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NS.0K1.520.2S.C

产品描述RTD Nickel Iron Sensor, 100ohm, Rectangular, 5.00 X 2.00 MM, 0.65 MM HEIGHT, 2 PIN
产品类别传感器    传感器/换能器   
文件大小380KB,共12页
制造商Innovative Sensor Technology IST Ag
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NS.0K1.520.2S.C概述

RTD Nickel Iron Sensor, 100ohm, Rectangular, 5.00 X 2.00 MM, 0.65 MM HEIGHT, 2 PIN

NS.0K1.520.2S.C规格参数

参数名称属性值
厂商名称Innovative Sensor Technology IST Ag
Reach Compliance Codeunknown
主体宽度2 mm
主体高度0.65 mm
主体长度或直径5 mm
外壳NICKEL
最大工作电流5 mA
最高工作温度200 °C
最低工作温度-60 °C
封装形状/形式RECTANGULAR
标称 R0100 Ω
传感器/换能器类型TEMPERATURE SENSOR,RTD,NICKEL IRON
端接类型WIRE
Base Number Matches1

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Nickel Temperature Sensors
1/12
General Information
In many industrial sectors and fields of research, temperature measurement is one of the most important
parameters which determines product quality, security, and reliability. Temperature sensors are available in
several types all of which have a unique performance characteristic. The performance capability of the various
sensors are a result of the manufacturing process and component materials associated with their technologies
and intended application. It is IST Charter to produce sensors that exceed the industry standard of temperature
measurement with additional capability to directly replace older traditional methods and provide the maximum
performance. To this end IST has concentrated its development and manufacturing on the process and materials
of high-end thin-film temperature sensors. Additionally these processes, partially derived from the semiconductor
industry allows IST to manufacture sensors in very small dimensions. Because of their low thermic mass thin-film
temperature sensors exhibit a very short response time. IST core technology and processes results in thin-film
sensors that combine the good features of traditional wire wound nickel sensors such as accuracy, long-term
stability, repeatability, interchangeability and wide temperature range, with the advantages of mass-production,
which contributes to their optimal price/performance ratio.
Sensor Construction
The temperature sensor consists of a photo-lithographically structured, high-purity nickel coating arranged in the
shape of a meander. The nickel thin-film structures are laser trimmed to form resistive paths with very precisely
defined basic value of the resistivity. The sensors are covered with a dielectric layer to protect the sensor against
mechanical and chemical damage. The bonded leads, which are additionally fixed with a sealing compound,
provide the electrical contact to the resistive path.
Typical Features
– brief response time
– excellent long-term stability
– low self-heating rate
– simple interchangeability
– small dimensions
– simple linearisation
– resistant against vibration and temperature shocks
Response Time
The response time T
0.63
is the time in seconds the sensors need to respond to 63% of the change in temperature.
The response time depends on the sensor dimensions.
Long-Term Stability
The change of ohmage after 1,000 hrs at maximum operating temperature amounts to less than 0.1%.
Self Heating
To measure the resistance an electric current has to flow through the element, which will generate heat energy
resulting in errors of measurement. To minimize the error the testing current should be kept low (approximately 1
2
mA for Ni-1000). Temperature error
∆T
= RI / E; with E = self-heating coefficient in mW/K R = resistance in kΩ, I
= measuring current in mA
Nominal Values
The nominal value of the sensor is the target value of the sensor resistance at 0° C. The temperature coefficient
α
-1
-1
is defined as
α
=
R
100
- R
0
[K ] and has the numerical value of 0.00618 K for the sensors which comply the old
norm DIN 43760.
100 · R
0
In practice, a value multiplied by 10 is often entered: TCR = 10 *
In this case, the numerical value is 6180 ppm/K.
6
6
R
100
- R
0
100 · R
0
[ppm/K].
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