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PTCSL Datasheet(PDF) 4 Page - Vishay Siliconix

Part # PTCSL
Description  PTC Thermistors, Mini Radial Leaded for Over-Temperature Protection
PDF  5 Pages
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Manufacturer  VISHAY [Vishay Siliconix]
Direct Link  http://www.vishay.com
Logo VISHAY - Vishay Siliconix

PTCSL Datasheet(HTML) 4 Page - Vishay Siliconix

  PTCSL Datasheet HTML 1Page - Vishay Siliconix PTCSL Datasheet HTML 2Page - Vishay Siliconix PTCSL Datasheet HTML 3Page - Vishay Siliconix PTCSL Datasheet HTML 4Page - Vishay Siliconix PTCSL Datasheet HTML 5Page - Vishay Siliconix  
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Document Number: 29012
For technical questions, contact: nlr@vishay.com
www.vishay.com
Revision: 08-Jun-09
63
2381 671 911../PTCSL..T....BE
PTC Thermistors, Mini Radial Leaded
for Over-Temperature Protection
Vishay BCcomponents
APPLICATION SPECIFIC DATA
Negative Temperature Coefficient (NTC) thermistors are well known for temperature sensing. What is not well known, however,
is that Positive Temperature Coefficient (PTC) thermistors can be used for thermal protection. Although their operating principles
are similar, the applications are very different; whereas NTC thermistors sense and measure temperature over a defined range,
PTC thermistors switch at one particular temperature.
Just like thermostats they protect such equipment and components as motors, transformers, power transistors and thyristors
against overtemperature. A PTC thermistor is less expensive than a thermostat, and its switch temperature can be more
accurately specified. It is also smaller and easier to design-in to electronic circuitry.
So how does it work? The PTC thermistor is mounted in thermal contact with the equipment to be protected, and connected into
the bridge arm of a comparator circuit, such as shown in Fig. 1. At normal temperature, the PTC thermistor resistance (Rp) is
lower than Rs (see Fig. 2), so the comparator's output voltage VO will be low. If an equipment overtemperature occurs, the PTC
thermistor will quickly heat up to its trigger or nominal reference temperature Tn, whereupon its resistance will increase to a value
much higher than Rs, causing VO to switch to a high level sufficient to activate an alarm, relay or power shutdown circuit.
APPLICATION EXAMPLES
As soon as one or more of the windings becomes too hot, the
motor is switched off.
+
θ
+
θ
+
θ
Trigger
temperature
T
n
V
O
T (°C)
R
p > Rs
(R1 = R2)
R
p < Rs
(R1 = R2)
PTC
thermistor
R
p
R
L
R
f
R
s
R1
R2
+
θ
V
O
Fig. 2 Typical switch characteristic
Fig. 1 Typical comparator circuit
Fig. 3 Temperature protection of electric motors



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