ERT-D Series NTC THERMISTOR Tolerance:15% 1.4k Through Hole -30°C~60°C Bulk
SOT-23
ERT-D2FGL142S Datasheet
non-compliant
In-Stock: 0 items
Specifications
Name
Value
Type
Parameter
Mount
PCB, Through Hole
Mounting Type
Through Hole
Package / Case
Disc 5mm
Terminal Shape
WIRE
Operating Temperature
-30°C~60°C
Packaging
Bulk
Series
ERT-D
Published
2002
Tolerance
15%
JESD-609 Code
e3
Part Status
Obsolete
Moisture Sensitivity Level (MSL)
1 (Unlimited)
Number of Terminations
2
ECCN Code
EAR99
Resistance
1.4kOhm
Terminal Finish
Tin (Sn)
HTS Code
8533.40.80.70
Packing Method
TAPE
Max Power Dissipation
400mW
Resistor Type
NTC THERMISTOR
Reach Compliance Code
unknown
Rated Power Dissipation (P)
0.4W
Lead Length
1.18 30.00mm
Terminal Placement
RADIAL
Resistance Tolerance
±15%
Thermistor Application
TEMPERATURE COMPENSATION
Resistance in Ω @ 25°C
1.4k
Thermal Sensitivity Index
3900 K
B25/50
3900K
Diameter
5mm
RoHS Status
RoHS Compliant
ERT-D2FGL142S Product Details
ERT-D2FGL142S Overview
There is a package of a Bulk in which NTC thermistors can be found. We have included it in the Disc 5mm package for your convenience. As a result, NTC thermistors must have a resistance tolerance of ±15% in order to function correctly. NTC thermistors should be set to -30°C~60°C temperature in order to provide reliable performance. There are 2 terminations on these NTC thermistors. Dissipation of energy of 0.4W can be absorbed by the electronic component. Thermistors with NTC technology can dissipate up to 400mW of power.
ERT-D2FGL142S Features
Package/Case: Bulk ERT-D Series Operating Temperature: -30°C~60°C 1.4kOhm Resistance Rated Power Dissipation: 0.4W Mounting Type: Through Hole 15% Tolerance
ERT-D2FGL142S Applications
There are a lot of Panasonic Electronic Components ERT-D2FGL142S NTC Thermistors applications.
Temperature detection for CPU and memory device
Temperature compensation for ink-viscosity (Inkjet Printer)
Temperature detection of battery cells
Temperature compensation of display contrast
Temperature compensation of display backlighting (CCFL)