B57236S0160M00 [EPCOS]

RESISTOR, TEMPERATURE DEPENDENT, NTC;
B57236S0160M00
型号: B57236S0160M00
厂家: EPCOS    EPCOS
描述:

RESISTOR, TEMPERATURE DEPENDENT, NTC

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NTC thermistors for  
inrush current limiting  
Leaded and coated disks  
Series/Type:  
B57236S0***M0**  
Date:  
December 2011  
© EPCOS AG 2011. Reproduction, publication and dissemination of this publication, enclosures hereto and the  
information contained therein without EPCOS' prior express consent is prohibited.  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Applications  
Dimensional drawing  
Switch-mode power supplies  
Features  
Useable in series connections up to 265 VRMS  
Coated thermistor disk  
Kinked leads of tinned copper wire  
Wide resistance range  
UL approval (E69802)  
Options  
Resistance tolerance <20% and alternative lead  
configurations available on request  
Dimensions in mm  
Approx. weight 1 g  
Delivery mode  
Bulk (standard) or with cardboard tape on 350-mm reel  
General technical data  
Climatic category  
Max. power  
(IEC 60068-1)  
(at 25 °C)  
55/170/21  
2.1  
Pmax  
W
Resistance tolerance  
Rated temperature  
Dissipation factor  
Thermal cooling time constant  
Heat capacity  
RR/RR ±20  
%
°C  
mW/K  
s
mJ/K  
TR  
δth  
τc  
25  
(in air)  
(in air)  
approx. 10  
approx. 70  
approx. 700  
Cth  
Electrical specification and ordering codes  
1)  
1)  
R25  
Imax  
(0...65 °C)  
B25/100 Ctest  
Ctest  
Param.  
Param.  
Ordering code  
230 V AC 110 V AC for R(I)1) for R(I)1)  
A
K
µF  
µF  
k
n
2.2 6.0  
2.5 5.5  
5.0  
4.7 4.6  
2700  
2700  
2700  
2800  
2800  
2900  
2900  
2900  
2965  
3065  
3065  
200  
200  
300  
300  
300  
300  
300  
300  
300  
300  
300  
800  
0.806  
0.621  
0.804  
0.740  
0.761  
1.11  
0.942  
1.00  
1.08  
1.30  
1.27  
1.34  
1.30  
1.30  
1.34  
1.32  
1.32  
1.33  
1.34  
1.34  
B57236S0229M0**  
B57236S0259M0**  
B57236S0309M0**  
B57236S0479M0**  
B57236S0509M0**  
B57236S0809M0**  
B57236S0100M0**  
B57236S0120M0**  
B57236S0160M0**  
B57236S0200M0**  
B57236S0250M0**  
800  
1200  
1200  
1200  
1200  
1200  
1200  
1200  
1200  
1200  
3
5
8
4.5  
3.7  
3.5  
3.2  
2.9  
2.8  
2.5  
10  
12  
16  
20  
25  
1.13  
1.22  
** = Delivery mode  
00 = Bulk  
51 = Reel packing  
1) For details on the capacitance Ctest as well as on the parameters k and n refer to "Application notes", chapters 1.6 and 1.7.  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 2 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
1)  
1)  
R25  
Imax  
(0...65 °C)  
B25/100 Ctest  
Ctest  
Param.  
Param.  
Ordering code  
230 V AC 110 V AC for R(I)1) for R(I)1)  
A
K
µF  
µF  
k
n
50  
80  
120  
1.9  
1.6  
1.5  
3165  
3300  
3450  
300  
400  
400  
1200  
1600  
1600  
1.44  
1.64  
1.74  
1.38  
1.37  
1.39  
B57236S0500M0**  
B57236S0800M0**  
B57236S0121M0**  
** = Delivery mode  
00 = Bulk  
51 = Reel packing  
Reliability data  
Test  
Standard  
Test conditions  
R25/R25  
(typical)  
Remarks  
Storage in  
dry heat  
IEC  
60068-2-2  
Storage at upper  
category temperature  
T: 170 °C  
< 10%  
No visible  
damage  
t: 1000 h  
Storage in damp  
heat, steady state  
IEC  
Temperature of air: 40 °C  
< 5%  
No visible  
damage  
60068-2-78 Relative humidity of air: 93%  
Duration: 21 days  
Rapid temperature IEC  
Lower test temperature: 55 °C < 10%  
No visible  
damage  
cycling  
60068-2-14 Upper test temperature: 170 °C  
Number of cycles: 10  
Endurance  
I = Imax  
t: 1000 h  
< 10%  
< 10%  
No visible  
damage  
Cyclic  
endurance  
I = Imax, 1000 cycles  
On-time = 1 min  
No visible  
damage  
Cooling time = 6 min  
Transient  
load  
Capacitance = Ctest  
Number of cycles: 1000  
< 5%  
No visible  
damage  
Note  
The self-heating of a thermistor during operation depends on the load applied and the  
applicable dissipation factor.  
When loaded with maximum allowable current/power and the specified dissipation factor is  
taken as a basis, the NTC thermistor may reach a mean temperature of up to 250 °C.  
The heat developed during operation will also be dissipated through the lead wires. So the  
contact areas, too, may become quite hot at maximum load.  
When mounting NTC thermistors you have to ensure that there is an adequate distance  
between the thermistor and all parts which are sensitive to heat or combustible.  
1) For details on the capacitance Ctest as well as on the parameters k and n refer to "Application notes", chapters 1.6 and 1.7.  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 3 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Taping and packing  
1
Taping of radial leaded ICL NTC thermistors according to the  
specified lead spacing  
Dimensions and tolerances  
Lead spacing F = 5.0 mm (taping to IEC 60286-2)  
Lead spacing F = 7.5 mm (taping based on IEC 60286-2)  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 4 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Dimensions (mm)  
Lead  
Tolerance of  
Lead  
Tolerance of  
Remarks  
spacing  
5 mm  
lead spacing  
5 mm  
spacing lead spacing  
7.5 mm  
7.5 mm  
max.  
w
th  
d
12.0  
max.  
max.  
±0.05  
12.0  
please refer to dimensional  
drawings  
6.0  
7
max.  
please refer to dimensional  
drawings  
0.5/0.6  
0.8/1.0  
±0.05  
please refer to dimensional  
drawings  
P0  
P1  
F
12.7  
3.85  
5.0  
0
±0.3  
±0.7  
12.7  
8.95  
7.5  
0
±0.3  
±0.8  
±0.8  
±1 mm / 20 sprocket holes  
+0.6/0.1  
±2.0  
h  
Depends on th measured at top  
of component body  
p  
W
W0  
W1  
W2  
H
0
±1.3  
±0.5  
0
±2.0  
±0.5  
18.0  
5.5  
18.0  
11.0  
9.0  
min.  
min.  
+0.75/0.5  
max.  
peel-off force 5 N  
9.0  
+0.75/0.5  
max.  
3.0  
3.0  
18.0  
16.0  
32.2  
4.0  
+2.0/0  
±0.5  
18.0  
16.0  
45.0  
4.0  
+2.0/0  
±0.5  
H0  
H1  
D0  
t
max.  
max.  
±0.2  
±0.2  
0.9  
max.  
0.9  
max.  
without wires  
L
11.0  
4.0  
max.  
11.0  
4.0  
max.  
L1  
max.  
max.  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 5 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Types of packing  
Reel packing  
Reel dimensions (in mm)  
Reel type  
d
f
n
w
I
360 max.  
500 max.  
31 ±1  
23 ±1  
approx. 45  
approx. 59  
54 max.  
72 max.  
II  
Bulk packing  
The components are packed in cardboard boxes, the size of which depends on the order quantity.  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 6 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Mounting instructions  
1
Soldering  
1.1  
Leaded NTC thermistors  
Leaded thermistors comply with the solderability requirements specified by CECC.  
When soldering, care must be taken that the NTC thermistors are not damaged by excessive  
heat. The following maximum temperatures, maximum time spans and minimum distances have  
to be observed:  
Dip soldering  
max. 260 °C  
max. 4 s  
Iron soldering  
max. 360 °C  
max. 2 s  
Bath temperature  
Soldering time  
Distance from thermistor  
min. 6 mm  
min. 6 mm  
Under more severe soldering conditions the resistance may change.  
Solderability (test to IEC 60068-2-20)  
Preconditioning: Immersion into flux F-SW 32.  
Evaluation criterion: Wetting of soldering areas 95%.  
Solder  
Bath temperature (°C)  
245 ±3  
Dwell time (s)  
3
SnAg (3.0 ... 4.0), Cu (0.5 ... 0.9)  
1.1.1 Resistance to soldering heat (test to IEC 60068-2-20)  
Preconditioning: Immersion into flux F-SW 32.  
Solder  
Bath temperature (°C)  
Dwell time (s)  
10  
SnAg (3.0 ... 4.0), Cu (0.5 ... 0.9)  
260 5  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 7 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Wave soldering  
Temperature characteristic at component terminal with dual wave soldering  
2
Robustness of terminations  
The leads meet the requirements of IEC 60068-2-21. They may not be bent closer than 4 mm  
from the solder joint on the thermistor body or from the point at which they leave the feed-  
throughs. During bending, any mechanical stress at the outlet of the leads must be removed. The  
bending radius should be at least 0.75 mm.  
Tensile strength: Test Ua1:  
Leads  
0.50 <  
0.80 <  
0.80 mm = 10.0 N  
1.25 mm = 20.0 N  
Bending strength: Test Ub:  
Two 90°-bends in opposite directions at a weight of 0.25 kg.  
Torsional strength: Test Uc: severity 2  
The lead is bent by 90° at a distance of 6 to 6.5 mm from the thermistor body.  
The bending radius of the leads should be approx. 0.75 mm. Two torsions of  
180° each (severity 2).  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 8 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
When subjecting leads to mechanical stress, the following should be observed:  
Tensile stress on leads  
During mounting and operation tensile forces on the leads are to be avoided.  
Bending of leads  
Bending of the leads directly on the thermistor body is not permissible.  
A lead may be bent at a minimum distance of twice the wire's diameter +2 mm from the solder  
joint on the thermistor body. During bending the wire must be mechanically relieved at its outlet.  
The bending radius should be at least 0.75 mm.  
Twisting of leads  
The twisting (torsion) by 180° of a lead bent by 90° is permissible at 6 mm from the bottom of the  
thermistor body.  
3
Sealing and potting  
When thermistors are sealed, potted or overmolded, there must be no mechanical stress caused  
by thermal expansion during the production process (curing / overmolding process) and during  
later operation. The upper category temperature of the thermistor must not be exceeded. Ensure  
that the materials used (sealing / potting compound and plastic material) are chemically neutral.  
4
Cleaning  
If cleaning is necessary, mild cleaning agents such as ethyl alcohol and cleaning gasoline are  
recommended. Cleaning agents based on water are not allowed. Ultrasonic cleaning methods are  
permissible.  
5
Storage  
In order to maintain their solderability, thermistors must be stored in a non-corrosive atmosphere.  
Humidity, temperature and container materials are critical factors.  
The components should be left in the original packing. Touching the metallization of unsoldered  
thermistors may change their soldering properties.  
Storage temperature:  
25 °C up to 45 °C  
Max. relative humidity (without condensation):  
<95%, maximum 30 days per annum  
Solder the thermistors listed in this data book after shipment from EPCOS within the time speci-  
fied:  
Leaded components:  
24 months  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 9 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Cautions and warnings  
General  
See "Important notes" at the end of this document.  
Storage  
Store thermistors only in original packaging. Do not open the package before storage.  
Storage conditions in original packaging: storage temperature 25 °C ... +45 °C, relative  
humidity 75% annual mean, maximum 95%, dew precipitation is inadmissible.  
Avoid contamination of thermistors surface during storage, handling and processing.  
Avoid storage of thermistor in harmful environments like corrosive gases (SOx, Cl etc).  
Solder thermistors after shipment from EPCOS within the time specified:  
Leaded components: 24 months  
Handling  
NTC thermistors must not be dropped. Chip-offs must not be caused during handling of NTCs.  
Components must not be touched with bare hands. Gloves are recommended.  
Avoid contamination of thermistor surface during handling.  
In case of exposure of the NTC thermistors to water, electrolytes or other aggressive media,  
these media can penetrate the coating and reach the surface of the ceramic. Low-ohmic or  
high-ohmic behavior may occur due to the formation of an electrolyte with metals (silver/lead/tin  
from metallization or solder). Low-ohmic behavior is caused by electrochemical migration,  
high-ohmic behavior by dissolving of the electrode. Ineither case, the functionality of the NTC  
thermistors can not be assured.  
Bending / twisting leads  
A lead (wire) may be bent at a minimum distance of twice the wire’s diameter plus 4 mm from  
the component head or housing. When bending ensure the wire is mechanically relieved at the  
component head or housing. The bending radius should be at least 0.75 mm.  
Twisting (torsion) by 180° of a lead bent by 90° is permissible at 6 mm from the bottom of the  
thermistor body.  
Soldering  
Use resin-type flux or non-activated flux.  
Insufficient preheating may cause ceramic cracks.  
Rapid cooling by dipping in solvent is not recommended.  
Complete removal of flux is recommended.  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 10 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Mounting  
When NTC thermistors are encapsulated with sealing material or overmolded with plastic  
material, the precautions given in chapter “Mounting instructions”, “Sealing and potting” must  
be observed.  
Electrode must not be scratched before/during/after the mounting process.  
Contacts and housings used for assembly with thermistor have to be clean before mounting.  
During operation, the inrush current limiters surface temperature can be very high. Ensure that  
adjacent components are placed at a sufficient distance from the thermistor to allow for proper  
cooling of the thermistors.  
Ensure that adjacent materials are designed for operation at temperatures comparable to the  
surface temperature of the thermistor. Be sure that surrounding parts and materials can  
withstand this temperature.  
Make sure that inrush current limiters are adequately ventilated to avoid overheating.  
Avoid contamination of thermistor surface during processing.  
Operation  
Use thermistors only within the specified operating temperature range.  
Use inrush current limiters only within the specified voltage and current ranges.  
Environmental conditions must not harm the thermistors. Use thermistors only in normal  
atmospheric conditions.  
Contact of NTC thermistors with any liquids and solvents should be prevented. It must be  
ensured that no water enters the NTC thermistor (e.g. through plug terminals). For  
measurement purposes (checking the specified resistance vs. temperature), the component  
must not be immersed in water but in suitable liquids (e.g. Galden).  
In case of exposure of the NTC thermistors to water, electrolytes or other aggressive media,  
these media can penetrate the coating and reach the surface of the ceramic. Low-ohmic or  
high-ohmic behavior may occur due to the formation of an electrolyte with metals (silver/lead/tin  
from metallization or solder). Low-ohmic behavior is caused by electrochemical migration,  
high-ohmic behavior by dissolving of the electrode. Ineither case, the functionality of the NTC  
thermistorscannot be assured.  
Be sure to provide an appropriate fail-safe function to prevent secondary product damage  
caused by malfunction (e.g. use a metal oxide varistor for limitation of overvoltage condition).  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 11 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Symbols and terms  
Symbol  
English  
German  
Ctest  
Cth  
Test capacitance  
Heat capacitance  
Prüfkapazität (elektrisch)  
Wärmekapazität  
I
Current  
Strom  
Imax  
Maximum current within stated  
temperature range  
NTC current  
Maximalstrom im angegebenen  
Temperaturbereich  
Heißleiter-Strom  
INTC  
IR  
Rated current  
Nennstrom  
P25  
Pdiss  
Pel  
Maximum power at 25 °C  
Power dissipation  
Electrical power  
Maximale Leistung bei 25 °C  
Verlustleistung  
Elektrische Leistung  
Pmax  
Maximum power within stated  
temperature range  
Maximale Leistung im  
angegebenenTemperaturbereich  
RR  
Rated resistance  
Nennwiderstand  
RR/RR  
RT  
Resistance tolerance  
Resistance at temperature T  
(e.g. R25 = resistance at 25 °C)  
Widerstandstoleranz  
Widerstand bei Temperatur T  
(z.B. R25 = Widerstand bei 25 °C)  
T
Temperature  
Temperatur  
t
Time  
Zeit  
TA  
ta  
Tmax  
Ambient temperature  
Thermal threshold time  
Upper category temperature  
Umgebungstemperatur  
Thermische Ansprechzeit  
Obere Grenztemperatur  
(Kategorietemperatur)  
Untere Grenztemperatur  
(Kategorietemperatur)  
Tmin  
Lower category temperature  
Rated temperature  
TR  
Nenntemperatur  
V
Voltage  
Spannung  
Vload  
VNTC  
Load voltage  
Ladespannung  
Voltage drop across an NTC thermistor Spannungsabfall am Heißleiter  
α
Temperature coefficient  
Tolerance, change  
Temperaturkoeffizient  
Toleranz, Änderung  
δth  
τc  
Dissipation factor  
Wärmeleitwert  
Thermal cooling time constant  
Thermische Abkühlzeitkonstante  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 12 of 14  
Inrush current limiters  
ICLs  
B57236S0***M0**  
S236  
Abbreviations / Notes  
Symbol  
*
English  
German  
To be replaced by a number in ordering Platzhalter für Zahl im Bestellnummern-  
codes, type designations etc.  
To be replaced by a letter.  
code oder für die Typenbezeichnung.  
Platzhalter für einen Buchstaben.  
Alle Maße sind in mm angegeben.  
+
All dimensions are given in mm.  
The commas used in numerical values Verwendete Kommas in Zahlenwerten  
denote decimal points. bezeichnen Dezimalpunkte.  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 13 of 14  
Important notes  
The following applies to all products named in this publication:  
1. Some parts of this publication contain statements about the suitability of our products for  
certain areas of application. These statements are based on our knowledge of typical re-  
quirements that are often placed on our products in the areas of application concerned. We  
nevertheless expressly point out that such statements cannot be regarded as binding  
statements about the suitability of our products for a particular customer application.  
As a rule, EPCOS is either unfamiliar with individual customer applications or less familiar  
with them than the customers themselves. For these reasons, it is always ultimately incum-  
bent on the customer to check and decide whether an EPCOS product with the properties de-  
scribed in the product specification is suitable for use in a particular customer application.  
2. We also point out that in individual cases, a malfunction of electronic components or  
failure before the end of their usual service life cannot be completely ruled out in the  
current state of the art, even if they are operated as specified. In customer applications  
requiring a very high level of operational safety and especially in customer applications in  
which the malfunction or failure of an electronic component could endanger human life or  
health (e.g. in accident prevention or lifesaving systems), it must therefore be ensured by  
means of suitable design of the customer application or other action taken by the customer  
(e.g. installation of protective circuitry or redundancy) that no injury or damage is sustained by  
third parties in the event of malfunction or failure of an electronic component.  
3. The warnings, cautions and product-specific notes must be observed.  
4. In order to satisfy certain technical requirements, some of the products described in this  
publication may contain substances subject to restrictions in certain jurisdictions (e.g.  
because they are classed as hazardous). Useful information on this will be found in our Ma-  
terial Data Sheets on the Internet (www.epcos.com/material). Should you have any more de-  
tailed questions, please contact our sales offices.  
5. We constantly strive to improve our products. Consequently, the products described in this  
publication may change from time to time. The same is true of the corresponding product  
specifications. Please check therefore to what extent product descriptions and specifications  
contained in this publication are still applicable before or when you place an order. We also  
reserve the right to discontinue production and delivery of products. Consequently, we  
cannot guarantee that all products named in this publication will always be available. The  
aforementioned does not apply in the case of individual agreements deviating from the fore-  
going for customer-specific products.  
6. Unless otherwise agreed in individual contracts, all orders are subject to the current ver-  
sion of the "General Terms of Delivery for Products and Services in the Electrical In-  
dustry" published by the German Electrical and Electronics Industry Association  
(ZVEI).  
7. The trade names EPCOS, BAOKE, Alu-X, CeraDiode, CSMP, CSSP, CTVS, DeltaCap,  
DigiSiMic, DSSP, FormFit, MiniBlue, MiniCell, MKD, MKK, MLSC, MotorCap, PCC,  
PhaseCap, PhaseCube, PhaseMod, PhiCap, SIFERRIT, SIFI, SIKOREL, SilverCap,  
SIMDAD, SiMic, SIMID, SineFormer, SIOV, SIP5D, SIP5K, ThermoFuse, WindCap are trade-  
marks registered or pending in Europe and in other countries. Further information will be  
found on the Internet at www.epcos.com/trademarks.  
Page 14 of 14  

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