NTC thermistors for temperature measurement

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1 NTC thermistors for temperature measurement Leaded NTCs, lead spacing 5 mm Series/Type: Date: March 2006 EPCOS AG Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without EPCOS' prior express consent is prohibited.

2 Applications Temperature compensation Temperature measurement Temperature control Dimensional drawing Features Wide resistance range Cost-effective Lacquer-coated thermistor disk Tinned copper leads Lead spacing 5.0 mm Marked with resistance and tolerance Delivery mode Bulk (standard), cardboard tape, reeled or in Ammo pack Dimensions in mm Approx. weight 0.4 g General technical data Climatic category (IEC ) 55/125/21 Max. power (at 25 C) P mw Resistance tolerance R R /R R ±5, ±10 % Rated temperature T R 25 C Dissipation factor (in air) δ th approx. 7.5 mw/k Thermal cooling time constant (in air) τ c approx. 20 s Heat capacity C th approx. 150 mj/k Electrical specification and ordering codes R 25 Ω No. of R/T characteristic B 25/100 K Ordering code ±3% K ±3% K ±3% K ±3% K ±3% K ±3% K ±3% K ±3% K = Resistance tolerance J = ±5% K = ±10% Page 2 of 61

3 R 25 Ω No. of R/T characteristic B 25/100 K Ordering code ±3% K ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K k ±3% K = Resistance tolerance J = ±5% K = ±10% Page 3 of 61

4 Reliability data Test Standard Test conditions R 25 /R 25 (typical) Storage in dry heat Storage in damp heat, steady state Rapid temperature cycling Endurance Long-term stability (empirical value) IEC IEC IEC Storage at upper category temperature T: 125 C t: 1000 h Temperature of air: 40 C Relative humidity of air: 93% Duration: 21 days Lower test temperature: 55 C Upper test temperature: 125 C Number of cycles: 100 P max : 450 mw t: 1000 h Temperature: 125 C t: h Remarks < 3% No visible damage < 3% No visible damage < 3% No visible damage < 3% No visible damage < 5% No visible damage Page 4 of 61

5 R/T characteristics R/T No K0150J000 T ( C) B 25/100 = 2900 K, R 25 = 15 Ω, T R = 25 C, R R /R R = ± 5% Page 5 of 61

6 R/T No K0150K000 T ( C) B 25/100 = 2900 K, R 25 = 15 Ω, T R = 25 C, R R /R R = ± 10% Page 6 of 61

7 R/T No K0220J000 T ( C) B 25/100 = 2900 K, R 25 = 22 Ω, T R = 25 C, R R /R R = ± 5% Page 7 of 61

8 R/T No K0220K000 T ( C) B 25/100 = 2900 K, R 25 = 22 Ω, T R = 25 C, R R /R R = ± 10% Page 8 of 61

9 R/T No K0330J000 T ( C) B 25/100 = 2900 K, R 25 = 33 Ω, T R = 25 C, R R /R R = ± 5% Page 9 of 61

10 R/T No K0330K000 T ( C) B 25/100 = 2900 K, R 25 = 33 Ω, T R = 25 C, R R /R R = ± 10% Page 10 of 61

11 R/T No K0470J000 T ( C) B 25/100 = 3000 K, R 25 = 47 Ω, T R = 25 C, R R /R R = ± 5% Page 11 of 61

12 R/T No K0470K000 T ( C) B 25/100 = 3000 K, R 25 = 47 Ω, T R = 25 C, R R /R R = ± 10% Page 12 of 61

13 R/T No K0680J000 T ( C) B 25/100 = 3050 K, R 25 = 68 Ω, T R = 25 C, R R /R R = ± 5% Page 13 of 61

14 R/T No K0680K000 T ( C) B 25/100 = 3050 K, R 25 = 68 Ω, T R = 25 C, R R /R R = ± 10% Page 14 of 61

15 R/T No K0101J000 T ( C) B 25/100 = 3200 K, R 25 = 100 Ω, T R = 25 C, R R /R R = ± 5% Page 15 of 61

16 R/T No K0101K000 T ( C) B 25/100 = 3200 K, R 25 = 100 Ω, T R = 25 C, R R /R R = ± 10% Page 16 of 61

17 R/T No K0151J000 T ( C) B 25/100 = 3200 K, R 25 = 150 Ω, T R = 25 C, R R /R R = ± 5% Page 17 of 61

18 R/T No K0151K000 T ( C) B 25/100 = 3200 K, R 25 = 150 Ω, T R = 25 C, R R /R R = ± 10% Page 18 of 61

19 R/T No K0221J000 T ( C) B 25/100 = 3200 K, R 25 = 220 Ω, T R = 25 C, R R /R R = ± 5% Page 19 of 61

20 R/T No K0221K000 T ( C) B 25/100 = 3200 K, R 25 = 220 Ω, T R = 25 C, R R /R R = ± 10% Page 20 of 61

21 R/T No K0331J000 T ( C) B 25/100 = 3450 K, R 25 = 330 Ω, T R = 25 C, R R /R R = ± 5% Page 21 of 61

22 R/T No K0331K000 T ( C) B 25/100 = 3450 K, R 25 = 330 Ω, T R = 25 C, R R /R R = ± 10% Page 22 of 61

23 R/T No K0471J000 T ( C) B 25/100 = 3450 K, R 25 = 470 Ω, T R = 25 C, R R /R R = ± 5% Page 23 of 61

24 R/T No K0471K000 T ( C) B 25/100 = 3450 K, R 25 = 470 Ω, T R = 25 C, R R /R R = ± 10% Page 24 of 61

25 R/T No K0102J000 T ( C) B 25/100 = 3730 K, R 25 = 1000 Ω, T R = 25 C, R R /R R = ± 5% Page 25 of 61

26 R/T No K0102K000 T ( C) B 25/100 = 3730 K, R 25 = 1000 Ω, T R = 25 C, R R /R R = ± 10% Page 26 of 61

27 R/T No K0152J000 T ( C) B 25/100 = 3900 K, R 25 = 1500 Ω, T R = 25 C, R R /R R = ± 5% Page 27 of 61

28 R/T No K0152K000 T ( C) B 25/100 = 3900 K, R 25 = 1500 Ω, T R = 25 C, R R /R R = ± 10% Page 28 of 61

29 R/T No K0222J000 T ( C) B 25/100 = 3900 K, R 25 = 2200 Ω, T R = 25 C, R R /R R = ± 5% Page 29 of 61

30 R/T No K0222K000 T ( C) B 25/100 = 3900 K, R 25 = 2200 Ω, T R = 25 C, R R /R R = ± 10% Page 30 of 61

31 R/T No K0332J000 T ( C) B 25/100 = 3950 K, R 25 = 3300 Ω, T R = 25 C, R R /R R = ± 5% Page 31 of 61

32 R/T No K0332K000 T ( C) B 25/100 = 3950 K, R 25 = 3300 Ω, T R = 25 C, R R /R R = ± 10% Page 32 of 61

33 R/T No K0472J000 T ( C) B 25/100 = 3950 K, R 25 = 4700 Ω, T R = 25 C, R R /R R = ± 5% Page 33 of 61

34 R/T No K0472K000 T ( C) B 25/100 = 3950 K, R 25 = 4700 Ω, T R = 25 C, R R /R R = ± 10% Page 34 of 61

35 R/T No K0682J000 T ( C) B 25/100 = 4200 K, R 25 = 6800 Ω, T R = 25 C, R R /R R = ± 5% Page 35 of 61

36 R/T No K0682K000 T ( C) B 25/100 = 4200 K, R 25 = 6800 Ω, T R = 25 C, R R /R R = ± 10% Page 36 of 61

37 R/T No K0103J000 T ( C) B 25/100 = 4300 K, R 25 = Ω, T R = 25 C, R R /R R = ± 5% Page 37 of 61

38 R/T No K0103K000 T ( C) B 25/100 = 4300 K, R 25 = Ω, T R = 25 C, R R /R R = ± 10% Page 38 of 61

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