PTCCL11H611DTE Vishay, PTCCL11H611DTE Datasheet - Page 10

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PTCCL11H611DTE

Manufacturer Part Number
PTCCL11H611DTE
Description
PTC CP LDD 10D5 A610 030 140 T E3
Manufacturer
Vishay
Series
662r
Datasheets

Specifications of PTCCL11H611DTE

Voltage - Max
30V
Current - Hold (ih) (max)
610mA
Current - Trip (it)
915mA
Current - Max
7A
Package / Case
Radial
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
R Min/max
-
Time To Trip
-
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
2322 662 56111
232266256111
BC1342
PTCCL11H611DBC
BCcomponents
Trip-time or switching time (t
To check the trip-time for a specific PTC, refer to Table 3, 4 or 5 for the value I
I
non-trip current with the appropriate curve in Fig.2. The relationship between the I
function of the PTC diameter; see Figs 4 and 5.
E
What will be the trip-time at I
Overload current = 3 A; factor I
2000 Oct 13
nt
XAMPLE
I
I
PTC thermistors for
overload protection
and you realize the factor I
Curve 1: typical
Curve 2: typical
Curve 3: typical
Curve 4: typical
Curve 5: typical
Curve 6: typical
Curve 7: typical
Measured in accordance with “IEC 60738”.
For an example, see “Trip-time or switching time (t
nt
nt
: 470
from Table 3: 470 mA at 25 C
10
t s
10
10
1
1
2
1
1.12 = 526 mA (0 C).
D = 20 mm.
D = 16 mm.
D = 12.0 mm.
D = 10.0 mm.
D = 8.0 mm.
D = 6.5 mm.
D = 4.5 mm.
2
Fig.4 Typical trip-time as a function of trip current ratio for 30 to 60 volt types.
t
ol
s
/I
)
nt
= 3 A and T
t
4
/I
. This rule is valid for any ambient temperature between 0 and 70 C. Adapt the correct
nt
:
3
0.526
s
)”.
= 5.70. In Fig.4at the 8.0 mm line and I
amb
6
= 0 C of a thermistor type 2322 661 54711; 2.5 ;
8
10
10
30 to 60 V (T
nt
. Divide the overload or trip current by this
t
/I
t
/I
nt
nt
= 5.70, the typical trip-time is 1.7 s.
12
factor and the switching time is a
14
Product specification
s
D = 8.0 mm:
(1)
(2)
(3)
(4)
(5)
(6)
(7)
= 140 C)
I t / I nt
MLD330 - 1
16

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