# NTC INRUSH CURRENT LIMITER, 10R, TH

![Product image](https://novapart.co/image/farnell:3238369/)

**URL**: https://novapart.co/products/CL-60A/ntc-inrush-current-limiter-10r-th
**SKU**: CL-60A
**Manufacturer**: AMPHENOL ADVANCED SENSORS
**Category**: Circuit Protection || Thermistors || Inrush Current Limiting (ICL) NTC Thermistors
**Price**: €0.9130
**Stock**: 200+
**Lead Time**: 106 days (indicative)

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (07-Jul-2017) |
| Approvals | UL |
| Disc Size | 19.56mm |
| Product Range | Inrush Current Limiter |
| Resistance (25°C) | 10ohm |
| Maximum Energy Rating At 25°C | 36J |
| Maximum Steady State Current At 25°C | 5A |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:3238369/)

A ~ NTC THERMISTORS: 

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**==> picture [516 x 637] intentionally omitted <==**

**----- Start of picture text -----**<br>
300V DC<br>230V ~| Ate| ~|Bi-| | “| A =| |B<br>AC LINE "SV | (S)<br>MIN. __ i SEATING<br>_ —_ 1.50| |t re 20MIN. || || PLANE<br>ii ALTERNATE LOCATION Le 25 —<br>| C | ie \ D REF! | \ D<br>The circuit diagram above displays a typical way to<br>limit inrush current.<br>Protection against extremely high peak inrush current,<br>especially in AC/DC switching power supplies, is now<br>available with Keystone Thermometrics Inrush Current Allinrush current limiters are insulated with a protective<br>Limiters. These special NTC thermistors effectively con- coating. Optional lead designs available upon request.<br>trol surge currents because the thermal time constant of<br>the current limiter is longer than the electrical time con- Note: For Figure 2 design add “A” suffix to type.<br>stant (RC) of the thermistor and the capacitor. (Example: CL-10A.)<br>Steady u farads for Res. Under Load** Max. Rated Current<br>Ry @ State<br>Type 25°C | Current A B C D Current Diss. Time<br>Fig.1 +25% amps | max. | max. | ref. @ 120 | @ 240 Range Const. | Const.<br>[cio | (ohms) | (RMS) | (in.) | (in) | (in) | (AWG) eetezel | [iB an [an | we | wn (mw/°C) | (sec.}<br>}cu20 | 0713 |  128 | 0 7755 | o0 2 2t |[oaae} 0328] 18 | 2482 00]  206 00  |] o6o050 | -1.25|30<i<ao}1.18] 4osisi2 | 1425 | 06o9 || of06 { | o 2|4[ 12 5 | 106 0 |<br>|cu4oee| 5 | 6 | a77 | 022 [ose]ee ee18 | S200]Pee1300  por| 1.09 |tase-1.27 croft ee<br>}ciso | 7 | 5 | 077 | 026 [0328] 18 | sooo} 1250] 1.28 | 127 |15<i<so] 96 | 40 [ 24] s6[ 25 | 120 |<br>}ci6o | 10 | 5 | 077 | 022 [ose] 18 | sooo] 1250] 1.45 | 1.30] 12<1<50] 109 | 44 [ 26] 18 | 25 [ 100 |<br>|cu90 [120 | 2 | 093 | 022 [ose] 18 | S000] 1250 | 3.04 | -1.36 | o5<i<2o[ 7.80 | 3.04 { 1.75 [1.18 | 30 | 120 |<br>|ci-ioo| 05 | 16 | 0.93 | 0.22 [0328] 18 | 12000] 3000] 0.44 | -1.12[aostsie | o9 | o4 [| o3 | o2[ 30 | 120 |<br>fcu-tro{ io | 32 | a4 | 047 [o2so] 24 | ooo] 150] 083 | 129 [o7si<32{ ito] 45 [ 27[ 18] 8 | 30 |<br>}cu-r20{ 10 | 17 | 040 | 017 [o2so] 24 | ooo] 150] o6t | -109[o4ssizi7{ 165 | 73 [ 46 [ a4] 4 | 90 |<br>|cu-i30{ 50 | 16 | 045 | 0.17 [o250] 24 | soo] 150] 1.45 | -1.38 |o4sisi6] 5.13 | 197 [113] 75 [8 [30 |<br>}cut4o{ so | 11 | 045 | 017 [o2so] 24 | soo] 150] 1.01 | -1.28 |o2si<it| 5.27 | 217 | 128] 89 | 4 | 90 |<br>Fe|cu-teo{ 5Oe| 28 OO| 055 | 018 |osas] 22 | 1600] 400] 060 | -105{ossi<2s| a7] 42{ 27eee { 20] 9 | 130 |<br>|cu-7o{ 16 | 27 | 055 | 018 [osaa} 22 | 1600| 400] 1.18 | -1.28[os<i<27] 195 | so [ 48] sa] 1s | 110 |<br>|ci-igo{ ie | 17 | 055 | 018 [os2e] 22 | t600| 400] 092 | -1.18 |oasis17] 252 [111 [| 69] 49[ 9 | 130 |<br>|ci-190{ 25 | 24 | 055 | 018 |os2a] 22 | soo] 170] 1.33 | -134|ossis24[ 263 | 1.04 [ 60 [ 41 [15 [110 |<br>|cr2oo{ 25 | 17 | 085 | 018 [os2a] 22 | soo| 170] 0.95 | 1.24 [oasisi7] 274 [118 [ 70] 49 | 9 | 130 |<br>[cv-2io{ 30 | 15 [040 [ 020 Jo2so[ 24 [ soo] 150] 1.02 | 135 [os<isi5[ 383] iso] e7[ eof 8 | 30 |<br>* These values are suggested maximums based on the thermistor in ** These ratings are suggested maximums. Contact Keystone Thermometrics Engineering Department for<br>25°C ambient without air flow. assistance in applications exceeding these ratings.<br>Current ratings can be increased depending on the magnitude of *** To determine the resistance vatue under load, use R = X{” where X and Y are constants in the table above<br>air flow. and | is the current (amps).<br>KEYS TONE<br>THERM™MOMETRICS<br>**----- End of picture text -----**<br>


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