L2W-323 Multimedia PRI Gateway Voice and Video Internetworking Gateway
Translates Between Circuit Switched and IP Networks
The RADVISION L2W-323 PRI Gateway enables small and medium size enterprises
to deploy real time voice and video communication over IP networks.This
highly reliable gateway,based on RISC architecture provides seamless
communication between IP and ISDN/PSTN using existing BRI lines.
Enabling Real Time V2oIP
The RADVISION L2W-323P PRI Gateway is a high- performance,cost
effective, scalable solution that can maximize the return on investment for
existing ISDN facilities.This fully self-contained "standalone "gateway
translates between H.323 and H.320 protocols and converts audio,video and
data from circuit-switched to IP (Internet Protocol)packets.Multiple
IP-based H.323 endpoints can share a single PRI T1/E1 facility when
communicating with ISDN-based end- points.The L2W-323P reduces communication
costs,simplifies network access control and administration,and utilizes
network resources more effectively.
L2W-323 Multimedia BRI Gateway
H.323/H.320 Internetworking Gateway for Voice,Video and Data Convergence
The RADVISION L2W-323 Gateway enables small and medium size enterprises to
deploy real time voice and video communication over IP networks.This highly
reliable gateway,based on RISC architecture provides seamless communication
between IP and ISDN/PSTN using existing BRI lines.
Modular and stackable design
Scalable
Robust and reliable
Remote diagnostics
Enabling Real Time V2oIP
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The L2W-323 is a fully self-contained "standalone " gateway that enables
real time voice and video communication over IP networks.It translates
between H.323 and H.320 protocols,converting multimedia information from
circuit switch to H.323 IP packets.The gateway supports voice-only calls as
well as H.320 video- conferencing sessions.Depending on the network
provisioning on the wide area,the L2W-323 enables users to exchange
audio,video and data in real time at 64kbps,128kbps,256kbps,384kbps and
768kbps,providing flexibility of video quality versus available bandwidth.