Philips kty83 DATASHEETS

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Product specification
Supersedes data of 1998 Apr 09
2000 Aug 25
DISCRETE SEMICONDUCTORS
KTY83-1 series
Silicon temperature sensors
dbook, halfpage
M3D050
2000 Aug 25 2
Philips Semiconductors Product specification
Silicon temperature sensors KTY83-1 series

DESCRIPTION

The temperature sensors in the KTY83-1 series have a
positive temperature coefficient of resistance and are
suitable for use in measurement and control systems.
The sensors are encapsulated in the SOD68 (DO-34)
package.
Tolerances of 0.5% or other special selections are
available on request.
Fig.1 Simplified outline (SOD68; DO34).
The black band indicates the negative connection.
The marking provides type identity.
The sensor must be operated with the lower potential at the
marked connection.
MGU220
ka
XXX

MARKING

TYPE NUMBER MARKING CODE
KTY83-110 KTY83A
KTY83-120 KTY83C
KTY83-121 KTY83D
KTY83-122 KTY83E
KTY83-150 KTY83H
KTY83-151 KTY83K
KTY83-152 KTY83N

QUICK REFERENCE DATA

LIMITING VALUES

In accordance with the Absolute Maximum Rating System (IEC 60134).
SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT
R
25
sensor resistance T
amb
=25°C; I
cont
=1mA
KTY83-110 990 1010
KTY83-120 980 1020
KTY83-121 980 1000
KTY83-122 1000 1020
KTY83-150 950 1050
KTY83-151 950 1000
KTY83-152 1000 1050
T
amb
ambient operating temperature 55 +175 °C
SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT
I
cont
continuous sensor current in free air; T
amb
=25°C 10 mA
in free air; T
amb
= 175 °C 2mA
T
amb
ambient operating temperature 55 +175 °C
2000 Aug 25 3
Philips Semiconductors Product specification
Silicon temperature sensors KTY83-1 series

CHARACTERISTICS

T
amb
=25°C, in liquid, unless otherwise specified.
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.
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
R
25
sensor resistance I
cont
=1mA
KTY83-110 990 1010
KTY83-120 980 1020
KTY83-121 980 1000
KTY83-122 1000 1020
KTY83-150 950 1050
KTY83-151 950 1000
KTY83-152 1000 1050
TC temperature coefficient 0.76 %/K
R
100
/R
25
resistance ratio T
amb
= 100 °C and 25 °C 1.65 1.67 1.69
R
55
/R
25
resistance ratio T
amb
= 55 °C and 25 °C 0.49 0.50 0.51
τ thermal time constant; note 1 in still air 20 s
in still liquid; note 2 1 s
in flowing liquid; note 2 0.5 s
rated temperature range 55 +175 °C
2000 Aug 25 4
Philips Semiconductors Product specification
Silicon temperature sensors KTY83-1 series
Table 1 Ambient temperature,corresponding resistance, temperature coefficient and maximum expected temperature
error for KTY83-110 and KTY83-120
I
cont
= 1 mA.
AMBIENT
TEMPERATURE
TEMP.
COEFF.
KTY83-110 KTY83-120
(°C) (°F) (%/K)
RESISTANCE
()
TEMP.
ERROR
(K)
RESISTANCE
()
TEMP.
ERROR
(K)
MIN. TYP. MAX. MIN. TYP. MAX.
55 67 0.97 485 500 515 ±3.08 480 500 520 ±4.11
50 58 0.96 510 525 540 ±2.99 504 525 545 ±4.04
40 40 0.93 562 577 592 ±2.81 556 577 598 ±3.88
30 22 0.91 617 632 647 ±2.62 611 632 654 ±3.72
20 4 0.88 677 691 706 ±2.42 670 691 713 ±3.56
10 14 0.85 740 754 768 ±2.2 732 754 776 ±3.37
0 32 0.83 807 820 833 ±1.97 798 820 841 ±3.18
10 50 0.80 877 889 902 ±1.72 868 889 910 ±2.97
20 68 0.78 951 962 973 ±1.45 942 962 983 ±2.74
25 77 0.76 990 1000 1010 ±1.31 980 1000 1020 ±2.62
30 86 0.75 1027 1039 1050 ±1.44 1017 1039 1060 ±2.77
40 104 0.73 1105 1118 1132 ±1.7 1093 1118 1143 ±3.07
50 122 0.71 1185 1202 1219 ±1.98 1173 1202 1231 ±3.39
60 140 0.69 1268 1288 1309 ±2.27 1255 1288 1321 ±3.73
70 158 0.67 1355 1379 1402 ±2.58 1341 1379 1416 ±4.08
80 176 0.65 1445 1472 1500 ±2.9 1430 1472 1515 ±4.44
90 194 0.63 1537 1569 1601 ±3.24 1522 1569 1617 ±4.82
100 212 0.61 1633 1670 1707 ±3.59 1617 1670 1723 ±5.22
110 230 0.60 1732 1774 1816 ±3.95 1714 1774 1834 ±5.63
120 248 0.58 1834 1882 1929 ±4.34 1815 1882 1948 ±6.06
125 257 0.57 1886 1937 1987 ±4.53 1867 1937 2006 ±6.28
130 266 0.57 1939 1993 2046 ±4.73 1919 1993 2066 ±6.5
140 284 0.55 2047 2107 2167 ±5.14 2026 2107 2188 ±6.96
150 302 0.54 2158 2225 2292 ±5.57 2136 2225 2314 ±7.43
160 320 0.52 2272 2346 2420 ±6.02 2249 2346 2444 ±7.92
170 338 0.51 2389 2471 2553 ±6.47 2364 2471 2578 ±8.43
175 347 0.51 2449 2535 2621 ±6.71 2423 2535 2646 ±8.68
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