ECA 337-1967 Glass Coated Thermistor Beads and Thermistor Beads in Glass Probes and Glass Rods (Negative Temperature Coefficient) General Spec for《有玻璃涂层的热电阻珠和玻璃针及玻璃棒中的热电阻珠的一般规范》.pdf
《ECA 337-1967 Glass Coated Thermistor Beads and Thermistor Beads in Glass Probes and Glass Rods (Negative Temperature Coefficient) General Spec for《有玻璃涂层的热电阻珠和玻璃针及玻璃棒中的热电阻珠的一般规范》.pdf》由会员分享,可在线阅读,更多相关《ECA 337-1967 Glass Coated Thermistor Beads and Thermistor Beads in Glass Probes and Glass Rods (Negative Temperature Coefficient) General Spec for《有玻璃涂层的热电阻珠和玻璃针及玻璃棒中的热电阻珠的一般规范》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、.- . O # Y EIA 337 b7 3234b00 00b5b84 7 USAS C8 3.2 8-1 96 8 Approved July 24, 1968 USA STANDARDS INSTITUTE EIA STANDARD h m m ur General Specification for I w Glass Coated Thermistor Beads and Thermistor Beads in Glass Probes and Glass Rods (Nega ti v e Temp er a tu r e Co eff i c i e n t) 4 - Y RS
2、-337 Engineering Department ELECTRONIC INDUSTRIES ASSOCIATION - . -. EIA 337 b 3234600 00b5b5 9 NOTICE EIA engineering standards are designed to serve the public interest through eliminating mis- understandings between manufacturers and purchasers, facilitating interchangeability and improve- ment o
3、f products, and assisting the purchaser in selectin and obtaining with minimum delay the clude any member or non-member of EIA from manufacturing or selling products not conforming to such standards, nor shall the existence of such standards preclude their voluntary use by those other than EIA membe
4、rs whether the standard is to be used either domestically or internationally. Recommended standards are adopted by EIA without regard to whether or not their adoption may involve patents on articles, materials, or processes. By such action, EIA does not assume any liability to any patent owner, nor
5、does it assume any obligation whatever to parties adopting the recommended standards. proper product for his particular need. Existence of suc % standards shall not in any respect pre- Published by ELECTRONIC INDUSTRIES ASSOCIATION Engineering Department 2001 Eye Street, N. W., Washington, D. C. 200
6、06 0 Electronic industries Association 1967 AU rights reserved Price $2.00 c3 EIA 337 67 W 323LibOO 0065686 O W RS-337 Page 1 GENERAL SPECIFICATION FOR GLASS COATED THERMISTOR BEADS AND THERMISTOR BEADS IN GLASS PROBES AND GLASS RODS (NEGATIVE TEMPERATURE COEFFICIENT) (From Standards Proposal 929 fo
7、rmulated under the cognizance of the P-l. 6 Working Group on Thermistors) 1. GENERAL 1.1 Scope This specification covers glass coated thermistor beads and thermistor beads in glass probes and glass rods. 1.2 Classification 1.2.1 . Type Designation The type designation shall be in the following form:
8、 TBXO1 5 04( example) TBX02 TBGO 1 TBG02 Style Zero-Power Resistance 49(example) Resistance Ratio 1.2.1.1 Style The style is identified by the two-letter symbol TB followed by a one-letter symbol G or X and then a two-digit number. The two-letter symbol TB identifies Thermistor beads and the one-let
9、ter symbol following TB identifies the Thermistor bead in a glass envelope (G) or just the glass coated Thermistor bead (X). The two-digit number iden- tifies the size and configuration of the Thermistor. 1.2.1.2 Zero-Power Resistance The specified nominal Zero-Power Resistance value is expressed in
10、 ohms at the Standard Reference Temperature of 25C and 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. 1.2.1.3 Resistance Ratio The specified resistance ratio shall be: Zero-Power Resistance at 25C
11、 Zero-Power Resistance at 125C and is identified by a two-digit number. _- - - _ EIA 337 67 m 3234b00 0065687 2 m -.-I- J . AIR CHAMBER (T-50C) f4 - r RS-337 Page 2 2. DEFINITIONS AND TEST METHODS The thermistor definitions and test methods shall be in accordance with EIA Standard RS-275 “Thermistor
12、 Definitions and Test Methods” or latest revision thereof, except as modified herein. 2.1 Mounting Fixtures Beads (Styles TBX) shall be gripped by clips mounted on 1/8” brass rods. The clips shall grip the leads 1/4” 2 1/16” from body. 2.2 Thermal Time Constant Test Procedures Thermistor beads in gl
13、ass probes and glass rods (Styles TBG) shall have their thermal times constant measurement made according to the following test procedure: 2.2.1 Test Circuit The test. circuit shall be: O“ 2.2.2 Preparation of Test Specimen 2.2.2.1 Determine RT in an ambient of T and T-50C. in an ambient of T.632 wh
14、ere T 632 = T-31.6”C. T.632 2.2.2.2 Determine R 2.2.2.3 a temperature TS632. Set bridge for null with the zero-power resistance value RT measured at .632 2.2.2.4 Submerge the entire Thermistor in a temperature controlled bath at tem- perature T in a liquid of low viscosity of 1 centistoke. The mediu
15、m must not be sub- ject to surface evaporation when the Thermistors are removed. EIA 337 67 323QbOO 0065688 4 RS-337 Page 3 2.2.2.5 Locate a still air test chamber over the liquid bath. This chamber must have a volume of at least 1,000 times the Thermistor body and test fixture combined, and must be
16、 maintained at a temperature T-50C. With a controlled drive mechanism or other means, lift the Thermistors from the bath into the air chamber at a uniform speed of 2 2 1/4“ per second. 2.2.2.6 of the liquid bath. The vertical travel of the Thermistor shall be 4 +_ 1 inches from the surface 2.2.2.7 S
17、tart measuring time at the instant the Thermistor bead (contained in the glass probe or glass rod) leaves the surface of the bath. Note the time from this instant to the time when the bridge null is reached. 2.2.2.8 Record this time - this is the time constant of the Thermistor (Style TBG). 2.3 Test
18、 Conditions Unless otherwise specified herein, or in the individual specification, all measurements and tests shall be made at temperatures of 15C to 35“C, at air pressure of 650 to 800 millimeters of mercury., and rela- tive humidity of 45 percent to 75 percent. 3. CHARACTERISTICS 3.1 Zero-Power Re
19、sistance The zero-power resistance of the thermistor shall be measured at the standard reference temperature of 25“C, and the specified zero-power resistance shall have a tolerance of k 20%. 3.2 Resistance Ratio zero-power resistance at 25C zero-power resistance at 125C The resistance ratio - shall
20、be measured and the specified resistance ratio shall have a tolerance of 2 20%. 3.3 Standard Reference Temperature The standard reference temperature shall be 25C 0.025“C. 3.4 Maximum Operating Temperature The maximum operating temperature shall be 200C for Style TBX and 275C for Style TBG. 3.5 Diss
21、ipation Constant The dissipation constant shall be measured in accordance with paragraph 2. The dissipation constant shall have the minimum value as specified. 3.6 Thermal Time Constant The thermal time constant shall be measured in accordance with paragraph 2. The specified thermal time constant sh
22、all have the minimum value as specified. .- _- - - EIA 337 67 ? 3234600 0065687 b ? ReferenceTemperature(“C) Zero-Power Resistance Tolerance It % I Stvie TBX RS-337 Page 4 -55 -15 O 25 50 75 100 125 200 275 50 34 32 20 32 34 37 40 50 - 3.7 Zero-Power Resistance Temperature Characteristic The zero-po
23、wer resistance temperature characteristic shall be measured in accordance with paragraph 2. The specified zero-power resistance at the reference temperature shall be within the tolerance specified in Table I. Table I Style TBG 50 34 32 20 32 34 37 40 50 60 The tolerance on all temperatures except 25
24、C shall be 2 0.05“C. 4. PERFORMANCE CHARACERISTICS 4.1 Dielectric Withstanding Voltage 4.1.1 Test Procedure When the Thermistor is tested in accordance with EIA Standard RS-186-B*, Method 4, using the mounting methods of paragraph 4.1.2, it shall withstand a test voltage of 500 volts AC for two minu
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