Amonics - 10G Receiver Module
Description
Amonics’ PR10G 10Gbit/s ac-coupled photo-receiver integrates a high speed pin diode and a GaAs preamplifier to provide high performance. Featuring high transimpedance coupled with a nonquantizing limiting buffer output, it provides high gain while limiting the maximum output swing, simplifying the interface to subsequent stages.The unit is light weight, compact and easy to use.
Amonics - 10G Receiver Module
Specifications |
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Operation Wavelength Range: | 1280nm-1580nm |
Sensitivity: | >-18dB |
Features
- AC Coupling
- High Transimpendance Coupling
- Compact in size
- Wide Frequency Bandwidth
- Broad Wavelength Bandwidth
- Good performance cost ratio
- Two year warranty
Applications
- SONET/SDH Systems
- CATV and 10G-Enet
- Transmitter/Receiver components
- Testing
- Optical Network System Bit Error
- Rate Testing
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
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Ships from:
China
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Sold by:
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On FindLight:
since 2014
Frequently Asked Questions
The Amonics PR10G 10Gbit/s ac-coupled photo-receiver is an instrument that integrates a high speed pin diode and a GaAs preamplifier to provide high performance.
The key features of the Amonics PR10G 10Gbit/s ac-coupled photo-receiver are AC coupling, high transimpedance coupling, compact size, wide frequency bandwidth, broad wavelength bandwidth, good performance cost ratio, and a two year warranty.
The applications of the Amonics PR10G 10Gbit/s ac-coupled photo-receiver include SONET/SDH systems, CATV and 10G-Enet, transmitter/receiver components, testing, and optical network system bit error rate testing.
The sensitivity of the Amonics PR10G 10Gbit/s ac-coupled photo-receiver is greater than or equal to -18dBm (-20dBm typ.) at 10-10 BER.
What is the maximum ac output voltage swing of the Amonics PR10G 10Gbit/s ac-coupled photo-receiver?
The maximum ac output voltage swing of the Amonics PR10G 10Gbit/s ac-coupled photo-receiver is 350mVp-p (typ.).