Optical links based on multimode fiber and 850 nm VCSELs are critical elements in high performance computing systems, datacenters, and other short reach datacom networks. These applications are driving the demand for high bandwidth and it is anticipated that serial bit-rates up to 40 Gbit/s will be required for the next generation standards. For minimized power consumption, footprint, and cost, these high-speed links must function without active temperature control or cooling, and are consequently required to operate error-free (defined as a BE
Oxide-confined Vertical-cavity Surface-Emitting Lasers (VCSELs) at 850 nm have been widely deployed ...
The 850 nm GaAs-based VCSEL is already the dominating technology for transmitters in optical interco...
VCSELs operating at high bit rates over a wide temperature range are needed for the next generation ...
Optical links based on multimode fiber and 850 nm VCSELs are critical elements in high performance c...
We present the temperature dependence of the performance characteristics of our latest generation hi...
Error-free transmission is demonstrated at bit rates up to 57 Gbit/s back-to-back, up to 55 Gbit/s o...
Error-free transmission is demonstrated at bit rates up to 40 Gbit/s in a back-to-back configuration...
We report on speed enhancement of 850 nm oxide confined VCSELs by photon lifetime reduction and demo...
Oxide-confined VCSELs that are able to operate at modulation speeds of 10 Gbit/s at operating temper...
Error-free transmission over 1.1 km of OM4 multimode fibre is demonstrated at 20 Gbit/s bit rate usi...
Directly modulated VCSELs operating at 40Gb/s are required for next generation optical interconnect ...
Error-free transmission over 50 m of OM3 fiber at 32 Gbit/s is demonstrated at a bias current densit...
The 850-nm vertical-cavity surface-emitting laser (VCSEL) is a key component in today’s short reach
A new generation of high-speed oxide confined 850 nm vertical cavity surface-emitting lasers is pres...
We present results from our new generation of high performance 850 nm oxide confined vertical cavity...
Oxide-confined Vertical-cavity Surface-Emitting Lasers (VCSELs) at 850 nm have been widely deployed ...
The 850 nm GaAs-based VCSEL is already the dominating technology for transmitters in optical interco...
VCSELs operating at high bit rates over a wide temperature range are needed for the next generation ...
Optical links based on multimode fiber and 850 nm VCSELs are critical elements in high performance c...
We present the temperature dependence of the performance characteristics of our latest generation hi...
Error-free transmission is demonstrated at bit rates up to 57 Gbit/s back-to-back, up to 55 Gbit/s o...
Error-free transmission is demonstrated at bit rates up to 40 Gbit/s in a back-to-back configuration...
We report on speed enhancement of 850 nm oxide confined VCSELs by photon lifetime reduction and demo...
Oxide-confined VCSELs that are able to operate at modulation speeds of 10 Gbit/s at operating temper...
Error-free transmission over 1.1 km of OM4 multimode fibre is demonstrated at 20 Gbit/s bit rate usi...
Directly modulated VCSELs operating at 40Gb/s are required for next generation optical interconnect ...
Error-free transmission over 50 m of OM3 fiber at 32 Gbit/s is demonstrated at a bias current densit...
The 850-nm vertical-cavity surface-emitting laser (VCSEL) is a key component in today’s short reach
A new generation of high-speed oxide confined 850 nm vertical cavity surface-emitting lasers is pres...
We present results from our new generation of high performance 850 nm oxide confined vertical cavity...
Oxide-confined Vertical-cavity Surface-Emitting Lasers (VCSELs) at 850 nm have been widely deployed ...
The 850 nm GaAs-based VCSEL is already the dominating technology for transmitters in optical interco...
VCSELs operating at high bit rates over a wide temperature range are needed for the next generation ...