Max. Steady State Current at 25 (A) Zero Power Resistance at 25 (R 25) 0R5 2R5 8R0 20R A A. Dmax. Pnor

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1 PRODUCT DT Power Thermistor Features. Body size mm~ 0mm. Radial lead resin coated. -0 ~ +00 operating temperature range. High power rating. Wide resistance range. Cost effective. UL and cul approved Recommended applications. Switch mode power supply. Electric motor. Transformer. dapter. Projector. Halogen lamp Part number code mm 0mm K N K M R 0. 0 S B Product Code KNK NTC Thermistor KNK Type Body Size 0 mm 0 mm 0 0mm mm mm 0 0 0mm mm 0mm Tolerance of R L + % M + 0% N + % Zero Power Resistance at (R ) 0R R R0 0R Max. Steady State Current at () ppearance S Straight Lead N Inner Kink Lead F Y Kink Lead Packing B Bulk C Lead Cutting mmo Taping Pitch of Holes.mm mmo Taping E Pitch of Holes.0mm Marking NTC D - Max. diameter of chip. Rated zero-power resistance. Dimensions S type (straight lead) D T Disc size Dmax. Pnor. dnor. max. Lmin. (Unit: mm) Tmax d p L

2 F type (Y kink lead) D T Disc size Dmax. Pnor. dnor. max. Lmin. (Unit: mm) Tmax p L d N type (inner kink lead) D T D T p d L p d L Figure Figure B (Unit: mm) Disc size Dmax. Pnor. dnor. max. Lmin. Tmax. Figure B Characteristics Part no. KNK0 R 0. 0 KNK0 R 0. 0 KNK0 0 R. 0 KNK0 R. 0 KNK0 0R0. KNK0 R 0. 0 KNK0 R. 0 KNK0 R 0. 0 KNK0 R 0. 0 KNK0 R 0. 0 KNK0 R 0. 0 KNK0 0 R. 0 KNK0 R. 0 KNK0 0 R. 0 Zero power resistance at Max. steady state current at () 0. KNK0 0 R Max. power rating at (W) dissipation (mw/ ) time (Sec.) Operating temperature range. -0 ~ ~ +0

3 Part no. Zero power resistance at Max steady state current at () KNK0 R0.0 KNK0 R.0. KNK0 R.0. KNK0 R.0. KNK0 R0.0 KNK0 R0.0 KNK0 R0.0 KNK0 R.0. KNK0 R0.0 KNK0 0R.0 0 KNK0 R.0 KNK0 R.0 KNK0 R.. KNK0 R.0.0 KNK0 R.. KNK0 0R.0 0 KNK0 R.0 KNK0 R.0 KNK0 0R.0 0 KNK0 R.0 KNK0 0R.0 0 KNK0 0R.0 0 KNK KNK KNK R0.0 KNK R.0. KNK R.0. KNK R0.0 KNK R.0. KNK R0.0 KNK R0.0 KNK R0.0 KNK 0R.0 0 KNK R.0 KNK R.0 KNK R.0 KNK R.0 KNK 0R.0 0 KNK 0R.0 0. KNK R0.0 KNK R.0. KNK R.0. KNK R0.0 KNK R.0. KNK R0.0 KNK R0.0 KNK R0.0 KNK R0.0 KNK R0.0 KNK R0.0 KNK 0R.0 0 KNK R.0 KNK R.0 KNK R.0 KNK R.0 KNK 0R.0 0 KNK R.0 KNK R.0 Max power rating at (W) dissipation (mw/ ) time (Sec.) Operating temperature range. -0 ~ ~ ~ ~ ~ +00

4 Part no. Zero power resistance at Max. steady state current at () Max. power rating at (W) dissipation (mw/ ) time (Sec.) Operating temperature range KNK 0R.0 KNK 0 R.0 KNK R.0 KNK 0 R. KNK 0.0 KNK0 0R.0 KNK0 R0.0 KNK0 R0. KNK0 R00.0 KNK0 R9.0 KNK0 R0. KNK0 R0.0 KNK0 R. KNK0 R0. KNK0 R0.0 KNK0 R. KNK0 R0. KNK0 R0.0 KNK0 0R. KNK0 R.0 KNK0 R.0 KNK0 R. KNK0 R. KNK0 R.0 KNK0 0R.0 KNK R00.0 KNK R. KNK R0.0 KNK R.0 KNK R0. KNK R0.0 KNK R.0 KNK R0.0 KNK R0. KNK R00.0 KNK R09.0 KNK 0R 0 KNK R KNK R KNK R KNK 0R 0 KNK 0.0 KNK0 R00.0 KNK0 R.0 KNK0 R0.0 KNK0 R.0 KNK0 R0.0 KNK0 R0.0 KNK0 R.0 KNK0 R0.0 KNK0 R0.0 KNK0 R0. KNK0 R00. KNK0 0R0.0 KNK0 R9.0 KNK0 R.0 KNK0 R.0 KNK0 0R.0 Note : = Tolerance of resistance ~ ~ ~ ~ +00

5 R-T characteristic curve (representative) KNK0_R0 ~ KNK0_0R KNK0_R0 ~ KNK0_0R KNK0_0R KNK0_0R KNK0_R0 KNK0_0R KNK0_R KNK0_0R KNK0_R0 KNK0_R0 KNK0_R KNK0_R0 ~ KNK0_R KNK_R ~ KNK_0R KNK0_0 KNK0_0R 0 0. KNK0_0R KNK0_R KNK0_0R KNK0_R0 KNK0_R0 KNK0_R KNK0_0R KNK_0R KNK_R KNK_0R KNK_R KNK_R0 KNK_R KNK_R

6 KNK_R ~ KNK_R KNK0_R0 ~ KNK0_ KNK_R KNK_0R KNK_R KNK_0R KNK_R KNK_0R KNK_R0 KNK_R0 KNK_R0 KNK_R KNK_R KNK_R 0 0. KNK0_00 KNK0_00 KNK0_R0 KNK0_R0 KNK0_R KNK_R0 ~ KNK_00 KNK0_R0~KNK0_ KNK_00 KNK_R 0. KNK_R0 KNK0_00 KNK0_R KNK0_R

7 V-I characteristic curve (representative) 0 KNK0_R0 ~ KNK0_0R K KNK0_0R KNK0_0R KNK0_R Current() 0 KNK0_R0 ~ KNK0_0R KNK0_0R KNK0_R KNK0_0R KNK0_R0 KNK0_R0 KNK0_R Current() 0 KNK0_R0 ~ KNK0_ KNK0_0 KNK0_0R KNK0_R KNK0_0R KNK0_R KNK0_0R KNK0 R0 KNK0 R0 KNK0_R KNK0_R Current()

8 0 KNK_R ~ KNK_0R KNK_0R KNK_R KNK_0R KNK_R0 KNK R0 KNK_R KNK_R Current() 0 KNK_R ~ KNK_R KNK_R KNK_0R KNK_R KNK_0R KNK_R KNK_0R KNK_R0 KNK_R0 KNK_R0 KNK_R KNK_R KNK_R Current() 0 KNK0_R0 ~ KNK0_ KNK0_00 KNK0_00 KNK0_R0 KNK0_R KNK0_R Current()

9 0 KNK_R0 ~ KNK_ KNK_00 KNK_R KNK_R Current() 0 KNK0_R0 ~ KNK0_ KNK0_00 KNK0_R KNK0_R Current()

10 Reliability test mm~ 0mm Item Test Conditions/Methods Specifications Gradually applying the force specified below to each terminal and keeping the unit fixed for 0 sec. Terminal diameter Force Tensile Strength of Terminations (mm) 0.<d 0. 0.<d. (Kg).0.0 Hanging the force specified below to each terminal and gradually bending each terminal by 90 in one direction, then 90 in the opposite direction, and again back to the origin. Bending Strength of Terminations Terminal diameter (mm) 0.<d 0. 0.<d. Force (Kg) 0..0 Solderability, 0. sec t least 9% of terminal electrode is covered by new solder Resistance to Soldering Heat 0,. 0. sec R/R 0 % Damp Heat 0, 9 0 ~ 9 % RH,000 HRS R/R 0 % The thermal shock conditions shown below shall be repeated cycles Step Period (minutes) Shock Tmin Room temperature Tmax 0 0 R/R 0 % Room temperature Life Test, Imax X 000 HRS R/R 0 % Endurance Imax min On/ min OFF X 000 cycles R/R 0 %

11 mm~ 0mm Item Test Conditions/Methods Specifications Gradually applying the force specified below to each terminal and keeping the unit fixed for 0 sec. Terminal diameter Force Tensile Strength of Terminations (mm) 0.<d 0. 0.<d. (Kg).0.0 Hanging the force specified below to each terminal and gradually bending each terminal by 90 in one direction, then 90 in the opposite direction, and again back to the origin. Bending Strength of Terminations Terminal diameter (mm) 0.<d 0. 0.<d. Force (Kg) 0..0 Solderability, 0. sec t least 9% of terminal electrode is covered by new solder Resistance to Soldering Heat 0,. 0. sec R/R 0 % High Temperature Storage 0 0 X000 HRS R/R 0 % Damp Heat 0, 9 0 ~ 9 % RH, 000 HRS R/R 0 % The thermal shock conditions shown below shall be repeated cycles Step Period (minutes) Shock -0 Room temperature R/R 0 % Room temperature Life Test, Imax X 000 HRS R/R 0 % Endurance Imax min On/ min OFF X 000 cycles R/R 0 %

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