2026-42C8F [BOURNS]

Surge Protection Circuit,;
2026-42C8F
型号: 2026-42C8F
厂家: BOURNS ELECTRONIC SOLUTIONS    BOURNS ELECTRONIC SOLUTIONS
描述:

Surge Protection Circuit,

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Features  
Applications  
Telecommunications  
Balanced TRIGARD®  
Approximately 8 mm diameter, 11 mm long Industrial electronics  
UL recognized  
Commercial electronics  
Custom configurations available  
High surge current rating  
Stable breakdown throughout life  
RoHS compliant* version available  
Consumer electronics  
Automotive, aircraft, military electronics  
2026 Series - 3-Pole Gas Discharge Tube  
Characteristics  
Test Methods per ITU-T (CCITT) K.12, IEEE C62.31, RUS PE-80, Telcordia GR 1361  
Model No.  
Characteristic  
2026-07  
2026-09  
2026-15  
2026-20  
2026-23  
2026-25  
2026-26  
1
DC Sparkover 20 ꢀ ꢁ 100 ꢂVs  
75 ꢂ  
90 ꢂ  
150 ꢂ  
200 ꢂ  
230 ꢂ  
250 ꢂ  
260ꢂ  
Impulse Sparkover  
100 ꢂVµs  
275 ꢂ  
700 ꢂ  
275 ꢂ  
600 ꢂ  
350 ꢂ  
575 ꢂ  
425 ꢂ  
625 ꢂ  
450 ꢂ  
650 ꢂ  
475 ꢂ  
700 ꢂ  
475 ꢂ  
700 ꢂ  
1000 ꢂVµs  
Model No.  
Characteristic  
2026-30  
2026-35  
2026-40  
2026-42  
2026-47  
2026-60  
DC Sparkover 20 ꢀ ꢁ 100 ꢂVs  
300 ꢂ  
350 ꢂ  
400 ꢂ  
420 ꢂ  
470 ꢂ  
600 ꢂ  
Impulse Sparkover  
100 ꢂVµs  
500 ꢂ  
775 ꢂ  
625 ꢂ  
875 ꢂ  
675 ꢂ  
925 ꢂ  
725 ꢂ  
1000 ꢂ  
800 ꢂ  
1100 ꢂ  
925 ꢂ  
1250 ꢂ  
1000 ꢂVµs  
Impulse Transverse Delay.............................................1000 ꢂVµs.................................................................< 75 ns  
10  
Insulation Resistance ...................................................100 ꢂ (50 ꢂ for Model 2026–07 & 2026-09).............> 10  
Glow ꢂoltage ................................................................10 mA.......................................................................~ 70 ꢂ  
Arc ꢂoltage ...................................................................1A.............................................................................~ 10 ꢂ  
Glow-Arc Transition Current...........................................................................................................................< 0.5 A  
Capacitance .................................................................1 MHz.......................................................................< 2 pF  
Ω
2
DC Holdover ꢂoltage .................................................>135 , (52 ꢂ for Model 2026-07 & 2026-09,...........< 150 ms  
80 ꢂ for Model 2026-15)  
3
Impulse Discharge Current...........................................40000 A, 8V20 µs .................................................... 1 operation minimum  
20000 A, 8V20 µs......................................................> 10 operations  
5000 A, 10V350 µs ................................................... 1 operation  
1000 A, 10V1000 µs .................................................> 400 operations  
3
Alternating Discharge Current......................................130 Arms, 11 cycles ............................................... 1 operation minimum  
20 Arms, 1 s.............................................................> 10 operations  
Operation and Storage Temperature.............................................................................................................. -40 to +90 °C  
Climatic Category (IEC 60068-1).................................................................................................................... 40V 90V 21  
Optional Switch-Grade Fail-short device available.  
Notes:  
• UL recognized component, UL File E153537.  
• Model number marking on tube: 26-xxx .  
• The rated discharge current for TRIGARD® Gas Discharge Tubes is the total current equally divided between each line to ground.  
8
• Sparkover limits after life 25 ꢀ, IR >10 Ω (-25 ꢀ,+30 ꢀ for Model 2026-07, 2026-09 and 2026-60).  
• Line to Line voltage is approximately 1.8 to 2 times the stated Line to Ground breakdown voltage.  
• At delivery AQL 0.65 Level II, DIN ISO 2859  
1
Tube meets BT requirement Type 14 AV1 (210-310 ꢂ).  
Network applied.  
DC Sparkover may exceed 25 ꢀ after discharge, but will continue to protect without venting.  
2
3
*RoHS Directive 2002/95/EC Jan 27, 2003 including Annex.  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  
2026 Series - 3-Pole Gas Discharge Tube  
Product Dimensions (additional lead form configurations available upon request)  
2026-XX-A  
2026-XX-C4  
FAIL-SHORT CONFIGURATION  
2026-XX-C2F SHOWN  
1.6  
7.8  
0.6  
8.1  
9.0  
7.5  
9.6  
1.0 DIA.  
11.7  
6.1  
6.1  
2026-XX-A1  
7.9  
2026-XX-C8  
11.2 REF.  
DIMENSIONS: MILLIMETERS  
UNITS WITH LEADS ARE BASED ON THE  
2026-XX-A1 BODY.  
7.5  
1.0 DIA.  
How to Order  
0.7 - 1.0  
2026 - nn - x n F LF  
1.0 DIA.  
2026-XX-C2  
Model Number  
Designator  
13.0  
MAX.  
Voltage (Divided by 10)  
2026-XX-C  
1.0 mm dia. lead wire  
07 = 75 V  
09 = 90 V  
15 = 150 V  
20 = 200 V  
23 = 230 V  
25 = 250 V  
26 = 260 V  
30 = 300 V  
35 = 350 V  
40 = 400 V  
42 = 420 V  
47 = 470 V  
60 = 600 V  
30  
LONG  
2 PLCS.  
15.4  
1.0 DIA.  
4.4  
Leads  
4.5  
A = None  
C = 1 mm  
4.4  
Lead Shape  
(See Product Dimension Drawings)  
1.0 DIA.  
7.5  
Fail-Short Option  
2026-XX-C3  
Blank = Standard Product  
F =  
With Fail-Short Mechanism  
Lead Free Option  
Blank =Standard Product  
LF = Lead Free/RoHS Compliant Product  
7.5  
1.0 DIA.  
4.75  
4.4  
4.75  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  
2026 Series - 3-Pole Gas Discharge Tube  
Switch-Grade Fail-short Device Shorting Curve 2026-XX-XF  
30.0  
20.0  
10.0  
5.0  
1.0  
0.5  
0.1  
1
10  
100  
1000  
Seconds  
ELTGS = Each Line to Ground Simultaneously  
NOTE: When using a GDT fail-short device, it is imperative that all components associated and  
connected to the GDT with failsafe be tested in their respective completely integrated environment  
(finished product) to assure desired operation.  
REV. 01/11  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  

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