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1. GET's SM and MM Attenuators can be applied to adjust the power levels of signals in optical communications at the output of light sources, E/O converters and for testing the linearity or dynamic range of optical power meters.
2. GET Attenuators can also be used in optical amplifier systems to balance the gain acros....
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1. Low back reflection.
2. High power endurance.
3. Wavelength independent.
4. Low PDL.
5. Precise control of attenuation range.
6. Simple manipulation. 1. Attenuation level: 1 - 9dB ( ± 0.5dB), 10 - 20Db ( ± 5%).
2. Attenuation tolerance: ± 0.5dB ( 1 - 9dB): ± 5% ( 10 - 20dB).
3. Back reflection: <= 50d....
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SC short flangeless adapters & attenuators simplex & duplex.
1. Features:
(1) Low insertion loss.
(2) Low back reflection loss.
(3) Easy to handle.
(4) Environmental stable.
2. Applications:
(1) Telecommunications.
(2) Local area network.
(3) Fiber to the home.
(4) Fiber optic sensors.
(5) Testing instrument....
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The attenuators are built in with wavelength independent optical filters and feature high power endurance and low PDL. These products are suitable for high speed transmission. Application:
1. CATV system.
2. Fiber optical telecommunications.
3. LAN (local area network).
4. Bi-directional system. ....
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Features:
1. Wavelength independent
2. Low ripple.
3. Excellent environmental stability.
4. Design certified to more than 200mW continuous.
5. Power handling capacity with no degradation in performances.
6. Backreflection performance to < -55dB available for UPC and < -60dB available for APC.
7. Polarizat....
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1. Wavelength independent.
2. Low ripple.
3. Excellent environmental stability1.
4. Design certified to more than 200mW continuous.
5. Power handling capacity with no degradation in performances.
6. Backreflection performance to < -55dB available.
7. For UPC and < -60dB available for APC.
8. Polarization insens....
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1. Wavelength independent.
2. Low ripple.
3. Excellent environmental stability.
4. Design certified to more than 200mW continuous.
5. Power handling capacity with no degradation in performances.
6. Backreflection performance to < -55dB available.
7. For UPC and < -60dB available for APC.
8. Polarization insens....
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FC (male) / SC (female); FC (male) / ST (female); ST (male) /ST (female) adapters & attenuators.
1. Features:
(1) Low insertion loss.
(2) Low back reflection loss.
(3) Easy to handle.
(4) Environmental stable.
2. Applications:
(1) Telecommunications.
(2) Local area network.
(3) Fiber to the home.
(4) Fiber op....
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Male / female duplex combination adapters & attenuators: FC/ST, SC/ST, ST/ST, combination...etc. Male / female adapters & attenuators.
FEATURES:
1. Features:
(1) Low insertion loss.
(2) Low back reflection loss.
(3) Easy to handle.
(4) Environmental stable.
2. Applications:
(1) Telecommunications.
(2) Local ar....
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FC (male) / LC (female) simplex adapters & attenuators.
1. Features:
(1) Low insertion loss.
(2) Low back reflection loss.
(3) Easy to handle.
(4) Environmental stable.
2. Applications:
(1) Telecommunications.
(2) Local area network.
(3) Fiber to the home.
(4) Fiber optic sensors.
(5) Testing instruments.
(....
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Male / male combination simplex connectors & attenuators.
SC/FC, SC/ST, FC/ST, FC/LC, SC/LC, ST/LC male to male..etc.
1. Features:
(1) Low insertion loss.
(2) Low back reflection loss.
(3) Easy to handle.
(4) Environmental stable.
2. Applications:
(1) Telecommunications.
(2) Local area network.
(3) Fiber to t....
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Male combination to FC feamle duplex adapters & attenuators.
Features:
1. Low insertion loss.
2. Low backreflection loss.
3. Easy to handle.
4. Environmental stable.
Applications:
1. Telecommunications.
2. Local area network.
3. Fiber to the home.
4. Fiber optic sensors.
5. Testing instruments.
6. CATV.
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Features:
1. Low insertion loss.
2. Low backreflection loss.
3. Easy to handle.
4. Environmental stable.
Applications:
1. Telecommunications.
2. Local area network.
3. Fiber to the home.
4. Fiber optic sensors.
5. Testing instruments.
6. CATV. Adapter:
1. Insertion loss (dB): SM <= 0.3; MM: <= 0.3.
2. ....
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FC, SC, ST (male) to FC, SC, ST (female) simplex adapters & attenuators.
Features:
1. Low insertion loss.
2. Low backreflection loss.
3. Easy to handle.
4. Environmental stable.
Applications:
1. Telecommunications.
2. Local area network.
3. Fiber to the home.
4. Fiber optic sensors.
5. Testing instruments.
....
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FC, SC, ST combination to FC, SC, ST combination duplex adapters and attenuators.
Features:
1. Low insertion loss.
2. Low backreflection loss.
3. Easy to handle.
4. Environmental stable.
Applications:
1. Telecommunications.
2. Local area network.
3. Fiber to the home.
4. Fiber optic sensors.
5. Testing instr....
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SC (male) to LC (female) adapters & attenuators and plastic housing.
Features:
1. Low insertion loss.
2. Low backreflection loss.
3. Easy to handle.
4. Environmental stable.
Applications:
1. Telecommunications.
2. Local area network.
3. Fiber to the home.
4. Fiber optic sensors.
5. Testing instruments.
6. C....
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LoopBack adapters & attenuators.
1. Features:
(1) Low insertion loss.
(2) Low back reflection loss.
(3) Easy to handle.
(4) Environmental stable.
2. Applications:
(1) Telecommunications.
(2) Local area network.
(3) Fiber to the home.
(4) Fiber optic sensors.
(5) Testing instruments.
(6) CATV. 1. Adapter....
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Duplex FC, SC, ST, combination (male) / SC (female) adapters & Attenuators.
1. Features:
(1) Low insertion loss.
(2) Low back reflection loss.
(3) Easy to handle.
(4) Environmental stable.
2. Applications:
(1) Telecommunications.
(2) Local area network.
(3) Fiber to the home.
(4) Fiber optic sensors.
(5) Tes....
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ST male to FC female simplex adapter & attenuator.
Features:
1. Low insertion loss.
2. Low backreflection loss.
3. Easy to handle.
4. Environmental stable.
Applications:
1. Telecommunications.
2. Local area network.
3. Fiber to the home.
4. Fiber optic sensors.
5. Testing instruments.
6. CATV. Adapter:
....
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1. High back reflection.
2. High power endurance.
3. Wavelength independent.
4. Low PDL.
5. Precise control of attenuation range.
6. Simple manipulation. 1. Attenuation level: 1 - 9dB ( ± 0.5dB), 10 - 2dB ( ± 5%).
2. Attenuation tolerance: ± 0.5dB ( 1 - 9dB): ± 5% ( 10 - 20dB).
3. Back reflection: >= 50d....
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1. Low back reflection.
2. High power endurance.
3. Wavelength independent.
4. Low PDL.
5. Precise control of attenuation range.
6. Simple manipulation. 1. Attenuation level: 1 - 9dB ( ± 0.5dB), 10 - 20Db ( ± 5%).
2. Attenuation tolerance: ± 0.5dB ( 1 - 9dB): ± 5% ( 10 - 20dB).
3. Back reflection: <= 50d....
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1. Low back reflection.
2. High power endurance.
3. Wavelength independent.
4. Low PDL.
5. Precise control of attenuation range.
6. Simple manipulation. 1. Attenuation level: 1 - 9dB ( ± 0.5dB), 10 - 20Db ( ± 5%).
2. Attenuation tolerance: ± 0.5dB ( 1 - 9dB): ± 5% ( 10 - 20dB).
3. Back reflection: <= 50d....
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1. Low back reflection.
2. High power endurance.
3. Wavelength independent.
4. Low PDL.
5. Precise control of attenuation range.
6. Simple manipulation. 1. Attenuation level: 1 - 9dB ( ± 0.5dB), 10 - 20Db ( ± 5%).
2. Attenuation tolerance: ± 0.5dB ( 1 - 9dB): ± 5% ( 10 - 20dB).
3. Back reflection: <= 50d....
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1. Low insertion loss.
2. High return loss.
3. Wide range of attenuation value.
4. Low PDL.
5. Compact structure.
6. High resolution. 1. Operation wavelength: 1310 / 1550 nm.
2. Humidity: 90%.
3. Insertion loss: 0.7dB.
4. Return loss: 60dB.
5. Polarization related loss: 0.2dB.
6. Attenuation value: 0 ~ 30....
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1. Low insertion loss.
2. High return loss.
3. Wide range of attenuation value.
4. Low PDL.
5. Compact structure.
6. High resolution. 1. Operation wavelength: 1310 / 1550 nm.
2. Humidity: 90%.
3. Insertion loss: 0.7dB.
4. Return loss: 60dB.
5. Polarization related loss: 0.2dB.
6. Attenuation value: 0 ~ 30....
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1. Low insertion loss.
2. High return loss.
3. Wide range of attenuation value.
4. Low PDL.
5. Compact structure.
6. High resolution. 1. Operation wavelength: 1310 / 1550 / 1310 & 1550nm.
2. PDL: 0.1dB ( for 0 - 20dB), 0.3dB ( for 20 - 40dB).
3. Insertion loss: 0.3dB.
4. Return loss: 50dB.
5. Polarization ....
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1. Low back reflection.
2. High power endurance.
3. Wavelength independent.
4. Low PDL.
5. Precise control of attenuation range.
6. Simple manipulation. 1. Attenuation level: 1 - 9dB ( ± 0.5dB), 10 - 20Db ( ± 5%).
2. Attenuation tolerance: ± 0.5dB ( 1 - 9dB): ± 5% ( 10 - 20dB).
3. Back reflection: <= 50d....
Select
1. Low back reflection.
2. High power endurance.
3. Wavelength independent.
4. Low PDL.
5. Precise control of attenuation range.
6. Simple manipulation. 1. Attenuation level: 1 - 9dB ( ± 0.5dB), 10 - 20Db ( ± 5%).
2. Attenuation tolerance: ± 0.5dB ( 1 - 9dB): ± 5% ( 10 - 20dB).
3. Back reflection: <= 50d....
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1. Simple structure.
2. High return loss.
3. Max. bearing power (1W).
4. Low PDL.
5. Compact structure. 1. Attenuation quality: 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 15, 20, 25, 30, 40, 50, 60dB.
2. Attenuation precision: ± 0.3dB ( 1 - 5dB): ± 0.5dB ( 5 - 10dB), ± 10% ( > 10dB).
3. Return loss: PC > 40dB, UPC > 5....
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1. GET Attenuators can be applied to adjust the power levels of signals in optical communications at the output of light sources, E/O converters and for testing the linearity or dynamic range of optical power meters.
2. GET Attenuators can also be used in optical amplifier systems to balance the gain across the differ....