DATA SHEET DVI - HDCP Extension Cable



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DATA SHEET DVI - HDCP Extension Cable Contents Description Features Absolute Maximum Ratings Recommended Operating Conditions Electrical Power Supply Characteristics Receiver Electrical Interface Specifications of fiber-optic cables Drawing of transmitter and receiver modules DVI Pin Description Reliability Test of Modules Terminology 05, Jul. 2011

Description Optical DVI - HDCP Extension Cable * Point-to-point optical fibre cable * The reality of gigabit high-speed digital graphic interconnections mandates products that maintain front-of-screen video quality. Optical technology extends the ability to transmit digital graphic data beyond the physical limits of copper wires by, i) providing pure signal integrity over long distances for the optimum visual experience, ii) no EMI/RFI transmission or reception, iii) light weight, rugged cabling and connectors, iv) very cost effective per foot/metre, v) low power consumption, and vi) plug and go installation ease no software requirements. The M1-100x consists of a transmitter and a receiver, connected by all fiber-optic distribution cables with male DVI-D connectors at each end. The Transmitter and Receiver modules are respectively implemented by Opticis designed and manufactured 850nm VCSEL and PIN-PD arrays. The M1-100x product makes DDC / HDCP interconnection over pure fibers as well as transmission of the Red, Green, Blue, and Clock TMDS graphic data over fibers. The cable can be any length up to 500m (326feet) for WUXGA (1,920x1,200) 60Hz data. An external power is required for the receiver module, while most video cards, at least 500mA of +5V voltage can provide DC power to the transmitter module. The shipping group is as follows; 1) One DVI / HDCP cable: M1-100x-yyy, where x = C, 0 (Zero), and y = length in metres. x = C : Designed to send DDC clocks not only from PC, but also from display, having capability generating DDC clocks for a special purpose (like DDCAB : Access Bus) 0 : Designed to send DDC clock in unidirectional from PC to display 2) Factory will stock standard lengths of 10m, 20m, 30m and 50m. 3) User Manual

Feature Supports all VESA resolutions up to WUXGA (1920x1200), at 60Hz refresh rate with 1 pixel/clock mode. Embeds pure fiber distribution cable with 8 strands Multimode Glass of fibers not only for the TMDS video interface and but also to support the DDC2B/HDCP, which offers perfect electrical isolation. Extends up to 500 meters (1,560 feet). Applicable of both powers from graphic cards and an external adaptor for the transmitter while powering the receiver from an external +5V adaptor. Compact end connector design easily allows direct connect to the host video card and display peripheral. No software to install; just plug and go. Data security with negligible RFI/EMI emissions Applications Digital display system integration for medical, military, aerospace, factory automation, and traffic control platforms. Digital FPD, PDP and projector installation in conference rooms, auditoriums and for kiosk systems LED signboards for large scale information display and stadiums Home Theatre Systems - 2 -

Absolute Maximum Ratings Parameter Symbol Minimum Maximum Units Storage Temperature T stg - 30 + 70 C Supply Voltage V CC - 0.3 + 6.0 V Transmitter Differential Input Voltage V d - 1 V Relative Humidity RH 0 85 % Lead Soldering Temperature & Time - - 260C, 10 sec Recommended Operating Conditions Parameter Symbol Minimum Typical Maximum Units Ambient Operating Temperature T A 0 + 50 C Data Output Load R LD 50 Ω Power Supply Rejection (Note1) PSR 50 mv p-p Supply Voltage V CC + 4.5 + 5.0 + 5.5 V Graphic Supply Voltage (Note2) GV CC + 3.0 + 3.3 + 3.6 V Note1. Tested with a 50mV p-p sinusoidal signal in the frequency range from 500 Hz to 500 MHz on the V CC supply with the recommended power supply filter in place. Typically less than a 0.25 db change in sensitivity is experienced. Note2. Graphic Supply Voltage is only for the Graphic Signal Interface, which is generated by regulator in the Transmitter and Receiver Electrical Power Supply Characteristics (T A = 0 C to +50 C, unless otherwise noted) Parameter Symbol Minimum Typical Maximum Units Supply Voltage V CC 4.5 5 5.5 V Supply Current TX I TCC - 180 200 ma RX I RCC - 180 200 ma Power Dissipation TX P TX 0.9 1.1 W RX P RX - 0.9 1.1 W - 3 -

Specifications of Fibre-Optic Cables Parameter Value Parameter Value Core Diameter 62.5±3.0um Cladding Diameter 125±2.0um Coating Diameter 245±15um Outside Diameter 5.5±0.2mm Proof Test Level > 100kpsi Drawing of transmitter and receiver modules Dimension [mm]

DVI Pin Description Pin Symbol Functional Description 1 CH2- TMDS Data Signal Channel 2 Negative 2 CH2+ TMDS Data Signal Channel 2 Positive 3 GND TMDS Data Signal Channel 2 Shield 4 5 6 DDC Clock DDC Clock line for DDC2B communication 7 DDC Data DDC Data line for DDC2B communication 8 N.C. 9 CH1- TMDS Data Signal Channel 1 Negative 10 CH1+ TMDS Data Signal Channel 1 Positive 11 GND TMDS Data Signal Channel 1 Shield 12 13 14 5 V 5 V Input for Transmitter from Host 5 V Output for Monitor from Receiver 15 GND Ground 16 Hot plug Detect 17 CH0- TMDS Data Signal Channel 0 Negative 18 CH0+ TMDS Data Signal Channel 0 Positive 19 GND TMDS Data Signal Channel 0 Shield 20 21 22 GND TMDS Clock Signal Shield 23 CLK+ TMDS Clock Channel Positive 24 CLK- TMDS Clock Channel Negative Note: Channels 3, 4 and 5 dual-link data signal pins are not used Signal is driven by monitor to enable the system to identify the presence of a monitor - 5 -

Reliability Test Opticis utilizes three types of test criteria for a reduction of variability and a continuous improvement of the process by its FEMA (Failure Mode and Effective Analysis) program. 1) Mechanical test (vibration, shock) 2) Temperature & humidity tests 3) EMC test (FCC class B and CE Verification) Mechanical and Temperature & Humidity Test Data Heading Test Conditions Duration Operating Test Storage Test Mechanical Test Operating at each Temperature (See Note) * -10 ~ 70 C (Interval: 10 C) 30 Min (Each Temperature) Sample Size Failure n =3 0 Remarks Note: Visual Test on the Display Low Temperature * T S = -30 C 96 HR n=3 0 1. TS: Storage Temperature High Temperature * T S = 80 C 96 HR n=3 0 2. RH: Relative Humidity High Humidity High Temperature Mechanical Shock Mechanical Vibration * T S: 85 C * RH: 85% * Pulse: 11 ms * Peak level: 30 g * Shock pulse: 3 times/axis * Peak acceleration: 20 g * Frequency: 20~2000 Hz * Sweep time: 30 Minutes * 4 Times/Axis 96 HR n=3 0 - n=2 0 - n=2 0-6 -

EMC Test Data 1) EMI: Meet FCC class B (ICES-003) and CE class B STANDARDS CONDITIONS EN 55 022 (CISPR22) CE (Conducted Emission) & FCC; PART 15 SUBPART B RE (Radiated Emission) Meet Class B EN 61000-3-2 (IEC 61000-3-2) Harmonics Meet Class B EN 61000-3-3 (IEC 61000-3-3) Flickers Meet Class B 2) EMS: Meet CE standards (EN 55024) and CISPR24 equivalents STANDARDS CONDITIONS EN 61 000-4-2:1995 Electrostatic Discharge Immunity (Air: 8kv, Contact: 4kv) Meet Criterion A EN 61 000-4-3:1996 Radiated RF E-Field (80~1000 MHz) 3V/m (AM 80%, 1kHz) Meet Criterion A EN 61 000-4-4:1995 Fast Transients (5kHz, 60Seconds) Meet Criterion A EN 61 000-4-5:1995 Surge Transients Meet Criterion A EN 61 000-4-6:1996 Conducted Susceptibility (CS) Radiated Susceptibility (RS) Meet Criterion A EN 61 000-4-11:1994 Voltage Dips, Interruption & Variation Meet Criterion A and C Terminology DDC DVI-D EDID EMI EMS HDCP PDP RFI TFT-LCD TMDS VCSEL VESA Digital Display Channel. Latest specification is DDC2B. Digital Visual Interface. Digital connection only no analog. Extended Display Identification Data. EDID parameters are sent over the DDC link. Electro Magnetic Interference. Electro Magnetic Susceptibility. High Definition Content Protection. These parameters are part of the 2002 High Definition Multimedia Interface (HDMI) specification for Consumer Electronics. Plasma Display Panel. Large HDTV panels up to 63 use this display technology. Radio Frequency Interference. Thin Film Transistor Liquid Crystal Display the technology of most computer display panels with VESA resolutions up to 1600x1200 pixels. Transmission Minimized Differential Signalling is the Silicon Image Inc. protocol for the digital signals. Vertical Cavity Surface Emitting Laser transmitter diode. The receiver diode is the PIN-Photo Diode. These components are designed and manufactured by Opticis. Video Electronics Standards Association.