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FP07DB204N

FP07DB204N

  • 厂商:

    AMPHENOL(安费诺)

  • 封装:

    Cylindrical Probe, Glass

  • 描述:

    THERMISTOR NTC 200KOHM PROBE

  • 数据手册
  • 价格&库存
FP07DB204N 数据手册
NTC Type FP07 Thermometrics Fastip Probe Thermistor The NTC Type FP Series Fastip Thermoprobes consist of small diameter glass-coated thermistor beads hermetically sealed at the tips of shock resistant glass rods. The small bead thermistor has a very thin glass coating which allows for relatively flat frequency response for flow applications. As much of the bead as possible is exposed at the tip of the glass rod to provide the fastest response times. The units are rugged and unaffected by severe environmental exposures, including high density nuclear radiation. Features The NTC Type FP Series Fastip Thermoprobes are ideally suited for high speed measurement and control of fluid temperatures, fluid level or flow. They offer the ease of handling associated with large glass probe thermistors as well as ultra-fast response times of small glass coated bead thermistors. These units exhibit relatively flat response to flow input from 200 Hz to 1000 Hz. • High Speed Fluid Temperature Measurement & Control Amphenol Advanced Sensors • Ultra-Fast Response Time • Rugged, Unaffected by Severe Environmental Exposures • Relatively Flat Frequency Response • Ease of Handling Applications • Sub-Sea Monitoring • Industrial Type FP07 Specifications Maximum Diameter Ø 0.12 in. (0.3 mm) tinned dumet lead-wires Thermal and Electrical Properties The following table lists the thermal and electrical properties for all large ruggedized thermobeads. All definitions and test methods are per MILPRF-23648. 0.5 in. (12.7 mm) nominal 0.875 in. (22 mm) nominal *Longer leads available upon request. Thermistor Type FP07 Maximum Diameter 0.085 in. (2.2 mm) Body Length 0.5 in. (12.7 mm) NTC Type FP07 Dimensions Lead Wires Nominal Diameter 0.012 in. (0.30 mm) Thermistor Time Constant FP07 Lead Length 0.875 in. (22 mm) Lead Material Tinned dumet Still Air at 77 °F (25°C) Plunge into Water 0.10 sec 7 msec Dissipation Constant Still Air at 77 °F (25°C) Still Water at 77 °F (25°C) 0.05 mW/°C 0.25 mW/°C Material System Code Letter R vs T Curve 25/125 Ratio Nominal Resistance Range (W) @ 77°F (25°C) E 0 5.0 - A 1 11.8 300 to 600 A 2 12.5 680 k to 1.6 k A 3 14.0 1.6 k to 3.6 k A 4 16.9 3.6 k to 6.8 k A 5 19.8 6.8 k to 27 k A 6 22.1 - A 7 22.7 27 k to 75 k B 8 29.4 75 k to 130 k B 9 30.8 130 k to 240 k B 10 32.3 240 k to 360 k B 11 35.7 360 k to 820 k B 12 38.1 820 k to 13 M B 13 45.0 1.3 M to 3.3 M B 14 48.1 3.3 M to 6.8 M B 15 56.5 6.8 M to 10 M D 16 75.6 - D 17 81.0 - Resistance vs temperature characteristics: The nominal resistance range for the zero-power resistance at 77°F (25°C) is shown for each thermobead type and each available material system. Each material system is denoted by an ordering code letter, a referenced curve number and the nominal 77°F/257°F (25°C/125°C) resistance ratio. Power Rating (in air) Maximum Power Rating 0.006 Watts Ordering Information The code number to be ordered may be specified as follows: Code Model Number FP 07 Code Probe Length D 0.5 (12.7 mm) (Other lengths available on special order) Code Material System Code X See Thermal and Electrical Properties table Code Zero Power Resistance 103 See note below* Code Tolerance @ 77°F (25°C)** F 1 G 2 J 5 K 10 L 15 M 20 N 25 P 30 Q 40 R 50 S Non-standard (consult factory) FP ___ ____ ____ ____ ____ Typical model number *The zero-power resistance at 77°F (25°C), expressed in ohms (W), is identified by a three digit number. The first two digits represent significant figures and the last digit specifies the number of zeros to follow. Example: A Fastip probe with a 7 msec response time in water, 10 kW ±25% at 77°F (25°C) would be coded FP07DA103N. **Special tolerances are available on request. To specify a non-standard tolerance, use the letter ‘S’ followed by the desired tolerance (i.e., S7 = ±7%). Amphenol Advanced Sensors www.amphenol-sensors.com © 2016 Amphenol Corporation. All Rights Reserved. Specifications are subject to change without notice. Other company names and product names used in this document are the registered trademarks or trademarks of their respective owners. AAS-920-267D - 04/2016
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