PTCEL13R251NTE

Vishay
594-PTCEL13R251NTE
PTCEL13R251NTE

Mfr.:

Description:
Thermistors - PTC PTC ICL LDD 12D5 250R 680 135 T E3

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In Stock: 941

Stock:
941 Can Dispatch Immediately
Factory Lead Time:
14 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
$-.--
Ext. Price:
$-.--
Est. Tariff:

Pricing (USD)

Qty. Unit Price
Ext. Price
$2.41 $2.41
$2.23 $22.30
$2.14 $53.50
$1.83 $91.50
$1.70 $170.00
$1.54 $385.00
Full Reel (Order in multiples of 500)
$1.42 $710.00
$1.25 $1,250.00
$1.22 $3,050.00

Product Attribute Attribute Value Select Attribute
Vishay
Product Category: Thermistors - PTC
RoHS:  
REACH - SVHC:
PTCEL Series
250 Ohms
30 %
Through Hole
Radial
- 40 C
+ 105 C
Reel
Cut Tape
Brand: Vishay
Country of Assembly: Not Available
Country of Diffusion: Not Available
Country of Origin: CN
Diameter: 13.5 mm
Lead Diameter: 0.6 mm
Lead Spacing: 5 mm
Product Type: PTC Thermistors
Factory Pack Quantity: 500
Subcategory: Thermistors
Type: Inrush Current Limiter
Voltage Rating AC: 480 Vrms
Voltage Rating DC: 680 VDC
Width: 7 mm
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CAHTS:
8533400000
USHTS:
8533408070
JPHTS:
853340000
MXHTS:
8533409102
ECCN:
EAR99

PTCEL Inrush Current Limiting PTC Thermistors

Vishay / BC Components PTCEL Inrush Current Limiting PTC Thermistors provide safe, repetitive inrush current limitation and protection in various high-power applications that require a controlled capacitor charge or discharge function. These thermistors significantly reduce board space and component count because they absorb higher energy levels of up to 340J for a single PTCEL17, and they operate at high ambient temperatures of up to +105°C. The built-in self-regulated safety mechanism prevents the PTCEL thermistor from overheating in any overload situation. PTCEL thermistors are suitable for the controlled charging and discharging of high-energy capacitors with voltage levels up to 1200VDC. Resistance values can be selected from a wide range between 60Ω and 1000Ω, and for applications that need higher energy levels or short interval times at higher temperatures, these thermistors can be connected in series/parallel to form a network of energy-absorbing thermistors.