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2038-15-SM-RPLF PDF预览

2038-15-SM-RPLF

更新时间: 2024-02-02 11:15:45
品牌 Logo 应用领域
伯恩斯 - BOURNS 局域网二极管
页数 文件大小 规格书
3页 330K
描述
Trans Voltage Suppressor Diode, Unidirectional, 1 Element, Silicon, ROHS COMPLIANT, MINIATURE PACKAGE-2

2038-15-SM-RPLF 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:Active包装说明:O-LELF-R2
针数:2Reach Compliance Code:compliant
ECCN代码:EAR99HTS代码:8541.10.00.50
风险等级:1.71外壳连接:ISOLATED
配置:SINGLE二极管元件材料:SILICON
二极管类型:TRANS VOLTAGE SUPPRESSOR DIODEJESD-30 代码:O-LELF-R2
JESD-609代码:e3湿度敏感等级:1
元件数量:1端子数量:2
封装主体材料:GLASS封装形状:ROUND
封装形式:LONG FORM峰值回流温度(摄氏度):NOT SPECIFIED
极性:UNIDIRECTIONAL认证状态:Not Qualified
表面贴装:YES技术:AVALANCHE
端子面层:Tin (Sn)端子形式:WRAP AROUND
端子位置:END处于峰值回流温度下的最长时间:NOT SPECIFIED
Base Number Matches:1

2038-15-SM-RPLF 数据手册

 浏览型号2038-15-SM-RPLF的Datasheet PDF文件第2页浏览型号2038-15-SM-RPLF的Datasheet PDF文件第3页 
Features  
High surge current rating, low insertion loss  
Stable breakdown throughout life  
RoHS compliant* versions available  
Balanced Mini-TRIGARD™  
(5 mm diameter, 7.5 mm length)  
Ideal for board level protection of  
broadband circuits  
Symmetrical breakdown voltage (L-L, L-G)  
Leadless, surface mount for economical  
assembly  
2038 Series Miniature Symmetrical 3-Electrode Surface Mount Gas Discharge Tube  
Bourns offers a symmetrical surface mount (SM) 3-electrode GDT surge protection device. The industry-leading quality and features of the  
®
TM  
Bourns miniature-TRIGARD series GDT continue in the 2038 symmetrical version. The 2038 series is ideal for board level protection of  
high bandwidth applications such as xDSL, cable broadband and high speed Ethernet, due to its symmetrical turn on characteristics as well as  
high energy-handling capability, long and stable life performance and low capacitance of less than 1 pF. The 2038 series breakdown  
®
voltages are nearly equal line to line as well as line to ground. Bourns Gas Discharge Tubes (GDT) are designed to prevent damage from  
transient disturbances by acting as a “crowbar” in creating a virtual short-to-ground circuit during conduction. When an electrical surge  
exceeds the defined breakdown voltage level of the GDT, the gas becomes ionized and rapid conduction takes place. When the surge passes  
and the system voltage returns to normal levels, the GDT returns to its high-impedance (off) state.  
Characteristics  
Test Methods per ITU-T (CCITT) K.12 and IEEE C62.31  
Model No.  
Characteristic  
2038-15-SM  
2038-20-SM  
2038-23-SM  
2038-30-SM  
2038-35-SM  
DC Sparkover 25 ꢀ ꢁ 100 V/s  
150 V  
200 V  
230 V  
300 V  
350 V  
(NOTE 1)  
Typical Impulse Sparkover  
L1/L2 to Gnd  
L1/L2 to Gnd  
100V/μs  
350 V  
500 V  
425 V  
575 V  
450 V  
600 V  
500 V  
650 V  
600 V  
750 V  
1000V/μs  
Model No.  
Characteristic  
2038-42-SM  
2038-47-SM  
2038-60-SM  
2038-80-SM  
2038-110-SM  
DC Sparkover 25 ꢀ ꢁ 100 V/s  
420 V  
470 V  
600 V  
800 V  
1100 V  
(NOTE 1)  
Typical Impulse Sparkover  
L1/L2 to Gnd  
L1/L2 to Gnd  
100V/μs  
675 V  
850 V  
750 V  
950 V  
850 V  
1150 V  
1400 V  
1500 V  
1700 V  
1000V/μs  
1100 V  
Impulse Transverse Delay............................... 100 V/µs............................................................< 50 ns  
9
Insulation Resistance (IR) ............................... 100 V ................................................................> 10 Ω  
Glow Voltage ................................................... 10 mA................................................................~ 70 V  
Arc Voltage...................................................... 1 A.....................................................................~ 10 V  
Glow-Arc Transition Current.......................................................................................................< 0.5 A  
Capacitance..................................................... 1 MHz ...............................................................< 1 pF  
(NOTE 2)  
DC Holdover Voltage  
......................... 135 V (80 V for Model 2038-15) .......................< 150 ms  
(NOTE 3)  
Impulse Discharge Current.............................. 10000 A, 8/20 µs  
.................................1 operation min.  
5000 A, 8/20 µs.................................................> 10 operations  
200 A, 10/1000 µs.............................................> 300 operations  
200 A, 10/700 µs ..............................................> 500 operations  
10 A, 10/1000 µs ..............................................> 1500 operations  
(NOTE 3)  
Alternating Discharge Current......................... 10 Arms, 1 s  
........................................1 operation min.  
5 Arms, 1 s........................................................> 10 operations  
Operating Temperature............................................................................................................... -40 to +90 °C  
Climatic Category (IEC 60068-1)................................................................................................ 40/90/21  
Notes:  
• 2038-35 UL Recognized  
, file E153537, 2038-110 CSA Approved  
, file LR93265 (UL 1449).  
• The rated discharge current for Mini-TRIGARD™ GDTs is the total current equally divided between each line to ground.  
• Surface Mount (SM) parts may show a temporary increase in DCBD after the solder reflow process. Most devices will recover  
within 24 hours time. It should be noted that there is no quality defect nor change in protection levels during the temporary change  
in DCBD.  
8
• Sparkover limits after life 30 ꢀ. IR >10 Ω.  
• Operating characteristics per RUS PE-80 and Telcordia GR 1361 available on request.  
• At delivery AQL 0.65 Level II, DIN ISO 2859.  
1
Line to Line DC Sparkover tolerance typically less than +30 ꢀ at 100 V/s.  
2
Network applied.  
3
DC Sparkover may exceed 30 ꢀ 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.  
Customers should verify actual device performance in their specific applications.  

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