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2095-500-BT1LF

产品描述High Voltage 2-Electrode Gas Discharge Tube
文件大小234KB,共2页
制造商Bourns
官网地址http://www.bourns.com
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2095-500-BT1LF概述

High Voltage 2-Electrode Gas Discharge Tube

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PL
IA
NT
Features
Size: 8 mm diameter, 8 mm length
Axial leaded device
High voltage range up to 6 kV
High insulation resistance
RoHS compliant*
Applications
Industrial equipment/electronics
Telecommunications electronics
Consumer electronics
*R
oH
S
CO
M
UL Recognized
2095 Series
High Voltage 2-Electrode Gas Discharge Tube
Characteristics
Test Methods per ITU-T (CCITT) K.12 and IEC 61643-311.
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
Characteristic
DC Sparkover ±20 % @ 100 V/s
Impulse Sparkover
(1)
100 V/µs
1000 V/µs
(1)
2095-80
800 V
< 1100 V
< 1200 V
2095-100
1000 V
< 1300 V
< 1400 V
Model No.
2095-140
1400 V
< 2100 V
< 2200 V
Model No.
2095-300
3000 V
< 4100 V
< 4200 V
2095-160
1600 V
< 2300 V
< 2400 V
2095-200
2000 V
< 2700 V
< 2800 V
2095-250
2500 V
< 3500 V
< 3600 V
2095-270
2700 V
< 3600 V
< 3800 V
Model No.
2095-500
5000 V
< 6000 V
< 6400 V
2095-350
3500 V
< 4900 V
< 5000 V
2095-400
4000 V
< 5300 V
< 5500 V
2095-450
4500 V
< 5800 V
< 6000 V
2095-600
6000 V
< 7000 V
< 7800 V
Impulse Sparkover voltage is defined as typical values of distribution.
Insulation Resistance (IR)
(2)
............................ 250/500/1000 Vdc.............................................> 1 GΩ
Glow Voltage ................................................... 10 mA................................................................~ 60 V
Arc Voltage ...................................................... 1 A .....................................................................~ 15 V
Capacitance..................................................... 1 MHz ...............................................................< 1.5 pF
Impulse Discharge Current
2095-80 through 2095-250 ......................... 8,000 A, 8/20 µs ................................................ 1 operation
5,000 A, 8/20 µs ................................................ 10 operations
2095-270 through 2095-600 ....................... 5,000 A, 8/20 µs ................................................ 1 operation
3,000 A, 8/20 µs ................................................ 10 operations
Alternating Discharge Current
2095-80 through 2095-250 ......................... 2 Arms, 50 Hz, 1 second................................... 1 operation min.
10 Arms, 50 Hz, 9 cycles .................................. 1 operation min.
2095-270 through 2095-300 ....................... 3 Arms, 50 Hz, 1 second................................... 1 operation min.
5 Arms, 50 Hz, 9 cycles .................................... 1 operation min.
2095-350 through 2095-600
2.5 Arms, 50 Hz, 1 second................................ 1 operation min.
5 Arms, 50 Hz, 9 cycles .................................... 1 operation min.
Impulse Life ..................................................... 100 A, 10/1000 µs .............................................> 100 operations
(3)
Operating Temperature............................................................................................................... -30 to +90 °C
Storage Temperature .................................................................................................................. -40 to +115 °C
Climatic Category (IEC 60068-1)................................................................................................ 40 / 90 / 21
Notes:
• UL Recognized component: UL File E313168.
• At delivery AQL 0.65 Level II, DIN ISO 2859.
(2)
(3)
DC Breakdown
IR Measuring Voltage
800-1000 V
250 V
1400-2000 V
500 V
2500-6000 V
1000 V
Model 2095-270 and 2095-300 meet >300 operations at 100 A, 10/1000 µs.
*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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