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 DISCRETE SEMICONDUCTORS
DATA SHEET
book, halfpage
M3D053
KTY81-2 series Silicon temperature sensors
Product specification Supersedes data of 1996 Dec 06 File under Discrete Semiconductors, SC17 1998 Mar 26
Philips Semiconductors
Product specification
Silicon temperature sensors
DESCRIPTION The temperature sensors in the KTY81-2 series have a positive temperature coefficient of resistance and are suitable for use in measurement and control systems. The sensors are encapsulated in the SOD70 leaded plastic package. Tolerances of 0.5% or other special selections are available on request. MARKING TYPE NUMBER KTY81-210 KTY81-220 KTY81-221 KTY81-222 KTY81-250 KTY81-251 KTY81-252 QUICK REFERENCE DATA SYMBOL R25 PARAMETER sensor resistance KTY81-210 KTY81-220 KTY81-221 KTY81-222 KTY81-250 KTY81-251 KTY81-252 Tamb ambient operating temperature CONDITIONS Tamb = 25 C; Icont = 1 mA 1980 1960 1960 2000 1900 1900 2000 -55 MIN. CODE 210 220 221 222 250 251 252
handbook, halfpage
KTY81-2 series
PINNING PIN 1 2 3 DESCRIPTION electrical contact electrical contact not to be connected to a potential
1 3
2
MBH739
Fig.1 Simplified outline (SOD70).
MAX. 2020 2040 2000 2040 2100 2000 2100 +150 C
UNIT
1998 Mar 26
2
Philips Semiconductors
Product specification
Silicon temperature sensors
LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134). SYMBOL Icont Tamb PARAMETER continuous sensor current ambient operating temperature CONDITIONS in free air; Tamb = 25 C in free air; Tamb = 150 C - - -55
KTY81-2 series
MIN. 2
MAX. 10 +150
UNIT mA mA C
CHARACTERISTICS Tamb = 25 C, in liquid, unless otherwise specified. SYMBOL R25 PARAMETER sensor resistance KTY81-210 KTY81-220 KTY81-221 KTY81-222 KTY81-250 KTY81-251 KTY81-252 TC R100/R25 R-55/R25 temperature coefficient resistance ratio resistance ratio thermal time constant; note 1 CONDITIONS Icont = 1 mA 1980 1960 1960 2000 1900 1900 2000 - Tamb = 100 C and 25 C 1.676 Tamb = -55 C and 25 C 0.480 in still air in still liquid; note 2 in flowing liquid; note 2 rated temperature range Notes 1. The thermal time constant is the time taken for the sensor to reach 63.2% of the total temperature difference. For example, if a sensor with a temperature of 25 C is moved to an environment with an ambient temperature of 100 C, the time for the sensor to reach a temperature of 72.4 C is the thermal time constant. 2. Inert liquid, e.g. FC43 manufactured by the 3M company. - - - -55 - - - - - - - 0.79 1.696 0.490 30 5 3 - 2020 2040 2000 2040 2100 2000 2100 - 1.716 0.500 - - - +150 s s s C %/K MIN. TYP. MAX. UNIT
1998 Mar 26
3
Philips Semiconductors
Product specification
Silicon temperature sensors
Table 1
KTY81-2 series
Ambient temperature, corresponding resistance, temperature coefficient and maximum expected temperature error for KTY81-210 and KTY81-220
Icont = 1 mA. AMBIENT TEMPERATURE TEMP. COEFF. KTY81-210 RESISTANCE () MIN. -55 -50 -40 -30 -20 -10 0 10 20 25 30 40 50 60 70 80 90 100 110 120 125 130 140 150 -67 -58 -40 -22 -4 14 32 50 68 77 86 104 122 140 158 176 194 212 230 248 257 266 284 302 0.99 0.98 0.96 0.93 0.91 0.88 0.85 0.83 0.80 0.79 0.78 0.75 0.73 0.71 0.69 0.67 0.65 0.63 0.59 0.53 0.49 0.44 0.33 0.20 951 1000 1105 1218 1338 1467 1603 1748 1901 1980 2057 2217 2383 2557 2737 2924 3118 3318 3523 3722 3815 3901 4049 4153 TYP. 980 1030 1135 1247 1367 1495 1630 1772 1922 2000 2080 2245 2417 2597 2785 2980 3182 3392 3607 3817 3915 4008 4166 4280 MAX. 1009 1059 1165 1277 1396 1523 1656 1797 1944 2020 2102 2272 2451 2637 2832 3035 3246 3466 3691 3912 4016 4114 4283 4407 TEMP. ERROR (K) 3.02 2.92 2.74 2.55 2.35 2.14 1.91 1.67 1.41 1.27 1.39 1.64 1.91 2.19 2.49 2.8 3.12 3.46 3.93 4.7 5.26 6 8.45 14.63 KTY81-220 RESISTANCE () MIN. 941 990 1094 1205 1325 1452 1587 1730 1881 1960 2036 2194 2359 2531 2709 2894 3086 3284 3487 3683 3775 3861 4008 4110 TYP. 980 1030 1135 1247 1367 1495 1630 1772 1922 2000 2080 2245 2417 2597 2785 2980 3182 3392 3607 3817 3915 4008 4166 4280 MAX. 1019 1070 1176 1289 1410 1538 1673 1814 1963 2040 2123 2295 2475 2663 2860 3065 3278 3500 3728 3950 4055 4154 4325 4450 TEMP. ERROR (K) 4.02 3.94 3.78 3.62 3.45 3.27 3.08 2.88 2.66 2.54 2.68 2.97 3.28 3.61 3.94 4.3 4.66 5.05 5.61 6.59 7.31 8.27 11.46 19.56
(C)
(F)
(%/K)
1998 Mar 26
4
Philips Semiconductors
Product specification
Silicon temperature sensors
Table 2
KTY81-2 series
Ambient temperature, corresponding resistance, temperature coefficient and maximum expected temperature error for KTY81-221 and KTY81-222
Icont = 1 mA. AMBIENT TEMPERATURE TEMP. COEFF. KTY81-221 RESISTANCE () MIN. -55 -50 -40 -30 -20 -10 0 10 20 25 30 40 50 60 70 80 90 100 110 120 125 130 140 150 -67 -58 -40 -22 -4 14 32 50 68 77 86 104 122 140 158 176 194 212 230 248 257 266 284 302 0.99 0.98 0.96 0.93 0.91 0.88 0.85 0.83 0.80 0.79 0.78 0.75 0.73 0.71 0.69 0.67 0.65 0.63 0.59 0.53 0.49 0.44 0.33 0.20 941 990 1094 1205 1325 1452 1587 1730 1882 1960 2037 2195 2360 2531 2710 2895 3086 3285 3488 3684 3776 3862 4009 4112 TYP. 970 1019 1123 1235 1354 1480 1613 1754 1903 1980 2059 2222 2393 2571 2757 2950 3150 3358 3571 3779 3876 3967 4125 4237 MAX. 999 1049 1153 1264 1382 1508 1640 1779 1924 2000 2081 2250 2426 2611 2804 3005 3214 3431 3655 3873 3976 4073 4241 4363 TEMP. ERROR (K) 3.02 2.92 2.74 2.55 2.35 2.14 1.91 1.67 1.41 1.27 1.39 1.64 1.91 2.19 2.49 2.8 3.12 3.46 3.93 4.7 5.26 6 8.45 14.63 KTY81-222 RESISTANCE () MIN. 960 1010 1116 1230 1352 1481 1619 1765 1920 2000 2078 2239 2407 2582 2764 2 953 3149 3351 3558 3759 3853 3940 4090 4195 TYP. 990 1040 1146 1260 1381 1510 1646 1790 1941 2020 2100 2267 2441 2623 2812 3009 3214 3426 3643 3855 3955 4048 4208 4323 MAX. 1020 1070 1176 1290 1410 1538 1673 1815 1963 2040 2123 2295 2475 2664 2860 3065 3279 3501 3728 3951 4056 4155 4326 4451 TEMP. ERROR (K) 3.02 2.92 2.74 2.55 2.35 2.14 1.91 1.67 1.41 1.27 1.39 1.64 1.91 2.19 2.49 2.8 3.12 3.46 3.93 4.7 5.26 6 8.45 14.63
(C)
(F)
(%/K)
1998 Mar 26
5
Philips Semiconductors
Product specification
Silicon temperature sensors
Table 3
KTY81-2 series
Ambient temperature, corresponding resistance, temperature coefficient and maximum expected temperature error for KTY81-250 and KTY81-251
Icont = 1 mA. AMBIENT TEMPERATURE TEMP. COEFF. KTY81-250 RESISTANCE () MIN. -55 -50 -40 -30 -20 -10 0 10 20 25 30 40 50 60 70 80 90 100 110 120 125 130 140 150 -67 -58 -40 -22 -4 14 32 50 68 77 86 104 122 140 158 176 194 212 230 248 257 266 284 302 0.99 0.98 0.96 0.93 0.91 0.88 0.85 0.83 0.80 0.79 0.78 0.75 0.73 0.71 0.69 0.67 0.65 0.63 0.59 0.53 0.49 0.44 0.33 0.20 911 959 1060 1168 1283 1407 1538 1677 1824 1900 1974 2127 2287 2453 2626 2805 2990 3182 3379 3569 3658 3741 3883 3982 TYP. 980 1030 1135 1247 1367 1495 1630 1772 1922 2000 2080 2245 2417 2597 2785 2980 3182 3392 3607 3817 3915 4008 4166 4280 MAX. 1049 1101 1210 1327 1451 1583 1721 1867 2021 2100 2185 2362 2547 2741 2943 3154 3374 3602 3836 4065 4173 4274 4450 4578 TEMP. ERROR (K) 7.04 6.99 6.91 6.84 6.77 6.69 6.61 6.51 6.41 6.35 6.55 6.97 7.4 7.85 8.31 8.79 9.29 9.81 10.65 12.25 13.45 15.06 20.49 34.35 KTY81-251 RESISTANCE () MIN. 913 960 1061 1169 1285 1408 1539 1678 1825 1900 1975 2129 2289 2455 2628 2807 2993 3185 3382 3573 3662 3745 3887 3987 TYP. 956 1004 1106 1216 1333 1457 1589 1728 1874 1950 2028 2189 2357 2532 2715 2905 3102 3307 3517 3721 3817 3907 4062 4173 MAX. 999 1048 1152 1263 1381 1507 1639 1778 1923 2000 2080 2248 2425 2609 2802 3003 3212 3429 3652 3870 3973 4070 4237 4359 TEMP. ERROR (K) 4.52 4.45 4.3 4.16 4.01 3.84 3.67 3.48 3.28 3.18 3.33 3.64 3.97 4.31 4.67 5.05 5.43 5.84 6.45 7.53 8.33 9.4 12.96 22.02
(C)
(F)
(%/K)
1998 Mar 26
6
Philips Semiconductors
Product specification
Silicon temperature sensors
Table 4
KTY81-2 series
Ambient temperature, corresponding resistance, temperature coefficient and maximum expected temperature error for KTY81-252
Icont = 1 mA. AMBIENT TEMPERATURE TEMP. COEFF. KTY81-252 RESISTANCE () MIN. -55 -50 -40 -30 -20 -10 0 10 20 25 30 40 50 60 70 80 90 100 110 120 125 130 140 150 -67 -58 -40 -22 -4 14 32 50 68 77 86 104 122 140 158 176 194 212 230 248 257 266 284 302 0.99 0.98 0.96 0.93 0.91 0.88 0.85 0.83 0.80 0.79 0.78 0.75 0.73 0.71 0.69 0.67 0.65 0.63 0.59 0.53 0.49 0.44 0.33 0.20 959 1009 1115 1229 1351 1480 1618 1764 1919 2000 2077 2238 2406 2581 2763 2 951 3147 3349 3556 3756 3850 3937 4087 4191 TYP. 1005 1055 1163 1278 1401 1532 1670 1817 1970 2050 2132 2301 2478 2662 2854 3054 3262 3477 3 697 3912 4013 4108 4271 4387 MAX. 1050 1102 1211 1328 1452 1584 1723 1869 2022 2100 2187 2364 2549 2743 2946 3157 3376 3605 3839 4068 4177 4278 4455 4583 TEMP. ERROR (K) 4.52 4.45 4.3 4.16 4.01 3.84 3.67 3.48 3.28 3.18 3.33 3.64 3.97 4.31 4.67 5.05 5.43 5.84 6.45 7.53 8.33 9.4 12.96 22.02
(C)
(F)
(%/K)
1998 Mar 26
7
Philips Semiconductors
Product specification
Silicon temperature sensors
KTY81-2 series
handbook, halfpage
T (K)
15
MGG695
KTY81-251 -252 KTY81-220
handbook, halfpage
4.8
MSA922
10
R (k) 3.2
5 KTY81-210 -221 -222
0
-5 -10 -15
1.6
-50
0
50
100 150 Tamb (C)
0 -100
-50
0
50
100
150 200 Tamb (C)
Icont = 1 mA.
Fig.3 Fig.2 Maximum expected temperature error (T).
Sensor resistance as a function of ambient temperature; average values.
handbook, halfpage
5
MGG700
R (k)
handbook, halfpage
12
MGG705
150 C 125 C 100 C
Icont (mA) 8
4
3
75 C 50 C
2
25 C 0 C -25 C -50 C 4
1
0 10-1
1
Icont (mA)
10
0 -50
0
50
100 150 Tamb (C)
To keep the temperature error low, an operating current of Icont = 1 mA is recommended for temperatures above 100 C.
Fig.4
Sensor resistance as a function of operating current.
Fig.5
Maximum operating current for safe operation.
1998 Mar 26
8
Philips Semiconductors
Product specification
Silicon temperature sensors
KTY81-2 series
MGG703
handbook, halfpage
30 R () 20
10
0
-10 0 1 2
Icont (mA)
Tamb = 25 C.
Fig.6
Deviation of sensor resistance as a function of operating current in still liquid.
APPLICATION INFORMATION SYMBOL R25 PARAMETER drift of sensor resistance at 25 C CONDITIONS 10000 hours continuous operation; Tamb = 150 C TYP. 0.5 UNIT
1998 Mar 26
9
Philips Semiconductors
Product specification
Silicon temperature sensors
PACKAGING
KTY81-2 series
Sensors in SOD70 encapsulation are delivered in bulk packaging, and also reel packaging for automatic placement on hybrid circuits and printed-circuit boards (see Fig.7). Note: Types in bulk packaging have a lead-to-lead distance of 2.54 millimetres, whereas the distance for types packaged on reel is 5.08 millimetres.
handbook, full pagewidth
P A1 (p) h
T h
A H2 W2 H0 L W0 W1 W
H1
F1 F P2 P0
F2
MBH795
D0
t1 t
Fig.7 Configuration of bandolier.
1998 Mar 26
10
Philips Semiconductors
Product specification
Silicon temperature sensors
Table 5 Tape specification SPECIFICATIONS SYMBOL A1 A T P P0 P2 F h W W0 W1 W2 H0 H1 L D0 t F1, F2 H2 (p) Note 1. Measured over 20 devices. DIMENSION MIN. body width body height body thickness pitch of component feed hole pitch cumulative pitch error 4.4 5 3.6 - - - NOM. - - - 12.7 12.7 - 6.35 5.08 0 18 6 9 0.5 16.5 - - 4 - 2.54 2.5 - MAX. 4.8 5.2 3.9 - - - - - 1 - - - - - 23.25 11 - 1.2 - - - - - - 1 0.3 0.1 0.4 +0.6/-0.2 - 0.5 0.2 +0.7/-0.5 0.2 0.5 - - 0.2 - +0.4/-0.2 +0.5/0 - mm mm mm mm mm mm mm mm mm mm mm mm mm mm N TOL. UNIT mm mm mm mm mm
KTY81-2 series
REMARKS
note 1 to be measured at bottom of clinch at top of body
feed hole centre to component - centre lead-to-lead distance component alignment tape width hold-down tape width hole position hold-down tape position lead wire clinch height component height length of snipped leads feed hole diameter total tape thickness lead to snipped lead distance clinch height pull-out force - - - - - - - - - - - - - 6
t1 = 0.3 to 0.6
1998 Mar 26
11
Philips Semiconductors
Product specification
Silicon temperature sensors
PACKAGE OUTLINE Plastic near cylindrical single-ended package; 2 in-line leads
KTY81-2 series
SOD70
c
E d A L b
1
D e
2
b1 L2 L1
0
2.5 scale
5 mm
DIMENSIONS (mm are the original dimensions) UNIT mm A 5.2 5.0 b 0.48 0.40 b1 0.66 0.56 c 0.45 0.40 D 4.8 4.4 d 1.7 1.4 E 4.2 3.6 e 2.54 L 14.5 12.7 L1 max. 2.5
(1)
L2 0.7 0.5
Notes 1. Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. OUTLINE VERSION SOD70 REFERENCES IEC JEDEC EIAJ EUROPEAN PROJECTION ISSUE DATE 97-05-30
1998 Mar 26
12
Philips Semiconductors
Product specification
Silicon temperature sensors
DEFINITIONS Data Sheet Status Objective specification Preliminary specification Product specification Limiting values
KTY81-2 series
This data sheet contains target or goal specifications for product development. This data sheet contains preliminary data; supplementary data may be published later. This data sheet contains final product specifications.
Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation of the device at these or at any other conditions above those given in the Characteristics sections of the specification is not implied. Exposure to limiting values for extended periods may affect device reliability. Application information Where application information is given, it is advisory and does not form part of the specification. LIFE SUPPORT APPLICATIONS These products are not designed for use in life support appliances, devices, or systems where malfunction of these products can reasonably be expected to result in personal injury. Philips customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify Philips for any damages resulting from such improper use or sale.
1998 Mar 26
13
Philips Semiconductors
Product specification
Silicon temperature sensors
NOTES
KTY81-2 series
1998 Mar 26
14
Philips Semiconductors
Product specification
Silicon temperature sensors
NOTES
KTY81-2 series
1998 Mar 26
15
Philips Semiconductors - a worldwide company
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For all other countries apply to: Philips Semiconductors, Marketing & Sales Communications, Building BE-p, P.O. Box 218, 5600 MD EINDHOVEN, The Netherlands, Fax. +31 40 27 24825 (c) Philips Electronics N.V. 1996
Internet: http://www.semiconductors.philips.com
SCA52
All rights are reserved. Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner. The information presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and may be changed without notice. No liability will be accepted by the publisher for any consequence of its use. Publication thereof does not convey nor imply any license under patent- or other industrial or intellectual property rights.
Printed in The Netherlands
115106/00/03/pp16
Date of release: 1998 Mar 26
Document order number:
9397 750 03623


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