PR600-006

Radial Leaded | Round/Square size
Polymer Positive Temperature Coefficient Thermistor

Features

  • Low voltage over-current protection
  • Working current: 0.03A-0.50A
  • Impulse voltage: 600V
  • In line with RoHS certification, halogen-free product
  • Tinned Copper wire

 

PR600-006

Electrical Performance

Product model IH
(A)
IT
(A)
Vmax
(V)
Imax
(A)
Max Time Trip Pd typ
(W)
RMin
(Ω)
R1Max
(Ω)
(A) (S)
PR600-003 0.03 0.06 600 1 0.50 5.00 1.00 90.00 374.0
PR600-005 0.05 0.10 600 1 0.50 8.00 1.00 30.00 153.0
PR600-006 0.06 0.12 600 1 0.50 10.0 1.00 20.00 90.00
PR600-008 0.08 0.16 600 1 0.50 8.00 1.00 10.00 68.00
PR600-011 0.11 0.22 600 1 0.55 5.00 1.50 10.00 32.30
PR600-012 0.12 0.24 600 1 0.60 5.00 1.50 8.00 25.50
PR600-015 0.15 0.30 600 1 1.00 5.00 1.50 6.00 20.40
PR600-016 0.16 0.32 600 1 1.00 5.00 1.50 4.00 17.00
PR600-018 0.18 0.36 600 1 0.90 8.00 1.50 3.00 13.60
PR600-020 0.20 0.40 600 3 1.00 10.0 1.50 2.00 18.70
PR600-030 0.30 0.60 600 3 1.50 15.0 1.50 3.10 9.18
PR600-040 0.40 0.80 600 3 2.00 15.0 1.50 2.80 6.80
PR600-050 0.50 1.00 600 3 2.50 15.0 1.50 2.50 6.75

IH= Hold current: maximum current at which the device will not trip at 23℃ still air.
IT= Trip current: minimum current at which the device will always trip at 23℃ still air.
Vmax= Maximum continuous voltage device can withstand without damage at rated current
Imax= Maximum fault current device can withstand without damage at rated voltage.

Ttrip= Maximum time to trip(s) at assigned current.
Pdtyp=Typical power dissipation: typical amount of power dissipated by the device when in state air environment.
Rmin= Minimum resistance of device in initial (un-soldered) state.
R1max= Maximum resistance of device at 23℃ measured one hour after reflow.

Noted: All electrical function test is conducted after PCB mounted.

Thermal Derating Chart

Hold Current (A)

Part Number Ambient Operating Temperature
-40°C -20°C 0°C 23°C 40°C 50°C 60°C 70°C 85°C
PR600-003 0.048 0.041 0.036 0.030 0.025 0.022 0.019 0.016 0.012
PR600-005 0.079 0.069 0.060 0.050 0.042 0.037 0.032 0.027 0.020
PR600-006 0.095 0.083 0.071 0.060 0.050 0.044 0.038 0.032 0.024
PR600-008 0.126 0.110 0.095 0.080 0.066 0.058 0.051 0.043 0.032
PR600-011 0.174 0.152 0.131 0.110 0.091 0.080 0.070 0.059 0.044
PR600-012 0.190 0.166 0.143 0.120 0.100 0.088 0.077 0.065 0.048
PR600-015 0.237 0.207 0.179 0.150 0.125 0.110 0.096 0.081 0.060
PR600-016 0.253 0.221 0.190 0.160 0.133 0.117 0.102 0.086 0.064
PR600-018 0.284 0.248 0.214 0.180 0.149 0.131 0.115 0.097 0.072
PR600-020 0.316 0.276 0.238 0.200 0.166 0.146 0.128 0.108 0.080
PR600-030 0.474 0.414 0.357 0.300 0.249 0.219 0.192 0.162 0.120
PR600-040 0.632 0.552 0.476 0.400 0.332 0.292 0.256 0.216 0.160
PR600-050 0.790 0.690 0.595 0.500 0.415 0.365 0.320 0.270 0.200

Typical time to trip at 23˚C

A=PR600-003
B=PR600-005
C=PR600-006
D=PR600-008
E=PR600-011
F=PR600-012
G=PR600-015
H=PR600-016
I=PR600-018
J=PR600-020
K=PR600-030
L=PR600-040
M=PR600-050

PR600-006

Size(mm)

PR600-006

PR600-006

PR600-006

Product
model
A B E F Lead FIG Package
QTY
max max typ min max typ Φ
PR600-003 7.00 14.50 5.10 7.60 6.50 / 0.60 1 1000PCS
PR600-005 7.00 14.50 5.10 7.60 6.50 / 0.60 1 1000PCS
PR600-006 11.00 17.50 5.10 7.60 6.50 / 0.60 2 1000PCS
PR600-008 11.00 17.50 5.10 7.60 6.50 / 0.60 2/3 1000PCS
PR600-011 7.00 14.50 5.10 7.60 6.50 / 0.60 1 1000PCS
PR600-012 14.50 16.50 5.10 7.60 6.50 / 0.80 1 500PCS
PR600-015 14.50 16.50 5.10 7.60 6.50 / 0.80 1 500PCS
PR600-016 14.50 16.50 5.10 7.60 6.50 / 0.80 1 500PCS
PR600-018 14.50 16.50 5.10 7.60 6.50 / 0.80 1 500PCS
PR600-020 9.50 22.00 5.10 7.60 6.50 / 0.80 1 500PCS
PR600-030 18.50 25.50 10.20 7.60 6.50 2.20 0.80 3 100PCS
PR600-040 18.50 25.50 10.20 7.60 6.50 2.20 0.80 3 100PCS
PR600-050 18.50 25.50 10.20 7.60 6.50 2.20 0.80 3 100PCS

Regular Service Condition

1. Operating ambient temperature:-40℃~85℃.
2. Exceeding the applicable conditions of this product or other improper use may cause damage, or even cause electric breakdown or flame.
3. PPTC components are designed for occasional over-current in the circuit and are not recommended for continuous and continuous over current circuits.
4. Avoid contact of PPTC components with chemical solvents. Prolonged contact will damage the performance of the components.

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