参数资料
型号: MF-R016/600-A-2
厂商: Bourns Inc.
文件页数: 3/12页
文件大小: 0K
描述: FUSE PTC RESETTABLE
产品培训模块: Multifuse® Resettable fuses
ESD Protection Products
标准包装: 1
系列: MF-R/600
电流 - 维持(Ih): 160mA
电流 - 跳闸(It): 320mA
电流 - 最大: 3A
电压 - 最大: 60V
R最小/最大: 4.000 ~ 7.000 欧姆
跳闸时间: 7s
封装/外壳: 径向
包装: 标准包装
其它名称: MF-R016/600-A-2DKR
Multifuse? Products – How They Work
Crystalline
Polymer
Amorphous
Polymer
COLD
Conducting
Carbon Chains
HOT
Non-conducting
Carbon Chains
Resettable fuses are manufactured in the form of a conductive plastic, which is comprised of a non-
conductive crystalline polymer with highly conductive carbon black particles impregnated throughout
the crystal lattice. Because of the close proximity of the carbon black particles within the crystal lattice,
under normal conditions current is allowed to flow easily through the conductive plastic. However
under a fault condition, when there is an increase in current, the conductive plastic heats at the rate of
I2R. As the material continues to heat, it eventually reaches the phase transformation temperature, which
changes the crystal structure into an amorphous structure. Once the material has transformed into this
amorphous structure, the conductive particles become isolated and are unable to conduct current hence
the drastic change in material resistance. It is only when the current is removed that the material is
allowed to cool and return to its original crystal structure.
Multifuse? Products – How They Are Used
I=V/RMF
I=V/RMF
I
I RMF
RMF
I=V/RL
I=V/RL
VS
VS
+t °
+t °
RL
RL
Temperature Temperature
PTCResponse
PTC Response Characteristic Characteristic
It is the materials used in resettable fuses that allow
them to reset after a fault condition has been
removed. Resettable fuses exhibit a positive
temperature coefficient effect when heated. While
many materials exhibit a PTC effect when heated
(an increase in resistance in response to a positive
change in temperature), what makes the material
used in resettable fuses unique is the fact that the
increase in resistance changes exponentially rather
than in a linear manner.
TypicalCircuit
Typical Circuit Application Application
It is because of this transformation from a low
resistance state to a high resistance state that allows
the resettable fuse to protect loads. It is this
transition from the low resistance state to high
resistance state that is referred to as tripping. The
time it takes for a resettable fuse to trip is relatively
quick, depending on how high the fault current is
and it can be as quick as a fraction of a second.
Hence they are an excellent form of protection for
most applications where sensitive devices need
extra protection.
3
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