All stock codes associated to this product
VC081AAT, VC081A-AT, KVAVC081A, KVA-VC-081A, 4710469340314
Aten VC081 True 4K HDMI EDID Emulator
Overview
- Effectively learn the EDID from the HDMI display and relay it to the video
source
- HDMI 2.0 (3D, Deep Color, True 4K); HDCP 2.2 compliant
- Superior video quality up to True 4K (3840 x 2160 @ 60Hz 4:4:4)
- LED indicators to show device status
The VC081 True 4K HDMI EDID Emulator is designed to overcome EDID related
problems which can occur when used with AV or KVM extenders, switches, and
splitters. By learning the EDID from the HDMI display and relaying it to the
video source, the VC081 can effectively resolve video communication problems
that occur when EDID data between the HDMI video source and display are not
correctly synchronized. Moreover, after the displays EDID is learned, the VC081
can be used in place of a monitor to keep a PC or Server awake for remote access
via IP.
For product application, the VC081 is an ideal tool for wiring installation
in traffic stations and commercial centers.
Package Contents
- 1x VC081 True 4K HDMI EDID Emulator
- 1x User Instructions
Diagram
Specification
LEDs |
Power |
Power
status (Green x 1) |
Status |
Learning
(Blue x 1) |
Video
Input |
Interfaces |
1
x HDMI Type A Male (Black) |
Impedance |
100
|
Video
Output |
Interfaces |
1
x HDMI Type A Female (Black) |
Impedance |
100
|
Video |
Compliance |
HDMI
2.0 (3D, Deep Color) |
HDCP
2.2 Compatible |
Consumer
Electronic Control (CEC) |
EDID
Settings |
EDID
Mode: Default / Learning |
Connectors |
Power |
Bus-powered
(5 VDC from source device) |
Power
Consumption |
DC5V:0.1W:0.4BTU |
Environmental |
Operating
Temperature |
0
- 50 C |
Storage
Temperature |
-20
- 60 C |
Humidity |
0
- 80% RH, Non-Condensing |
Physical
Properties |
Housing |
Plastic
(ABS) |
Weight |
0.08
kg ( 0.18 lb ) |
Dimensions
(L x W x H) |
4.40
x 2.40 x 1.18 cm |
(1.73
x 0.94 x 0.46 in.) |
Carton
Lot |
20
pcs |
Note |
For
some of rack mount products, please note that the standard physical
dimensions of WxDxH are expressed using a LxWxH
format. |