Lead Package. 1SMF16BT3 Datasheet

1SMF16BT3 Package. Datasheet pdf. Equivalent


ON Semiconductor 1SMF16BT3
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1SMF16BT1, 1SMF16BT3,
1SMF16BT3G
Zener Transient
Voltage Suppressor
SOD−123 Flat Lead Package
The 1SMF16B is designed to protect voltage sensitive components
from high voltage, high energy transients. Excellent clamping
capability, high surge capability, low Zener impedance and fast
response time. Because of its small size, it is ideal for use in cellular
phones, portable devices, business machines, power supplies and
many other industrial/consumer applications.
Specification Features:
Stand−off Voltage: 16 Volt
Peak Power − 175 Watts @ 1 ms
Maximum Clamp Voltage @ Peak Pulse Current
Low Leakage
Response Time is Typically < 1 ns
IEC61000−4−2 Level 4 ESD Protection
Low Profile − Maximum Height of 1.0 mm
Small Footprint
Cathode Indicated by Polarity Band
Pb−Free Package is Available
Mechanical Characteristics:
CASE: Void-free, transfer-molded, thermosetting plastic
LEAD FINISH: 100% Matte Sn (Tin)
MOUNTING POSITION: Any
QUALIFIED MAX REFLOW TEMPERATURE: 260°C
Device Meets MSL 1 Requirements
Epoxy Meets UL 94, V−0
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PLASTIC SURFACE MOUNT
ZENER OVERVOLTAGE
TRANSIENT SUPPRESSOR
175 WATT PEAK POWER
12
1: CATHODE
2: ANODE
SOD−123FL
CASE 498
PLASTIC
MARKING DIAGRAM
1
CATHODE
MLU D
2
ANODE
MLU = Specific Device Code
D = Date Code
© Semiconductor Components Industries, LLC, 2004
February, 2004 − Rev. 1
ORDERING INFORMATION
Device
Package
Shipping
1SMF16BT1 SOD−123FL 3,000/Tape & Reel
1SMF16BT3 SOD−123FL 10,000/Tape & Reel
1SMF16BT3G SOD−123FL 10,000/Tape & Reel
(Pb−Free)
†For information on tape and reel specifications,
including part orientation and tape sizes, please
refer to our Tape and Reel Packaging Specifications
Brochure, BRD8011/D.
1 Publication Order Number:
1SMF16B/D


1SMF16BT3 Datasheet
Recommendation 1SMF16BT3 Datasheet
Part 1SMF16BT3
Description (1SMF16BT1 / 1SMF16BT3) Zener Transient Voltage Suppressor SOD-123 Flat Lead Package
Feature 1SMF16BT3; www.DataSheet4U.com 1SMF16BT1, 1SMF16BT3, 1SMF16BT3G Zener Transient Voltage Suppressor SOD−123 Fla.
Manufacture ON Semiconductor
Datasheet
Download 1SMF16BT3 Datasheet




ON Semiconductor 1SMF16BT3
1SMF16BT1, 1SMF16BT3, 1SMF16BT3G
MAXIMUM RATINGS
Rating
Maximum Ppk Dissipation @ TA = 25°C, (PW−10/1000 ms) (Note 1)
Maximum Ppk Dissipation @ TA = 25°C, (PW−8/20 ms) (Note 2)
Operating and Storage Temperature Range
1. Non−repetitive current pulse at TA = 25°C, per waveform of Figure 3.
2. Non−repetitive current pulse at TA = 25°C, per waveform of Figure 4.
ELECTRICAL CHARACTERISTICS
(TA = 25°C unless otherwise noted)
Symbol
Parameter
IPP
VC
VRWM
IR
VBR
IT
IF
VF
Maximum Reverse Peak Pulse Current
Clamping Voltage @ IPP
Working Peak Reverse Voltage
Maximum Reverse Leakage Current @ VRWM
Breakdown Voltage @ IT
Test Current
Forward Current
Forward Voltage @ IF
Symbol
Ppk
Ppk
TJ, Tstg
Value
175
1000
−55 to +150
I
IF
VC VBR VRWM
IIRT VF
IPP
Uni−Directional TVS
Unit
W
W
°C
V
ELECTRICAL CHARACTERISTICS (TL = 30°C unless otherwise noted, VF = 1.3 Volts @ 850 mA)
VRWM
(Note 3)
VBR @ IT (V) (Note 4)
Max VC @ Max VC @
IT IR @ VRWM IPP = 1 Amp IPP = 7 Amp
Device
Marking
(V)
Min Nom Max (mA)
(mA)
(V)
(V)
1SMF16B
MLU
16 16.7 17.6 18.5 1.0
1.0
20
26
3. A transient suppressor is normally selected according to the Working Peak Reverse Voltage (VRWM) which should be equal to or greater
than the DC or continuous peak operating voltage level.
4. VBR measured at pulse test current IT at ambient temperature of 25°C.
Zin
Vin
LOAD
VL
Figure 1. Typical Protection Circuit
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ON Semiconductor 1SMF16BT3
10,000
1000
100
10
1.0
1SMF16BT1, 1SMF16BT3, 1SMF16BT3G
10 100 1000
tP, PULSE WIDTH (ms)
Figure 2. Pulse Rating Curve
PULSE WIDTH (tP) IS DEFINED
tr AS THAT POINT WHERE THE PEAK
CURRENT DECAYS TO 50%
100 OF IRSM.
PEAK VALUE − IRSM tr 10 ms
50
HALF VALUE −
IRSM
2
0
10,000 0
tP
1 2 34
t, TIME (ms)
Figure 3. 10 X 1000 ms Pulse Waveform
100
90 tr
80
70
60
50
40
30
20
10
0
0
tP
PEAK VALUE IRSM @ 8 ms
PULSE WIDTH (tP) IS DEFINED
AS THAT POINT WHERE THE
PEAK CURRENT DECAY = 8 ms
HALF VALUE IRSM/2 @ 20 ms
20 40
t, TIME (ms)
60
80
160
140
120
100
80
60
40
20
0
0
25 50
75 100 125
TA, AMBIENT TEMPERATURE (°C)
150
Figure 4. 8 X 20 ms Pulse Waveform
Figure 5. Pulse Derating Curve
1
0.7
0.5
0.3
0.2
0.1
0.07
0.05
0.03
0.02
0.01
0.1 0.2
0.5 1 2
PULSE WIDTH
10 ms
1 ms
100 ms
10 ms
5 10 20 50 100
D, DUTY CYCLE (%)
Figure 6. Typical Derating Factor for Duty Cycle
300
250
200
150
100
50
0 2 4 6 8 10 12 14 16
REVERSE VOLTAGE (V)
Figure 7. Capacitance versus Reverse Voltage
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