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2057-12-BT1LF

产品描述Gas Discharge Tubes - GDTs / Gas Plasma Arrestors 120volts AXIAL GDT 5.5X6mm DIA
产品类别无线/射频/通信    电信电路   
文件大小268KB,共2页
制造商Bourns
官网地址http://www.bourns.com
标准
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2057-12-BT1LF概述

Gas Discharge Tubes - GDTs / Gas Plasma Arrestors 120volts AXIAL GDT 5.5X6mm DIA

2057-12-BT1LF规格参数

参数名称属性值
是否Rohs认证符合
包装说明ROHS COMPLIANT, PACKAGE-2
Reach Compliance Codecompliant
Factory Lead Time11 weeks
JESD-30 代码O-XXSS-W2
功能数量1
端子数量2
最高工作温度90 °C
最低工作温度-40 °C
封装主体材料UNSPECIFIED
封装形状ROUND
封装形式SPECIAL SHAPE
峰值回流温度(摄氏度)NOT SPECIFIED
表面贴装NO
电信集成电路类型SURGE PROTECTION CIRCUIT
温度等级INDUSTRIAL
端子形式WIRE
端子位置UNSPECIFIED
处于峰值回流温度下的最长时间NOT SPECIFIED
Base Number Matches1

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PL
IA
NT
Features
Compact size: 5.5 mm diameter,
Applications
Telecommunications equipment
Industrial equipment/electronics
Consumer electronics
6 mm length
Low capacitance
Low leakage
RoHS compliant*
UL Recognized
*R
oH
S
CO
M
2057 Series
Light Duty 2-Electrode Miniature Gas Discharge Tube
Characteristics
Test Methods per ITU-T K.12 and IEC 61643-311.
Model No.
2057-07
75 V
< 700 V
< 800 V
2057-09
90 V
< 600 V
< 700 V
2057-12
120 V
< 600 V
< 700 V
Model No.
2057-25
250 V
< 600 V
< 700 V
2057-30
300 V
< 700 V
< 900 V
2057-35
350 V
< 700 V
< 900 V
2057-40
400 V
< 800 V
< 1000 V
2057-47
470 V
< 900 V
< 1100 V
2057-13
130 V
< 600 V
< 700 V
2057-15
150 V
< 600 V
< 700 V
2057-23
230 V
< 600 V
< 700 V
Characteristic
DC Sparkover ±20 % @ 100 V/s
Impulse Sparkover
(1)
100 V/µs
1000 V/µs
Characteristic
DC Sparkover ±20 % @ 100 V/s
Impulse Sparkover
(1)
100 V/µs
1000 V/µs
(1)
Impulse Sparkover voltage is defined as typical values of distribution.
Insulation Resistance (IR)
(2)
....................................50 / 100 / 250 Vdc ................................................. > 1 GΩ
Glow Voltage ...........................................................10 mA ..................................................................... ~ 70 V
Arc Voltage ..............................................................1 A .......................................................................... ~ 10 V
Glow-Arc Transition Current .................................................................................................................... < 1 A
Maximum Capacitance ............................................1 MHz ..................................................................... < 1 pF
Maximum Impulse Discharge Current .....................10,000 A, 8/20 µs .................................................. 1 operation
5,000 A, 8/20 µs ..................................................... 10 operations
Nominal Alternating Discharge Current ...................5 A, 50 Hz, 1 second .............................................. 1 operation
15 A, 9 cycles ........................................................ 1 operation
Impulse Life ............................................................100 A, 10/1000 µs .................................................. 300 operations
DC Holdover Voltage
(3)
........................................................................................................................... < 150 ms
Operating Temperature............................................................................................................................ -40 to +90 ºC
Storage Temperature ............................................................................................................................... -40 to +90 °C
Climatic Category (IEC 60068-1)............................................................................................................. 40 / 90 / 21
Notes:
• UL Recognized component, UL File E153537.
• At delivery AQL 0.65, level II DIN ISO 2859
(2)
DC Sparkover Voltage
75–90 V
120–400 V
470 V
Network Applied
DC Sparkover Voltage
75–145 V
230–250 V
300–470 V
DC Measuring Voltage
50 V
100 V
250 V
(3)
DC Holdover Voltage
52 V
80 V
150 V
*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.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.
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