ECA-337-1967-R1981.pdf

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1、.- . O # Y E I A 337 b7 3234b00 00b5b84 7 U S A S 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 -

2、 Y RS-337 Engineering Department ELECTRONIC INDUSTRIES ASSOCIATION Copyright Electronic Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee=IHS Employees/1111111001, User=Wing, Bernie Not for Resale, 03/30/2007 03:09:27 MDTNo reproduction or networking perm

3、itted without license from IHS -,-,- - . - . E I A 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 of products, and assist

4、ing 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 members whether the standar

5、d 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 does it assume any obl

6、igation 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 . 20006 0 Electronic indus

7、tries Association 1967 AU rights reserved Price $2.00 c3 Copyright Electronic Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee=IHS Employees/1111111001, User=Wing, Bernie Not for Resale, 03/30/2007 03:09:27 MDTNo reproduction or networking permitted with

8、out license from IHS -,-,- E I A 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 formulated under the cognizance of the P-l. 6 Worki

9、ng 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: TBXO1 5 04( example) TBX02 TBGO 1 TBG02 Style Ze

10、ro-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-letter symbol following TB identifies the Thermistor

11、 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 ohms at the Standard Reference Temperature of 25

12、C 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 Zero-Power Resistance at 125C and is identified

13、by a two-digit number. _- - - _ Copyright Electronic Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee=IHS Employees/1111111001, User=Wing, Bernie Not for Resale, 03/30/2007 03:09:27 MDTNo reproduction or networking permitted without license from IHS -,-,

14、- EIA 337 67 m 3234b00 0065687 2 m - - . - - - - - - - - - . . I - - - - - - J . AIR CHAMBER (T-50C) f 4 - 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 Definitions and Test Methods” or latest r

15、evision 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 glass probes and glass rods (Styles TBG) sha

16、ll 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 where T 632 = T-31.6”C. T.632 2.2.2.2 Determ

17、ine 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 medium must not be sub- ject to surface evapora

18、tion when the Thermistors are removed. Copyright Electronic Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee=IHS Employees/1111111001, User=Wing, Bernie Not for Resale, 03/30/2007 03:09:27 MDTNo reproduction or networking permitted without license from I

19、HS -,-,- E I A 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 maintained at a temperature T-50C. With a controlled drive mechanism

20、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 Start measuring time at the instant the Thermistor bead (contained in t

21、he 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 Conditions Unless otherwise specified herein, or in the individual sp

22、ecification, 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 Resistance The zero-power resistance of the thermistor shall be measured

23、 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 be measured and the specified resistance ratio shall have a tolerance

24、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 Dissipation Constant The dissipation constant shall be measured in accorda

25、nce 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 shall have the minimum value as specified. .- _- - - Copyright Electroni

26、c Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee=IHS Employees/1111111001, User=Wing, Bernie Not for Resale, 03/30/2007 03:09:27 MDTNo reproduction or networking permitted without license from IHS -,-,- E I A 337 67 ? 3234600 0065687 b ? ReferenceTempe

27、rature(“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-power resistance temperature characteristic shall be measured in accordance with paragraph 2. The sp

28、ecified 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 25C shall be 2 0.05“C. 4. PERFORMANCE CHARACERISTICS 4.1 Dielectric Withstanding Voltage 4.1.1 Test

29、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 minutes between shorted leads and metal plate or metallic V-block which is in contact with the body of

30、 the Thermistor. The test voltage shall be raised from zero to the specified voltage as uniformly as possible, at a rate of approximately 100 volts per second, and lowered at the same rate after testing. 4.1.2 Mounting Method 4.1.2.1 Style TBX When the Thermistor bead is tested, it shall be spring l

31、oaded to a metal plate by a con- tact to the plate. 4.1.2.2 Style TBG When the Thermistor bead in a glass probe or glass rod is tested it shall be set in a metallic V-block. 4.2 Low and High Temperature Storage 4.2.1 Low Temperature Storage When the Thermistor is stored at a temperature of -60C for

32、24 hours, the zero-power -0“ c resistance of the Thermistor shall not have changed more than 0.5%. “Or latest revision thereof Copyright Electronic Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee=IHS Employees/1111111001, User=Wing, Bernie Not for Resal

33、e, 03/30/2007 03:09:27 MDTNo reproduction or networking permitted without license from IHS -,-,- - - EIA 337 67 3234600 0065690 2 . RS-337 Page 5 4.2.2 High Temperature Storage When the Thermistor is stored at the maximum operating temperature for 1 O0 hours, the zero- power resistance at 25C and 12

34、5C of the Thermistor shall not have changed more than 0.5%. 4.3 Thermal Shock The Thermistor shall be subjected to the following test condition. There shall be no evidence of mechanical damage at the conclusion of this test and the zero-power resistance shall not have changed more than 0.5%. +O“ c -

35、5C The Thermistor shall be preconditioned by being immersed in water at a temperature of 100C for a minimum of 15 seconds. Immediately upon conclusion of the preconditioning time, the Therm- The Thermistor shall remain at the -0C istor shall be transferred to water at a temperature of 0C low tempera

36、ture for a minimum of 5 seconds, and then be transferred to water at a temperature of 1 0 0 C + . The Thermistor shall remain at the high temperature for a minimum of 15 seconds. Transfer time between baths shall be less than 3 seconds. The duration of this test shall be 5 com- plete cycles. 4.4 Moi

37、sture Resistance When the Thermistor is tested in accordance with EIA Standard RS-186-B*, Method 2, moisture re- sistance (cycling), under no load and with no polarization voltage, the zero-power resistance at 25C and 125C shall not have changed more than 1%. O 4.5 Terminal Strength 4.5.1 Direct Loa

38、d When the Thermistor is subjected to the specified pull test along the axis of the leads, and the pull is gradually applied in a room ambient and held for a minimum period of 30 seconds, there shall be no evidence of physical damage and the zero-power resistance shall not have changed more than 1%.

39、 Style Pull Test TBG 450 grams maximum TBXO1 , TBX02 25 grams maximum TBX03, TBXO4 5 grams maximum TBXOS, TBXO 2 grams maximum 4.6 Effect of Soldering When the Thermistor is tested in accordance with EIA Standard RS-186-BX, Method 10, Effect of Soldering, using Severity 270“C, the zero-power resista

40、nce shall not have changed more than 0.5%. “Or latest revision there05 Copyright Electronic Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee=IHS Employees/1111111001, User=Wing, Bernie Not for Resale, 03/30/2007 03:09:27 MDTNo reproduction or networking

41、permitted without license from IHS -,-,- RS-337 Page 6 4.7 Shock E I A 337 67 3234600 0065691 4 When the Thermistor is tested in accordance with MIL-STD 202l3, Method 2093, Shock Medium Im- pact, the zero-power resistance shall not have changed more than 0.5%. 4.8 Vibration When the Thermistor is te

42、sted in accordance with MIL-STD 202l3, Method 204& Vibration, High Frequency, Test Condition Dy the zero-power resistance shall not have changed more than 0.5%. 4.9 Solderability I The solderability tests are not applicable to this specification, however, the manufacturer shall certify that the term

43、inals are solderable, if required. 4.10 Load Life -5C at the maximum When the Thermistor is operated for 1000+ 48 hours in an air ambient of 25“C+1 power rating in a circuit and mounting as outlined in the test method for Dissipation Constant in ac- cordance with paragraph 2, Definitions and Test Me

44、thods, the zero-power resistance at 25C and 125C shall not have changed more than 5.0%. 4.1 1 High Temperature Life After storage of Thermistors at their maximum operating temperature for 1000 2 48 hours, the zero- power resistance at 25C and 125C shall not have changed more than 2%. 4.12 Derating C

45、urves for High Temperature Operation STYLE TBG STYLE TBX PERCENT OF MAXIMUM POWER T TEX01 TEX02 80 TEX03 THROUGH TEX06 60 Il ! A 25 1 O0 200 AMBIENT TEMPERATURE IN “C T 25 1 O0 200 275 Copyright Electronic Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee

46、=IHS Employees/1111111001, User=Wing, Bernie Not for Resale, 03/30/2007 03:09:27 MDTNo reproduction or networking permitted without license from IHS -,-,- i E I A 337 67 m 3234b00 OObSbq2 b m RS-337 Page 7 4.13 Marking The Thermistor packages shall be marked with the following information: 4.13.1 Ty

47、pe Designation (Paragraph 1.2. I ) 4.13.2 Manufacturers name, trademark, or EIA source code GENERAL SPECIFICATION FOR THERMISTOR BEADS, GLASS COATED STYLE TBX PT-IR WIRE Style No. FIGURE 1 Fig. No. TBXO 1 TBX02 TBX03 TBX04 TBXOS TBXO6 D _c .TO D (max.) .o50 .O50 .O 18 .O 18 .O07 .O07 FIGURE 2 L Lead

48、 Lead Diameter Length (rnax.) (Min.) .O06 114 .O06 114 .O025 114 .O025 114 .O008 114 .O008 114 1. SCOPE 1.1 Scope Thjs specification covers the detail requirement for Style TBX glass coated bead Thermistors. 2. REQUIREMENTS 2.1 Requirements Requirements shall be in accordance with this EIA Standard and as specified herein. Copyright Electronic Components, Assemblies & Materials Association Provided by IHS under license with ECA Licensee=IHS Employees/1111111001, User=Wing, Ber

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