A briefing with a remote team CR-03

Reference design; independent output and call validation required.

Discuss this option →

Choose a view, then a route, connection or device. Lines retain their original direction. Repeated device IDs refer to the same equipment across views.

CR-03 · Hybrid situation briefing

Share approved briefing content and speech with a remote team.

Video & data

Signal flow. Devices, connections and conditions follow the drawing.Open SVG ↗
CR-03 · Video & dataSame devices, connection identities and directions as the engineering model. Select a connection or device for its complete description.L01: SRC → PROC. 6 HDMI: C1 to C6L01 · 6 HDMIL02: SRC → DESK. 2 separate local display outputsL02L03: DESK → SRC. local keyboard and mouse USBL03L04: PROC → LED. O1 WALL; LED pixel map by designL04L05: PROC → SHARE. O2 SHARE; independent 1080p30 programmeL05 · independent SHAREL06: SHARE → UC. USB video: approved contentL06L07: UC → PROC. HDMI: C7 call return; separate from UC local UIL07 · call return; excluded from SHAREL08: CAM → CAP. SDIL08L09: CAP → UC. USB camera videoL09 · USBL10: UC ↔ SERVICE. IP: meeting media and signallingL106 x information PCs includes the two local technical PCs; silent feedsSRC6 information PCsSilent source feeds2 x local operator sets monitor + keyboard + mouse; no extra PCsDESK2 local desksNo additional PCs1 x compositor 7 capture channels / 2 independent output programmesPROC1 compositor7 inputs / 2 outputs1 x LED display package sender + receiving cards + surface + PSULED1 LED packageLocal WALL1 x HDMI-to-USB capture SHARE output only; excludes C7 call returnSHARE1 content captureIndependent SHARE1 x conferencing PC set own local monitor; camera + content + USB audioUC1 conferencing PCCamera + content1 x client conferencing service client network / WAN; outside AV management LANSERVICEConferencing serviceClient network / WAN1 x PTZ camera SDI video; IP preset controlCAM1 PTZ cameraSDI video1 x SDI-to-USB capture camera input; selected USB formatCAP1 camera captureSDI → USBVideo & data · connection IDs match the schedule · reference design, project validation required
Devices, connections & design conditions 10 connections
  • Six information feeds and one call return enter the compositor.
  • The independent SHARE programme excludes the call return.
  • Room microphones feed the call; call return feeds the room and AEC reference.
SRC
6 x information PCs includes the two local technical PCs; silent feeds
DESK
2 x local operator sets monitor + keyboard + mouse; no extra PCs
PROC
1 x compositor 7 capture channels / 2 independent output programmes
LED
1 x LED display package sender + receiving cards + surface + PSU
SHARE
1 x HDMI-to-USB capture SHARE output only; excludes C7 call return
UC
1 x conferencing PC set own local monitor; camera + content + USB audio
SERVICE
1 x client conferencing service client network / WAN; outside AV management LAN
CAM
1 x PTZ camera SDI video; IP preset control
CAP
1 x SDI-to-USB capture camera input; selected USB format
  1. SRC → PROC6 HDMI: C1 to C6
  2. SRC → DESK2 separate local display outputs
  3. DESK → SRClocal keyboard and mouse USB
  4. PROC → LEDO1 WALL; LED pixel map by design
  5. PROC → SHAREO2 SHARE; independent 1080p30 programme
  6. SHARE → UCUSB video: approved content
  7. UC → PROCHDMI: C7 call return; separate from UC local UI
  8. CAM → CAPSDI
  9. CAP → UCUSB camera video
  10. UC ↔ SERVICEIP: meeting media and signalling

Reference design, not a completed installation. Independent composition and camera + external content workflow require FAT. Power, mounts, rack, 2 PDU and cable/PSU sets are separate BOQ lines. No failover.

Audio & return paths

Signal flow. Devices, connections and conditions follow the drawing.Open SVG ↗
CR-03-audio · Audio & return pathsSame devices, connection identities and directions as the engineering model. Select a connection or device for its complete description.L11: MIC → DSP. 2 balanced mic inputsL11 · micsL12: DSP → UC. USB send: mics after AEC; no return audioL12 · AEC speech → callL13: UC → DSP. USB receive: call returnL13 · call → room / AEC ref.L14: DSP → AMP. mono line output: return mixL14L15: AMP → SPK. speaker circuit: matched loadL15L16: DSP → DSP. internal AEC reference: actual room return mixL16 · internal AEC reference2 x wired microphone zones initial layout; room coverage to be testedMIC2 microphone zonesCoverage to be tested1 x AEC audio processor mic send / call return / AEC referenceDSP1 AEC processorSend / return / ref.1 x conferencing PC set own local monitor; camera + content + USB audioUC1 conferencing PCSame PC as video1 x amplifier selected line and load typeAMP1 amplifierMatched line / load2 x room loudspeakers call return only; no local mic reinforcementSPK2 room speakersCall return onlyAudio & return paths · connection IDs match the schedule · reference design, project validation required
Devices, connections & design conditions 6 connections
  • Six information feeds and one call return enter the compositor.
  • The independent SHARE programme excludes the call return.
  • Room microphones feed the call; call return feeds the room and AEC reference.
UC
1 x conferencing PC set own local monitor; camera + content + USB audio
MIC
2 x wired microphone zones initial layout; room coverage to be tested
DSP
1 x AEC audio processor mic send / call return / AEC reference
AMP
1 x amplifier selected line and load type
SPK
2 x room loudspeakers call return only; no local mic reinforcement
  1. MIC → DSP2 balanced mic inputs
  2. DSP → UCUSB send: mics after AEC; no return audio
  3. UC → DSPUSB receive: call return
  4. DSP → AMPmono line output: return mix
  5. AMP → SPKspeaker circuit: matched load
  6. DSP → DSPinternal AEC reference: actual room return mix

Reference design, not a completed installation. Independent composition and camera + external content workflow require FAT. Power, mounts, rack, 2 PDU and cable/PSU sets are separate BOQ lines. No failover.

Control & status

Signal flow. Devices, connections and conditions follow the drawing.Open SVG ↗
CR-03 · Control & statusReference design. Six information sources and one call return feed a compositor. The local LED wall and outgoing programme are independently composed. The outgoing programme excludes the call return. Camera and programme use separate USB captures. DSP sends room microphones to the call and uses the incoming audio as AEC reference and room playback. Reference design, not a completed installation. Independent composition and camera + external content workflow require FAT. Power, mounts, rack, 2 PDU and cable/PSU sets are separate BOQ lines. No failover. Repeated device identifiers refer to the same equipment across views. Equipment illustrations are schematic; labels define quantities.{"sourceHash":"92ddf731337343df6365a8c47071894e541eae9bce1160441ccb43c4d731a606","view":"control","nodes":["PROC","LED","CAM","DSP","PANEL","NET","UPS"],"edges":["L17","L18","L19","L20","L21","L22"]}PIXEL COMMAND SOLUTIONS / CR-03 / CONTROL & STATUSControl & statusREFERENCE DESIGN · PROJECT VALIDATION REQUIREDPANEL ↔ NET: IP managementIP managementNET ↔ PROC: IP: layouts / input and output stateIP: layouts / input andoutput stateNET ↔ CAM: IP: presets / statusIP: presets / statusNET ↔ DSP: IP: audio control / statusIP: audio control /statusNET ↔ LED: IP: sender control / statusIP: sender control /statusUPS → NET: IP power statusIP power status1 x compositor 7 capture channels / 2 independent output programmesPROC1 x compositor1 x LED display package sender + receiving cards + surface + PSULED1 x LED displaypackage1 x PTZ camera SDI video; IP preset controlCAM1 x PTZ camera1 x AEC audio processor mic send / call return / AEC referenceDSP1 x AEC audioprocessor1 x layout / room panel share and mute state stay in UC app unless API is validatedPANEL1 x layout / roompanel1 x management switch 16 ports; 6 used + 1 serviceNET1 x management switch1 x UPS system agreed source, wall, control and meeting loadsUPS1 x UPS systemControl / status
Devices, connections & design conditions 6 connections
  • Six information feeds and one call return enter the compositor.
  • The independent SHARE programme excludes the call return.
  • Room microphones feed the call; call return feeds the room and AEC reference.
PROC
1 x compositor 7 capture channels / 2 independent output programmes
LED
1 x LED display package sender + receiving cards + surface + PSU
CAM
1 x PTZ camera SDI video; IP preset control
DSP
1 x AEC audio processor mic send / call return / AEC reference
PANEL
1 x layout / room panel share and mute state stay in UC app unless API is validated
NET
1 x management switch 16 ports; 6 used + 1 service
UPS
1 x UPS system agreed source, wall, control and meeting loads
  1. PANEL ↔ NETIP management
  2. NET ↔ PROCIP: layouts / input and output state
  3. NET ↔ CAMIP: presets / status
  4. NET ↔ DSPIP: audio control / status
  5. NET ↔ LEDIP: sender control / status
  6. UPS → NETIP power status

Reference design, not a completed installation. Independent composition and camera + external content workflow require FAT. Power, mounts, rack, 2 PDU and cable/PSU sets are separate BOQ lines. No failover.

Typical architecture · not a project drawing