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2037-09-BLF PDF预览

2037-09-BLF

更新时间: 2024-02-29 14:27:29
品牌 Logo 应用领域
伯恩斯 - BOURNS 电信集成电路电信电路电信保护电路
页数 文件大小 规格书
2页 323K
描述
2035/2037 Series - Miniature 2-Pole Gas Discharge Tube

2037-09-BLF 技术参数

是否Rohs认证: 符合生命周期:Active
Reach Compliance Code:compliantHTS代码:8542.39.00.01
Factory Lead Time:6 weeks风险等级:1.53
峰值回流温度(摄氏度):NOT SPECIFIED电信集成电路类型:SURGE PROTECTION CIRCUIT
处于峰值回流温度下的最长时间:NOT SPECIFIEDBase Number Matches:1

2037-09-BLF 数据手册

 浏览型号2037-09-BLF的Datasheet PDF文件第2页 
Features  
Applications  
5 mm diameter, 4 mm long (2035 series)  
5 mm diameter, 5 mm long (2037 series)  
UL Recognized  
Telecommunications  
Industrial electronics  
Commercial electronics  
Consumer electronics  
Automotive, aircraft, military electronics  
High surge current rating  
Stable breakdown throughout life  
RoHS compliant* versions available  
2035/2037 Series - Miniature 2-Pole Gas Discharge Tube  
Characteristics  
Test Methods per ITU-T (CCITT) K.12, IEEE C62.31  
Model No.  
Characteristic  
2035-2037-09 2035/2037-15 2035/2037-20 2035/2037-23 2035/2037-25 2035/2037-30  
DC Sparkover 1ꢀ ꢁ  
0ꢂ ꢇ  
1ꢀꢂ ꢇ  
2ꢂꢂ ꢇ  
23ꢂ ꢇ  
2ꢀꢂ ꢇ  
3ꢂꢂꢇ  
( 2ꢂ ꢁ ꢃor Modeꢄ 2ꢂ3ꢀ52ꢂ3ꢅ-ꢂ0) ꢆ 1ꢂꢂ ꢇ5s  
Impuꢄse Sparkover  
1ꢂꢂ ꢇ5µs  
3ꢂꢂ ꢇ  
ꢀꢀꢂ ꢇ  
3ꢀꢂ ꢇ  
ꢀꢀꢂ ꢇ  
42ꢀ ꢇ  
ꢀꢅꢀ ꢇ  
4ꢀꢂ ꢇ  
6ꢂꢂ ꢇ  
4ꢅꢀ ꢇ  
62ꢀ ꢇ  
ꢀ2ꢀ ꢇ  
6ꢀꢂ ꢇ  
1ꢂꢂꢂ ꢇ5µs  
Model No.  
Characteristic  
2035/2037-35 2035/2037-40 2035/2037-42 2035/2037-47 2035/2037-60  
DC Sparkover 1ꢀ ꢁ ꢆ 1ꢂꢂ ꢇ5s  
3ꢀꢂ ꢇ  
4ꢂꢂ ꢇ  
42ꢂ ꢇ  
4ꢅꢂ ꢇ  
6ꢂꢂ ꢇ  
Impuꢄse Sparkover  
1ꢂꢂ ꢇ5µs  
6ꢂꢂ ꢇ  
ꢅꢀꢂ ꢇ  
6ꢀꢂ ꢇ  
8ꢂꢂ ꢇ  
6ꢅꢀ ꢇ  
8ꢀꢂ ꢇ  
ꢅꢀꢂ ꢇ  
0ꢀꢂ ꢇ  
0ꢀꢂ ꢇ  
1ꢂꢂꢂ ꢇ5µs  
11ꢂꢂ ꢇ  
1ꢂ  
Insuꢄation Resistance (IR) ..................1ꢂꢂ ꢇ (ꢀꢂ ꢇ ꢃor Modeꢄs 2ꢂ3ꢀ52ꢂ3ꢅ-ꢂ0) .................................. >1ꢂ  
Ω
Gꢄow ꢇoꢄtage ......................................1ꢂ mA..................................................................................... ~ꢂ ꢇ  
Arc ꢇoꢄtage.........................................1 A .......................................................................................... ~1ꢂ ꢇ  
Gꢄow-Arc Transition Current............................................................................................................... <.ꢀ A  
Capacitance........................................1 MHz..................................................................................... <1 pF  
1
DC Hoꢄdover ꢇoꢄtage .......................13ꢀ ꢇ, (ꢀ2 ꢇ ꢃor Modeꢄs 2ꢂ3ꢀ52ꢂ3ꢅ-ꢂ0,.................................. <1ꢀꢂ ms  
8ꢂ ꢇ ꢃor Modeꢄs 2ꢂ3ꢀ52ꢂ3ꢅ-1ꢀ)  
2
Impuꢄse Discharge Current ................1ꢂꢂꢂꢂ A, 852ꢂ µs ................................................................... 1 operation min.  
ꢀꢂꢂꢂ A, 852ꢂ µs ...................................................................... >1ꢂ operations  
1ꢂꢂꢂ A, 1ꢂ53ꢀꢂ µs .................................................................. 1 operation  
1ꢂꢂ A, 1ꢂ51ꢂꢂꢂ µs ................................................................. >3ꢂꢂ operations  
1ꢂꢂ A, 1ꢂ5ꢅꢂꢂ µs ................................................................... >ꢂꢂ operations  
2
Aꢄternating Discharge Current ...........2ꢂ Arms, 11 cycꢄes ................................................................ 1 operation min.  
ꢀ Arms, 1 s ............................................................................. >1ꢂ operations  
Operating Temperature ...................................................................................................................... -ꢀꢀ to +8ꢀ °C  
Cꢄimatic Category (IEC 6ꢂꢂ68-1)........................................................................................................ 4ꢂ50ꢂ521  
Notes:  
• UL recognized component, UL Fiꢄe E1ꢀ3ꢀ3ꢅ.  
• Modeꢄ number marking on tube: xxx.  
8
• Sparkover ꢄimits aꢃter ꢄiꢃe 2ꢂ ꢁ (-2ꢀ ꢁ, +3ꢂ ꢁ ꢃor Modeꢄs 2ꢂ3ꢀ52ꢂ3ꢅ-ꢂ0 and 2ꢂ3ꢀ52ꢂ3ꢅ-6ꢂ) , IR>1ꢂ Ω.  
• Other DC sparkover ranges avaiꢄabꢄe on request.  
• At deꢄivery AQL ꢂ.6ꢀ Leveꢄ II, DIN ISO 28ꢀ0.  
1
2
Network appꢄied.  
DC Sparkover may exceed 2ꢂ ꢁ but wiꢄꢄ continue to protect without venting.  
*RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011.  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  

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