TVS Diodes
Surface Mount – 1500W > TPSMC-VR
TPSMC series
Series
TPSMC-VR Series
RoHS
Pb e3
Description
Uni-directional
Bi-directional
The TPSMC-VR series is designed specifically to protect
sensitive electronic equipment from voltage transients
induced by lightning and other transient voltage events.
Features
Agency Approvals
AGENCY
AGENCY FILE NUMBER
E230531
Maximum Ratings and Thermal Characteristics
(TA=25OC unless otherwise noted)
Parameter
Symbol
Peak Pulse Power Dissipation (IPP x
PPPM
VC)by 10/1000µs Waveform (Fig.2)
(Note 1), (Note 2)
Value
Unit
1500
W
PM(AV)
6.5
W
Peak Forward Surge Current, 8.3ms
Single Half Sine Wave
IFSM
200
A
Maximum Instantaneous Forward
Voltage at 100A for Unidirectional
Only (Note 4)
VF
3.5
V
TJ , TSTG
-65 to 150
°C
Typical Thermal Resistance Junction
to Lead
RƟJL
15
°C/W
Typical Thermal Resistance Junction
to Ambient
RƟJA
75
°C/W
Power Dissipation on Infinite Heat
Sink at TA=50OC
Operating Junction and Storage
Temperature Range
• High reliability application
and automotive grade
AEC-Q101 qualified
• Surface mount component
to optimize board space
• Low profile package.
• Typical failure mode is
short from over-specified
voltage or current
• Whisker test is conducted
based on JEDEC
JESD201A per its table 4a
and 4c
• ESD protection of data
lines in accordance with
IEC 61000-4-2,30kV(Air),
30kV (Contact)
• EFT protection of data
lines in accordance with
IEC 61000-4-4
• Built-in strain relief
• Glass passivated chip
junction
• 1500W peak pulse power
capability at 10/1000μs
waveform, repetition rate
(duty cycles):0.01%
• Fast response time:
typically less than 1.0ps
from 0V to VBR min
• Excellent clamping
capability
• Low incremental surge
resistance
• UL Recognized compound
meeting flammability
rating V-0.
• Meet MSL level1,
per J-STD-020, High
temperature soldering
guaranteed: 260°C/10
seconds at terminals
• Matte tin lead–free plated
• Halogen free and RoHS
compliant
• Pb-free E3 means 2nd
level interconnect is
Pb-free and the terminal
finish material is tin(Sn)
(IPC/JEDEC J-STD609A.01)
Notes:
1. Non-repetitive current pulse per Fig. 4 and derated above TA = 25OC per Fig. 3.
2. Mounted on copper pad area of 0.31x0.31” (8.0 x 8.0mm) to each terminal.
3. Measured on 8.3ms single half sine wave or equivalent square wave for unidirectional
component only, duty cycle=4 per minute maximum.
Applications
Functional Diagram
TVS components are ideal for the protection of I/O
Interfaces, VCC bus and other vulnerable circuits used in
Telecom, Computer, Industrial and Consumer electronic
applications.
Bi-directional
Cathode
Anode
Uni-directional
© 2018 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 10/03/18
TVS Diodes
Surface Mount – 1500W > TPSMC-VR
TPSMC series
Series
Electrical Characteristics
Part
Number
(Uni)
Part
Number
(Bi)
TPSMC11A-VR
TPSMC12A-VR
TPSMC13A-VR
TPSMC14A-VR
TPSMC15A-VR
TPSMC16A-VR
TPSMC17A-VR
TPSMC18A-VR
TPSMC20A-VR
TPSMC22A-VR
TPSMC24A-VR
TPSMC26A-VR
TPSMC28A-VR
TPSMC30A-VR
TPSMC33A-VR
TPSMC36A-VR
TPSMC40A-VR
TPSMC43A-VR
TPSMC45A-VR
TPSMC48A-VR
TPSMC51A-VR
TPSMC54A-VR
TPSMC58A-VR
TPSMC60A-VR
TPSMC64A-VR
TPSMC70A-VR
TPSMC75A-VR
TPSMC78A-VR
TPSMC85A-VR
TPSMC11CA-VR
TPSMC12CA-VR
TPSMC13CA-VR
TPSMC14CA-VR
TPSMC15CA-VR
TPSMC16CA-VR
TPSMC17CA-VR
TPSMC18CA-VR
TPSMC20CA-VR
TPSMC22CA-VR
TPSMC24CA-VR
TPSMC26CA-VR
TPSMC28CA-VR
TPSMC30CA-VR
TPSMC33CA-VR
TPSMC36CA-VR
TPSMC40CA-VR
TPSMC43CA-VR
TPSMC45CA-VR
TPSMC48CA-VR
TPSMC51CA-VR
TPSMC54CA-VR
TPSMC58CA-VR
TPSMC60CA-VR
TPSMC64CA-VR
TPSMC70CA-VR
TPSMC75CA-VR
TPSMC78CA-VR
TPSMC85CA-VR
Marking
UNI
BI
GDZA
GEEA
GEGA
GEKA
GEMA
GEPA
GERA
GETA
GEVA
GEXA
GEZA
GFEA
GFGA
GFKA
GFMA
GFPA
GFRA
GFTA
GFVA
GFXA
GFZA
GGEA
GGGA
GGKA
GGMA
GGPA
GGRA
GGTA
GGVA
BDZA
BEEA
BEGA
BEKA
BEMA
BEPA
BERA
BETA
BEVA
BEXA
BEZA
BFEA
BFGA
BFKA
BFMA
BFPA
BFRA
BFTA
BFVA
BFXA
BFZA
BGEA
BGGA
BGKA
BGMA
BGPA
BGRA
BGTA
BGVA
Reverse
Breakdown
Stand off Voltage V
BR
Voltage
(Volts) @ IT
VR
MIN
MAX
(Volts)
11.0
12.0
13.0
14.0
15.0
16.0
17.0
18.0
20.0
22.0
24.0
26.0
28.0
30.0
33.0
36.0
40.0
43.0
45.0
48.0
51.0
54.0
58.0
60.0
64.0
70.0
75.0
78.0
85.0
12.20
13.30
14.40
15.60
16.70
17.80
18.90
20.00
22.20
24.40
26.70
28.90
31.10
33.30
36.70
40.00
44.40
47.80
50.00
53.30
56.70
60.00
64.40
66.70
71.10
77.80
83.30
86.70
94.40
13.50
14.70
15.90
17.20
18.50
19.70
20.90
22.10
24.50
26.90
29.50
31.90
34.40
36.80
40.60
44.20
49.10
52.80
55.30
58.90
62.70
66.30
71.20
73.70
78.60
86.00
92.10
95.80
104.00
Test Maximum Maximum Maximum Maximum Agency
Peak
Reverse
Current Clamping
Temperature Approval
Voltage VC
Pulse
Leakage IR
coefficient of
IT
@ Ipp
Current Ipp
@ VR
VBR (%/C)
(mA)
(V)
(A)
(µA)
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
18.2
19.9
21.5
23.2
24.4
26.0
27.6
29.2
32.4
35.5
38.9
42.1
45.4
48.4
53.3
58.1
64.5
69.4
72.7
77.4
82.4
87.1
93.6
96.8
103.0
113.0
121.0
126.0
137.0
82.5
75.4
69.8
64.7
61.5
57.7
54.4
51.4
46.3
42.3
38.6
35.7
33.1
31.0
28.2
25.9
23.3
21.7
20.6
19.4
18.2
17.3
16.1
15.5
14.6
13.3
12.4
11.9
11.0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0.074
0.075
0.076
0.080
0.083
0.084
0.085
0.088
0.091
0.092
0.092
0.093
0.094
0.096
0.097
0.098
0.099
0.100
0.101
0.101
0.101
0.102
0.103
0.103
0.104
0.105
0.106
0.106
0.106
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
VBR @ TJ= VBR @ 25°C x (1+αT x (TJ - 25))(αT:Temperature Coefficient, typical value is 0.1%)
I-V Curve Characteristics
Uni-directional
I
I
Bi-directional
Ipp
Vc VBR VR
IR VF
IT
V
Vc VBR VR
Ipp
PPPM
VR
VBR
VC
IR
VF
Peak Pulse Power Dissipation (IPP x VC)-- Max power dissipation
Stand-off Voltage -- Maximum voltage that can be applied to the TVS without operation
Breakdown Voltage -- Maximum voltage that flows though the TVS at a specified test current (IT)
Clamping Voltage -- Peak voltage measured across the TVS at a specified Ippm (peak impulse current)
Reverse Leakage Current -- Current measured at VR
Forward Voltage Drop for Uni-directional
IT
IR
IR
IT
VR VBR Vc
V
Ipp
© 2018 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 10/03/18
TVS Diodes
Surface Mount – 1500W > TPSMC-VR
TPSMC series
Series
Ratings and Characteristic Curves (T =25°C unless otherwise noted)
A
Figure 1 - TVS Transients Clamping Waveform
Figure 2 - Peak Pulse Power Rating
100
PPPM-Peak Pulse Power (kW)
Voltage Transients
Voltage or Current
Voltage Across TVS
Current Through TVS
10
0.31x0.31" (8.0x8.0mm)
Copper Pad Area
1
0.001
0.01
Figure 3 - Peak Pulse Power Derating Curve
IPPM- Peak Pulse Current, % IRSM
Peak Pulse Power (PPP) or Current (IPP)
Derating in Percentage %
150
80
60
40
20
0
25
50
75
100 125 150
TJ - Initial Junction Temperature (ºC)
1
1.0
Half Value
IPPM IPPM
( )
2
50
10/1000µsec. Waveform
as defined by R.E.A
td
0
1.0
2.0
3.0
4.0
Figure 6 - Maximum Non-Repetitive Peak Forward
Surge Current Uni-Directional Only
Uni-directional V=0V
Uni-directional @VR
Bi-directional @VR
Tj=25C
f=1.0MHz
Vsig=50mVp-p
10.0
100.0
1000.0
VBR - Reverse Breakdown Voltage (V)
IFSM - Peak Forward Surge Current (A)
10
Peak Value
IPPM
100
200
Bi-directional V=0V
10000
100
TJ=25°C
Pulse Width(td) is defined
as the point where the peak
current decays to 50% of IPPM
t-Time (ms)
100000
1000
tr=10µsec
0
175
Figure 5 - Typical Junction Capacitance
Cj (pF)
1
Figure 4 - Pulse Waveform
100
0
0.1
td-Pulse Width (ms)
Time
180
160
140
120
100
80
60
40
20
0
1
10
100
Number of Cycles at 60 Hz
© 2018 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 10/03/18
TVS Diodes
Surface Mount – 1500W > TPSMC-VR
TPSMC series
Series
Soldering Parameters
Pre Heat
Lead–free assembly
- Temperature Min (Ts(min))
150°C
- Temperature Max (Ts(max))
200°C
- Time (min to max) (ts)
60 – 120 secs
Average ramp up rate (Liquidus Temp (TL)
to peak
3°C/second max
TS(max) to TL - Ramp-up Rate
3°C/second max
Reflow
- Temperature (TL) (Liquidus)
217°C
- Time (min to max) (ts)
60 – 150 seconds
Peak Temperature (TP)
260+0/-5 °C
Time within 5°C of actual peak
Temperature (tp)
30 seconds max
Ramp-down Rate
6°C/second max
Time 25°C to peak Temperature (TP)
8 minutes max.
Do not exceed
260°C
Physical Specifications
tp
TP
Ramp-up
TL
Temperature (T)
Reflow Condition
tL
Critical Zone
TL to TP
Ts(max)
Ramp-down
Ts(min)
ts
Preheat
25˚C
t 25˚C to Peak
Time (t)
Environmental Specifications
Weight
0.007 ounce, 0.21 grams
High Temp. Storage
JESD22-A103
Case
JEDEC DO214AB. Molded plastic body
over glass passivated junction
HTRB
JESD22-A108
Color band denotes cathode for
unidirectional components
Temperature Cycling
JESD22-A104
Polarity
MSL
JEDEC-J-STD-020, Level 1
H3TRB
JESD22-A101
RSH
JESD22-A111
Matte Tin-plated leads, Solderable per
JESD22-B102
Terminal
Dimensions
DO-214AB (SMC J-Bend)
Dimensions
C
A
B
H
D
F
E
G
Dimensions in inches and (millimeters)
J
K
L
I
Solder Pads
(all dimensions in mm)
Inches
Min
Millimeters
Max
Min
Max
A
0.114
0.126
2.900
3.200
B
0.260
0.280
6.600
7.110
C
0.220
0.245
5.590
6.220
D
0.079
0.103
2.060
2.620
E
0.030
0.060
0.760
1.520
F
-
0.008
-
0.203
G
0.305
0.320
7.750
8.130
H
0.006
0.012
0.152
0.305
I
0.129
-
3.300
-
J
0.094
-
2.400
-
K
-
0.165
-
4.200
L
0.094
-
2.400
-
© 2018 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 10/03/18
TVS Diodes
Surface Mount – 1500W > TPSMC-VR
TPSMC series
Series
Part Numbering System
Part Marking System
TPSMC XXX C A-VR
Cathode Band
F
(for Uni-directional products only)
NAMING RULE
5% VBR VOLTAGE TOLERANCE
XXX
BI-DIRECTIONAL
YMXXX
VR VOLTAGE
Littelfuse Logo
Marking Code
Trace Code Marking
Y:Year Code
M: Month Code
XXX: Lot Code
SERIES
Packaging
Component
Package
Part number
TPSMCxxxXX-VR
DO-214AB
Packaging
Option
Quantity
3000
Tape & Reel - 16mm tape/13” reel
Packaging
Specification
EIA STD RS-481
Tape and Reel Specification
0.157
(4.0)
0.63
(16.0)
0.315
(8.0)
0.059 DIA
(1.5)
Cover tape
Cathode
13.0 (330)
0.80 (20.2)
Arbor Hole Dia.
0.65
(16.4)
Dimensions are in inches
(and millimeters).
Direction of Feed
Disclaimer Notice - Information furnished is believed to be accurate and reliable. However, users should independently evaluate the suitability of and
test each product selected for their own applications. Littelfuse products are not designed for, and may not be used in, all applications.
Read complete Disclaimer Notice at http://www.littelfuse.com/disclaimer-electronics.
© 2018 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 10/03/18
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