SMD1210 SERIES
Positive Temperature Coefficient (PTC) Data Sheet
Description
The 1210 series provides miniature surface mount resettable overcurrent protection
with holding current from 0.05A to 2.0A. This series is suitable for wide range of
applications in modern electronics where space is limited.
Features
Applications
Agency Approval and Environmental Compliance
Agency
UL/CUL
TUV
File Number
E482628
B160696048001
Regulation
RoHS
Halogen Free
Standard
2011/65/EU
EN 14582:2007
Electrical Characteristics
Maximum
Time To Trip
Time
Current
(Sec.)
(A)
1.50
1.50
0.02
0.20
0.05
0.10
0.10
0.30
0.30
0.25
0.50
8.00
8.00
8.00
8.00
8.00
8.00
8.00
Resistance
R
min
(Ω)
3.600
1.600
0.800
0.320
0.250
0.070
0.070
0.050
0.050
R
1max
(Ω)
50.00
15.00
5.000
1.300
0.900
0.400
0.400
0.210
0.210
Part
Number
SMD1210B005TF
SMD1210B010TF
SMD1210B020TF
SMD1210B035TF
SMD1210B050TF
SMD1210B075TF
SMD1210B075TF/24
SMD1210B110TFT
SMD1210B110TF/12
Revision 1-Mar-18
I
hold
(A)
0.05
0.10
0.20
0.35
0.50
0.75
0.75
1.10
1.10
I
trip
(A)
0.15
0.30
0.40
0.70
1.00
1.50
1.50
2.20
2.20
V
max
(Vdc)
30
30
30
6
13.2
6
24
8
12
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Mobile phones and PDAs
Battery PCM
USB hubs, ports and peripherals
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RoHS compliant and lead-free
Halogen-free
Compact design saves board space
Low profile
Fast response to fault current
Compatible with high temperature solders
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Set-top-box and HDMI
Game console port protection
General electronics
I
max
(A)
10
10
10
100
100
100
100
100
100
P
d typ.
(W)
0.60
0.60
0.60
0.60
0.60
0.60
0.60
0.60
0.60
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SMD1210 SERIES
Part
Number
SMD1210B110TF/16
SMD1210B150TFT
SMD1210B150TF/12
SMD1210B150TF/16
SMD1210B175TF
SMD1210B200TF
I
hold
(A)
1.10
1.50
1.50
1.50
1.75
2.00
I
trip
(A)
2.20
3.00
3.00
3.00
3.50
4.00
V
max
(Vdc)
16
6
12
16
6
6
I
max
(A)
100
100
100
100
100
100
P
d typ.
(W)
0.60
0.80
0.8
0.8
0.80
0.80
Maximum
Time To Trip
Time
Current
(Sec.)
(A)
0.30
0.30
0.30
0.30
1.00
1.00
8.00
8.00
8.00
8.00
8.00
8.00
Resistance
R
min
(Ω)
0.050
0.030
0.030
0.030
0.020
0.015
R
1max
(Ω)
0.210
0.120
0.120
0.120
0.080
0.075
Note on Electrical Characteristics
Vocabulary
Value specified is determined by using the PWB with 0.030”*1.5oz copper traces.
Caution: Operation beyond the specified rating may result in damage and possible arcing and flame.
Specifications are subject to change without notice.
Revision 1-Mar-18
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I
hold
= Hold current: maximum current device will pass without tripping in 23 still air.
I
trip
= Trip current: minimum current at which the device will trip in 23 still air.
V
max
= Maximum voltage device can withstand without damage at rated current (I
max
)
I
max
= Maximum fault current device can withstand without damage at rated voltage (V
max
)
P
d typ.
= Typical power dissipated from device when in the tripped state at 23 still air.
R
min
= Minimum resistance of device in initial (un-soldered) state.
R
1max
= Maximum resistance of device at 23 measured one hour after tripping or reflow soldering of 260
for 20 sec.
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SMD1210 SERIES
Polymeric PTC Selecting Guide
Determine the following operating parameters for the circuits:
Normal operating current (I
hold
)
Maximum circuit voltage (V
max
)
Select the device from factor and dimension suitable for the application
Compare the maximum rating for V
max
and I
max
of the PPTC device with the circuit in application and make sure
the circuit’s requirement does not exceed the device rating.
Check that PPTC device’s trip time (time-to-trip) will protect the circuit.
Verify that the circuit operating temperature is within the PPTC device’s normal operating temperature range.
Verify that performance and suitability of the chosen PPTC device in the application.
!
WARNING
Mechanical Stress
PPTC devices will undergo a thermal expansion during fault condition. If PPTC devices are installed or placed in an application
where the space between PPTC devices and the surrounding materials (e.g., covering materials, packaging materials, encapsulate
materials and the like) is insufficient, it will cause an inhibiting effect upon the thermal expansion. Pressing, twisting, bending and
other kinds of mechanical stress will also adversely affect the performance of the PPTC devices, and shall not be used or applied.
Silicone-based oils, oils, solvents, gels, electrolytes, fuels, acids, and the like will adversely affect the properties of PPTC devices,
and shall not be used or applied.
PPTC devices are secondary protection devices and are used solely for sporadic, accidental over-current or over-temperature
error condition, and shall NOT be used if or when constant or repeated fault conditions (such fault conditions may be caused by,
among others, incorrect pin-connection of a connector) or over-extensive trip events may occur.
PPTC devices are different from fuses and, when a fault condition occurs, will go into high-resistance state and do not open
circuit, in which case the voltage at such PPTC devices may reach a hazardous level.
Operation over the maximum rating or other forms of improper use may cause failure, arcing, flame and/or other damage to
the PPTC devices.
Conductive material contamination, such as metal particle, may induce shortage, flame or arcing.
Due to the inductance, the operation circuits may generate a circuit voltage (Ldi/dt) above the rated voltage of PPTC devices,
which shall not be used under such circumstances.
Customers shall evaluate and test the properties of PPTC devices independently to verify and ensure that their individual
applications will be met.
The performance of PPTC devices will be adversely affected if they are improperly used under electronic, thermal and/or
mechanical procedures and/or conditions non-conformant to those recommended by manufacturer.
Customers shall be responsible for determining whether it is necessary to have back-up, failsafe and/or fool-proof protection
To avoid or minimize damage that may result from extra-ordinary, irregular function or failure of PPTC devices.
Any and all responsibilities and liabilities are disclaimed if any item under this notice of warning is not complied with.
Chemical Pollutants
Electronic and Thermal Effect
General
Revision 1-Mar-18
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Maximum interrupt current (I
max
)
Normal operating temperature surrounding device (min
/max )