru B160/B
Tj = 25C f = 1 MHz
IR, INSTANTANEOUS REVERSE CURRENT (mA)
1000
10,000
1000 100
Cj, JUNCTION CAPACITANCE (pF)
TA = +125C
TA = +75C
100
10
1 0.1
TA = +25C
TA = -25C
10 0.1 1 10 100
0.01 0 10 20 30 40 50 60 VR, INSTANTANEOUS REVERSE VOLTAGE (V) Fig. 6 Typical Reverse Characteristics, B120/B thru B140/B
VR, REVERSE VOLTAGE (V) Fig. 5 Typical Junction Capacitance
DS13002 Rev. H-2
2 of 3
B120/B-B160/B
IR, INSTANTANEOUS REVERSE CURRENT (mA)
10,000
1000
TA = +125C
100
10
TA = +70C
1
TA = +25C
0.1 0 10 20 30 40 50 60 70 VR, INSTANTANEOUS REVERSE VOLTAGE (V) Fig. 7 Typical Reverse Characteristics, B150/B thru B160/B
DS13002 Rev. H-2
3 of 3
B120/B-B160/B


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