PRF21BB471QB5RA Murata, PRF21BB471QB5RA Datasheet - Page 68

Thermistors - PTC 470 Ohm 50% 32volts

PRF21BB471QB5RA

Manufacturer Part Number
PRF21BB471QB5RA
Description
Thermistors - PTC 470 Ohm 50% 32volts
Manufacturer
Murata
Type
PTCr
Datasheet

Specifications of PRF21BB471QB5RA

Resistance
470 Ohms
Tolerance
50 %
Termination Style
SMD/SMT
Operating Temperature Range
- 20 C to + 130 C
Dimensions
1.25 mm W x 2 mm L x 0.9 mm H
Voltage
32 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
PRF21BB471QB5RA
Manufacturer:
MURATA
Quantity:
240 000
9
!Note
66
Continuous Operating
Temperature
Resistance Value
(at 25°C)
Withstanding Voltage
Tensile Strength of
Lead Wire Terminal
Bending Strength of
Lead Wire Terminal
Solderability
Terminal Durability
of Soldering
Humidity Test
Load Cycle Test at
High Temperature
PTGL Series Specifications and Test Methods
• Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please review our product specifications or consult the approval sheet for product specifications before ordering.
Item
-10 to +60 °C
Satisfies ratings
No problem
No damage
Lead wire does not come off.
Solder is applied around the lead wire covering 3/4 or more of
the circumference without gap in the axial direction.
∆R/R25
∆R/R25
∆R/R25
<
<
<
=
=
=
±15%
±20%
±20%
Rating Value
The temperature range with maximum voltage applied to the
POSISTORr.
Resistance value is measured by applying voltage under
1.5Vdc (by a direct current of less than 10mA) at 25°C.
But it must be measured after maximum voltage is applied for
180 seconds and then is left for 2 hours at 25°C.
As for 16V series, measurement probes should be connected
on the lead wire at the point within 2mm from the below side of
the forming.
Resistance should be measured by 4 wiring method.
We apply AC voltage 120% (16V Series: 110%) that of the
maximum voltage to POSISTORr by raising voltage gradually
for 180±5 seconds at 25°C. (A protective resistor is to be
connected in series, and the inrush current through
POSISTORr must be limited below max. rated value.)
The load is gradually applied to each terminal of POSISTORr
until the force of the following table in the axial direction with
fixing POSISTORr's body itself and this load is being kept for
10 seconds.
POSISTORr is held so that it is perpendicular to the lead wire
with the following lead hanging in the axial direction of the lead
wire. The lead wire is slowly bent to 90° and returned. Then it is
slowly bent in the opposite direction and returned to original
state.
The Lead wire of POSISTORr is soaked in an Isopropyl alcohol
(JIS K 8839) or ethanol (JIS K 8101) solution (about 25wt%) of
colophony (JIS K 5902) for 5 to 10 sec. And, each lead wire is
soaked in molten solder (JIS Z 3282 H60A) at 235±5°C from
the bottom to a point of 2.0 to 2.5mm for 2±0.5 sec.
The lead wire of POSISTORr is soaked in molten solder (JIS Z
3282 H60A) at 350±10°C from the bottom to a point of 2.0 to
2.5mm for 3.5±0.5 sec. After the device is being left at room
temperature (25°C) for 24±4 hours, the resistance is measured.
POSISTORr is set in an environmental chamber at 40±2°C
and 90 to 95% humidity for 500±4 hours. After the device is left
at room temperature (25°C) for one hour, the resistance
measurement is performed.
POSISTORr is set in an environmental chamber at 60±3°C
with maximum voltage applied for 1.5 hours and then is left
without voltage applied for 0.5 hours. This cycle is repeated for
1000±10 hours, and after the device is left at room temperature
(25°C) for one hour, the resistance measurement is performed.
(A protective resistor is to be connected in series and the
inrush current through POSISTORr must be limited below
max. rated value.)
Lead Diameter
ø0.60mm max.
Lead Diameter
ø0.60mm max.
ø0.65mm min.
ø0.65mm min.
Method of Examination
Force
4.90N
9.80N
Force
2.45N
4.90N
Apr.25,2011
R90E.pdf

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