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2039-110-B-LF

Description
Surge Protection Circuit,
CategoryWireless rf/communication    Telecom circuit   
File Size683KB,2 Pages
ManufacturerBourns
Websitehttp://www.bourns.com
Environmental Compliance
Download Datasheet Parametric View All

2039-110-B-LF Overview

Surge Protection Circuit,

2039-110-B-LF Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid8146364512
Reach Compliance Codecompliant
Peak Reflow Temperature (Celsius)NOT SPECIFIED
Telecom integrated circuit typesGAS DISCHARGE TUBE SUPPRESSOR
Maximum time at peak reflow temperatureNOT SPECIFIED
*R
oH
VE S CO
AV R M
AI SIO PL
LA N IA
BL S NT
E
Features
n
Through-hole or cassette mount
n
Low capacitance and insertion loss
n
High surge current rating
n
Fast response to transients
n
Compact “mini” size
n
RoHS compliant* version available
M
PL
IA
NT
Bourns® GDTs are designed to prevent damage from transient disturbances within rated limits by acting as a “crowbar” to create a
short-to-ground circuit during conduction. When an electrical surge exceeds the defined breakdown voltage level of the GDT, the
device becomes ionized and rapid conduction takes place. When the surge passes and system voltage returns to normal levels, the
GDT returns to its high-impedance (off) state.
Characteristics
Ro VE LEA
HS RS D
C ION FRE
OM S E
PL AR
IA E
NT
*
Test Methods per ITU-T K.12, IEEE C62.31 and IEC 61643-311 GDT standards.
Characteristic
DC Sparkover ±20 % @ 100 V/s
Impulse Sparkover
(1)
@ 1000 V/µs
(1)
LE
AD
F
RE
E
Bourns now offers miniature through-hole 2-electrode GDT surge protectors with sparkover voltage up to 1100 V. At only 5 mm in
diameter, the 2039 Series is ideal for board level protection of high bandwidth applications such as xDSL, cable broadband and high
speed Ethernet. The 2039 Series features high energy-handling capability, long and stable life performance and low capacitance of
less than 1 pF.
*R
oH
S
CO
2039-xxx-XX Precision, Fast Responding, High Voltage Gas Discharge Tube
Model No.
2039-110
1100 V
1500 V
2039-80
800 V
1250 V
Impulse Sparkover voltage is defined as typical values of distribution.
Insulation Resistance (IR) ............................... 100 V ................................................................> 10
9
Arc Voltage ...................................................... 1 A .....................................................................~ 10 V
Glow-Arc Transition Current .......................................................................................................< 0.5 A
Capacitance..................................................... 1 MHz ...............................................................< 1 pF
DC Holdover Voltage
(2)
................................... 135 V ................................................................< 150 ms
Max. Single Discharge
(3)
................................. 5 kA ...................................................................> 1 operation
Impulse Discharge Current .............................. 2.5 kA, 8/20 µs
(3)
..............................................> 10 operations
100 A, 10/1000 µs .............................................> 100 operations
10 A, 10/1000 µs ..............................................> 1500 operations
Alternating Discharge Current ......................... 2.5 Arms, 1 s .....................................................> 10 operations
Operating and Storage Temperature .......................................................................................... -55 to +85 °C
Climatic Category (IEC 60068-1)................................................................................................ 40/90/21
Notes:
• UL Recognized
, file E313168 (UL 1449).
• Sparkover limits after life +30/-25 %, IR >10
8
Ω.
• At delivery AQL 0.65 Level II, DIN ISO 2859.
(2)
(3)
Network applied.
DC Sparkover may exceed +30/-25 % but will 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.
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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