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M1-201SA-TR (Ver. 1.1)
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DATA SHEET
Optical Graphic Extension Module-Fibres Detachable
Contents
 Description
 Features
 Applications
 Technical Specifications
 Functions
 Drawing
 Fiber Connection
 Environmental Reliability
 DVI Pin Description
 Schematic Diagram
 Test Report for M1-201-TR
Headquarter
Opticis Co., Ltd
# 501, ByuksanTechnopia, 434-6
Sangdaewon-Dong, Chungwon-Ku,
Sungnam City, Kyungki-Do, 463-120
South Korea
Tel: +82 (31) 737-8033~9
Fax: +82 (31) 707-8079
www.opticis.com
Copyright © 2011, All rights reserved by Opticis
06, Jul. 2011
-1-
M1-201SA-TR (Ver. 1.1)
www.opticis.com
Optical Graphic Extension Module
- Fibres Detachable Description
Optical graphic extension module consists of transmitter module and receiver module, each of which has 4
LC connectors and a 20-pins DVI–D plug. Users could decide extension length at their discretion by
choosing the length of fibre-optic cables with LC ferrules at the ends. It offers graphic TMDS signals to be
extensible up to the limits of modal bandwidth of selected multi-mode glass fibers, or, 50/125 um or
62.5/125um.
A transmitter, 4 VCSEL array inside and a receiver, 4 Pin-PDs array inside has a capability to transmit
WUXGA (1920X1200) graphic signals with 60Hz refresh rate. At such data bandwidth, this module can
extend up to 1,640 feet (500 meters) much over the limits of copper wire extension, without any distribution
amplifier or repeater.
The EDID in a display can be read and restored by just plugging it to the display. This self-EDID
programming feature makes the installation of M1-201SA more easy and flexile at any variable resolution
display systems.
The modules are constituted of three parts as follows;
-
One transmitter converting electrical to optical signals, model name: M1-201SA-T
-
One receiver converting optical to electrical signals, model name: M1-201SA-R
-
Two AC Adaptors to 110V-240V with DC 5V 1A outlet
Features

Extends all VESA resolution up to WUXGA (1920 X 1200) 60Hz DVI data up to 500 meters (1,640 feet)

Detachable feature with a pair of duplex LC multi-mode fibers

Offers self-EDID programming feature, detecting from a display and restoring to an EEPROM in the
transmitter just by plugging to the display without any physical DDC connection

The modules are compact enough to directly plug to graphic sources and displays by adopting DVIplugs

Includes two (2) +5V DC power adapters for the transmitter and receiver

Complies with Class 1 Laser eye safety in compliance with FDA/CDRH and IEC 60825-1

Certifies FCC and CE standards for EMI/RFI emission

Data security with negligible RFI/EMI emissions and loss of video quality due to no copper conductor
present
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M1-201SA-TR (Ver. 1.1)
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Applications

Digital FPDs, PDPs and projectors for medical appliances, aero, traffic control, factory, and bank

Digital FPDs and projectors in conference room and auditorium

Kiosk with digital FPDs showing full motion graphic displays from remote systems

PDP displays for information in public sites

LED signboards in streets and in stadiums
Technical Specifications
-
General Specifications
Parameter
Components
Electrical
Optical
Mechanical
Connect
-
Specifications
850nm Multi-mode VCSEL (Vertical Cavity
Surface Emitting Laser)
GaAs PIN-PD
TMDS Level (complying with DVI1.0)
Max. 1.65Gbps
Max. 309 ps
Max. 6ns
Min 10.5dB
38WX19HX72L
2 Duplex LC connectors
Laser Diodes in Tx Module
Photo Diodes in Rx Module
Input and Output Signals
Data Transfer Rate (Graphic Data)
Total Jitter at the end of Rx output
Skew inter-channels
Link Power Budget
Module dimension (mm)
Optical Connector
Electric Connector Type from Systems
and to Displays
Recommended Fiber
24 pin DVI-D plug
50/125 um Multi-mode Glass Fiber
Absolute Maximum Ratings
Parameter
Supply Voltage
Operating Temperature
Storage Temperature
Storage Relative Humidity
Symbol
VCC
Top
Ts
Hs
Minimum
- 0.3
0
- 30
0
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Maximum
+ 6.0
50
+ 70
85
Units
V
C
C
%RH
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M1-201SA-TR (Ver. 1.1)
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Operating Conditions
Transmitter module (E-to-O converter): M1-201SA-T
-
Power
Supply
TMDS
Optical Link
(Note3)
Parameter
Supply Voltage
Supply Current
Power Dissipation
Power Supply Rejection
(Note1)
Data Output Load
Graphic Supply Voltage
(Note2)
Single-Ended High Level
Input Voltage
Single-Ended Low Level
Input Voltage
Single-Ended Input Swing
Voltage
Output Optical Power
Wavelength
Spectral width in RMS
Relative Intensity of Noise
(Note4)
Extinction Ratio
Symbol
Vcc
ITCC
PTX
PSR
Rising/Falling Time
Jitter in p-p value (Note5)
Trise/Tfall
Tjitter
Minimum
4.5
160
0.72
RLD
GVCC
Typical
5.0
180
0.9
Maximum
5.5
200
1.1
Units
V
mA
W
50
mVp-p
50
Ω
+ 3.1
+ 3.3
+ 3.5
V
GVIH
GVCC 0.01
GVCC
GVCC + 0.01
V
GVIL
GVCC - 0.6
-
GVCC - 0.4
V
GVISWING
0.4
-
0.6
V
Po


-9.5
830
850
-3.6
860
0.85
dBm
nm
nm
RIN
-117
Ext
dB/Hz
9
dB
260
270
ps
ps
Note1. Tested with a 50mVp-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 regulated reference voltage for signal processing in modules
Note3. Measure signals at the end of 2 meter 50/125um MMGOF
Note4. Measure in 1GHz of frequency bandwidth
Note5. Use PPG (Pulse Pattern Generator) source with jitter 50ps
Receiver module (O-to-E converter): M1-201SA-R
Power
Supply
TMDS
Optical Link
(Note9)
Parameter
Supply Voltage
Supply Current
Power Dissipation
Power Supply Rejection
(Note6)
Data Input Load
Graphic Supply Voltage
(Note7)
Single-Ended Output Swing
Voltage (Note8)
Receiving Optical Power
Receiving Wavelength
Signal_Detect Good
Signal_Detect Fail
Symbol
Vcc
IRCC
PRX
PSR
Minimum
4.5
350
1.575
RLD
GVCC
Typical
5.0
360
1.8
Maximum
5.5
380
2.09
Units
V
mA
W
50
mVp-p
50
Ω
+ 3.1
+ 3.3
+ 3.5
V
GVISWING
0.2
-
0.4
V
Po

SDg
SDf
-20
830
850
-3.6
860
-17
-25
dBm
nm
dBm
dBm
Link Power Budget
Pbgt
10.5
dB
Total Jitter (note 10)
TRjitter
309
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ps
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M1-201SA-TR (Ver. 1.1)
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Note6. Tested with a 50mVp-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.
Note7. Graphic Supply Voltage is regulated reference voltage for signal processing in modules
Note8. TMDS outputs are coupled in AC
Note9. Measure signals at the end of 2 meter 50/125um MMGOF
Note10. It is measured as total jitters including Tx and Rx modules under maximum extension, 500 meters with UXGA 60Hz.
-
Recommended Specifications of Fibre-Optic Cables
Parameters
Conditions
Fibre Type
Modal Bandwidth
Fiber Cable Attenuation
Extension Distance
No. of Ferrules
Skew
Insertion Attenuation
Total Optical Attenuation
 = 850nm
 = 850nm
A pair of duplex LC* or 4 simplex LCs
In 330 ft (100 meter) extension
Specifications
50/125m Multi-mode Graded Index
Glass Fibre
Min. 400 MHz km
Max. 3.5dB/km
10 – 1650ft (500 meter)
4 ferrules
Max. 0.4ns
Max. 0.5dB
Max. 1.5dB
Note*: some plastic couplers to clamp two LC connectors could not fit in.
Functions
-
Self-EDID Function
The EDID in a display can be read and restored by just plugging it to the display. This self-EDID
programming feature makes the installation of M1-201SA more easy and flexile at any variable
resolution display systems.
-
Power Save Mode in Transmitter Module
The laser diodes are lit only when +5V voltage should be supplied into the 14-pin in DVI connectors.
The voltage passing through a regulator has LD drive circuit work.
-
Signal Detect Mode in Receiver Module
It offers squelch function blocking output signals when optical input power is lower than as specified in
a certain case, for instance, loosing optical connectors.
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M1-201SA-TR (Ver. 1.1)
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Drawing
Dimension [mm]
Note: The transmitter, M1-201SA-T and the receiver, M1-201SA-R have the same mechanical dimensions.
Fiber Connection
The diagram shows the connection of transmitter (Tx; plug in PCs) and receiver (Rx; plug in displays)
modules by using 2 dual LC patch cords fibers or 4 separate LC patch cord fibers.
Warning; two dual LC patch cords made by some manufacturers could not fit in together since width of their
plastic couplers are too wide to plug in M1-201-TR’s LC receptacles. We recommend it to be 12.40 mm
(not over 13.0mm).
Copyright © 2011, All rights reserved by Opticis
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M1-201SA-TR (Ver. 1.1)
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M1-201SA-TR (Ver. 1.1)
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M1-201SA-TR (Ver. 1.1)
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DVI Pin Description
Pin
1
2
3
4
5
6
7
8
9
10
11
12
13
Symbol
CH2CH2+
GND
CH4CH4+
DDC Clock
DDC Data
N.C.
CH1CH1+
GND
CH3CH3+
14
5V
15
GND
Hot plug
Detect
CH0CH0+
GND
CH5CH5+
GND
CLK+
CLK-
16
17
18
19
20
21
22
23
24
Functional Description
TMDS Data Signal Channel 2 Negative
TMDS Data Signal Channel 2 Positive
TMDS Data Signal Channel 2/4 Shield
TMDS Data Signal Channel 4 Negative
TMDS Data Signal Channel 4 Positive
DDC Clock line for DDC2B communication
DDC Data line for DDC2B communication
TMDS Data Signal Channel 1 Negative
TMDS Data Signal Channel 1 Positive
TMDS Data Signal Channel 1/3 Shield
TMDS Data Signal Channel 3 Negative
TMDS Data Signal Channel 3 Positive
Main Power Input for Transmitter from Host
5 V Output for Receiver to monitor
Ground
(Note10)
Signal is driven by monitor to enable the system to identify the presence of a monitor
TMDS Data Signal Channel 0 Negative
TMDS Data Signal Channel 0 Positive
TMDS Data Signal Channel 0/5 Shield
TMDS Data Signal Channel 5 Negative
TMDS Data Signal Channel 5 Positive
TMDS Clock Signal Shield
TMDS Clock Channel Positive
TMDS Clock Channel Negative
Note10) The AC-to-DC adapter for transmitter is option for Desk Top PC user.
But Note PC user has to use the AC-to-DC adapter because the power of Note PC is not enough to drive M1-201SA
transmitter.
Copyright © 2011, All rights reserved by Opticis
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M1-201SA-TR (Ver. 1.1)
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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 A Verification and CE Documentation)
Mechanical and Temperature & Humidity Test Data
Heading
Test
Conditions
Duration
Sample
Size
Failure
Remarks
Operating at each
Temperature
* 0 ~ 50 °C
(Interval: 10 °C)
30 Min
(Each
Temperature)
n =11
0
Note: Visual Test on the
Display
Pixel Error Rate
High Temperature
* TO = 70 °C
240 HR
n = 10
0
Note: Visual Test on the
Display
Low Temperature
* TS = -30 °C
96 HR
n=2
0
1. TS: Storage Temperature
High Temperature
* TS = 90 °C
96 HR
n=2
0
2. RH: Relative Humidity
High Humidity
High Temperature
* TS: 85 °C
* RH: 85%
96 HR
n=6
0
-
n=2
0
-
n=2
0
Operating
Test
Storage
Test
Mechanical
Shock
Mechanical
Test
Mechanical
Vibration
* Pulse: 11 ms
* Peak level: 30 g
* Shock pulse: 3
times/Axis
* Peak acceleration: 20 g
* Frequency: 20~2000 ㎐
* Sweep time: 30 Minutes
* 4 Times/Axis
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M1-201SA-TR (Ver. 1.1)
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EMC Test Data
1) EMI: Meet FCC class A (ICES-003) and CE class A
STANDARDS
EN 55 022 (CISPR22)
FCC; PART 15 SUBPART B
CONDITIONS
CE (Conducted Emission) &
RE (Radiated Emission)
Meet Class A
EN 61000-3-2 (IEC 61000-3-2)
Harmonics
Meet Class A
EN 61000-3-3 (IEC 61000-3-3)
Flickers
Meet Class A
2) EMS: Meet CE standards (EN 55024) and CISPR24 equivalents
STANDARDS
EN 61 000-4-2:1995
EN 61 000-4-3:1996
CONDITIONS
Electrostatic Discharge Immunity
(Air: 8kv, Contact: 4kv)
Radiated RF E-Field (80~1000 MHz)
3V/m (AM 80%, 1kHz)
Meet Criterion B
Meet Criterion A
EN 61 000-4-4:1995
Fast Transients (5kHz, 60Seconds)
Meet Criterion B
EN 61 000-4-5:1995
Surge Transients
Meet Criterion B
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 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 PINPhoto Diode. These components are designed and manufactured by Opticis.
Video Electronics Standards Association.
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