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2 points 8 ABS box type PLC optical splitter

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2 points 32 steel pipe type PLC micro splitter
Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
2 points 4 channels LC-UPC micro PLC optical splitter
Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
1 minute 32MINI micro PLC splitter
Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
1 minute 16 steel tube type micro PLC optical splitter
Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
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Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
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Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
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Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
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Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
1 minute 2 way SC/APC micro splitter
Details 白箭头 黑箭头
1 point 16 ABS box type PLC optical splitter
Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
2 points 8 ABS box type PLC optical splitter
Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
1 minute 4 ABS box type PLC optical splitter
Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
Details 白箭头 黑箭头
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2 points 8 ABS box type PLC optical splitter

Optical fiber splitter is a device used to split and combine light wave energy. It distributes the light energy transmitted in one optical fiber to two or more optical fibers according to a predetermined ratio, or combines the light energy transmitted in multiple optical fibers into one optical fiber. According to the principle, optical splitters can be divided into two types: fusion taper type and planar waveguide type. The fusion taper type product is formed by fusion splicing two or more optical fibers on the side; the planar waveguide type is a micro-optical component type product. Photolithography technology forms an optical waveguide on a medium or semiconductor substrate to realize the branch distribution function. The two types of optical splitting principles are similar. They achieve different branching quantities by changing the evanescent field coupling between the fibers (coupling degree, coupling length) and changing the fiber radius. Conversely, multiple optical signals can be combined into one signal. It's called a synthesizer.
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Product description
Parameters

1. Product features

● Low insertion loss

● Good repeatability

● Large return loss

● Good inter-plug performance

● Good temperature stability

● Easy to install

 

2. Product application

● Optical fiber communication system

● Optical fiber access network

● Optical fiber data transmission

● Optical CATV

● Local Area Network (LAN)

● Fiber to the home

 

3. performance parameters

 

Port configuration

1X2

1X4

1X8

1X16

1X32

1X64

Fiber type

G657.A or customer specified

Working wavelength(nm)

1260-1650

Insertion loss(dB)  (P/S)

Max

3.8

7.0/7.3

10.1/10.5

13.4/13.5

16.6/16.8

20.0/20.4

Channel uniformity(dB)

Max

0.6

0.6

0.8

1

1.5

2

Return loss(dB)

Minimum

55

55

55

55

55

55

Operating temperature (℃)

-40~85

Storage temperature(℃)

-40~85

Port configuration

2X2

2X4

2X8

2X16

2X32

2X64

Fiber type

G657.A or customer specified

Working wavelength(nm)

1260-1650

Insertion loss(dB)

Max

4

7.6

10.8

13.8

17.1

20.8

Channel uniformity(dB)

Max

0.6

0.7

1

1.2

1.5

2

Return loss(dB)

Minimum

55

55

55

55

55

55

Operating temperature (℃)

-40~85

Storage temperature(℃)

-40~85

Dimensions (length*width*height)(mm)

130*100*25

130*100*25

130*100*25

130*100*50

130*100*102

130*100*206

266*100*50

 

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Address: Xiaoxuzhuang Industrial Zone, Zhouguantun Town, Qing County, Cangzhou City, Hebei Province

Manager:+86-17331733677(Liu Xinli)

Production manager:+86-18303293456(Li Xing)

Sales Manager:+86-18733003099(Liu Wei)

Email:lwm628@163.com

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