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FPV100505G160SKB

产品描述Varistor, 16V, 0.05J, Surface Mount, CHIP, 0402
产品类别无源元件    电阻器   
文件大小1MB,共15页
制造商Fenghua (HK) Electronics Ltd
标准  
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FPV100505G160SKB概述

Varistor, 16V, 0.05J, Surface Mount, CHIP, 0402

FPV100505G160SKB规格参数

参数名称属性值
是否无铅不含铅
是否Rohs认证符合
Objectid1989244601
包装说明CHIP, 0402
Reach Compliance Codeunknown
YTEOL8.25
电路直流最大电压16 V
电路RMS最大电压11.3 V
最大能量吸收容量0.05 J
安装特点SURFACE MOUNT
端子数量2
最高工作温度125 °C
最低工作温度-55 °C
封装形状RECTANGULAR PACKAGE
包装方法BULK
电阻器类型VARISTOR
表面贴装YES
端子位置DUAL ENDED
端子形状WRAPAROUND
工作电压16 V

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GUANGDONG ZHAOQING YINGDA INDUCTOR CO。
,LTD
SMD COMPONENTS
Introduction fo FPV Series Multilayer
Chip Varistor
Multilayer Chip Varistors (MLV) are Transient Voltage Suppressors (TVS) which manufactured
from semiconducting ceramics by the highly advanced multilayer formation technologies, which can
offer rugged protection, excellent transient energy absorption and internal heat dissipation. The
devices are leadless chip form, eliminating lead inductance and guaranteeing a faster speed of
response time of less than 0.5ns, which makes them fast enough to ensure reliable protection against
ESD pulse and other specific transient events. These transient suppression devices are significantly
smaller footprints and lower profiles than traditional zener diodes or radial MOVs.
Section of the chip
Features 
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Multilayer Ceramic Construction Technology
Leadless 1005[0402], 1608[0603], 2012[0805], 3216[1206], 3225[1210], 4532[1812],
8063[3225] and 1080[4032] Chip Size
-55º to +125º Operating Temperature Range
C
C
Operating Voltage Range Vw(DC) =3.3V to 615V
Inherent Bi-directional Clamping
Suitable for ESD Protection
Very Low Leakage Current
Low Inductance, Fast Response (Response time<0.5ns)
Excellent Temperature Coefficient
Good Solderability (The electrode termination is selectable in plated and silver
/palladium/platinum.)
Information for Designer 
Voltage Dependent Characteristic
Transient Voltage Suppressors (Varistors) are voltage-dependent electrical resistors with symmetrical
V/I characteristic. Their resistance value decrease with increasing voltage, thus
short-circuiting”further rises in overvoltage.
49

 
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