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CFO160/460 user manual

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1. cable connectors and the transceiver optical bores until you are ready to make a connection Save the dust plugs for future use Be sure to clean the optic surfaces of the fiber cable before you plug the cable into another module When using 2 fibre version SFP check the order of the Tx Rx ports SFP module s locking release points To plug in and unplug the SFP module follow these steps Remember to use personal grounding device to prevent ESD occur rences when installing SFP module To plug in the module 1 Do not remove the optical bore dust plugs Open the bale clasp on the SFP module by pressing the clasp downward until it is in a hori zontal position Then insert the SFP into the socket by pressing the SFP into the slot firmly with your thumb until you feel the connector latch into place 2 Verify that the SFP is seated and latched properly by trying to remove it without releasing the latch If the SFP can not be removed it is installed and seated properly If the SFP can be removed reinsert it and press harder with your thumb repeating if necessary until it is latched securely into the socket To unplug the module 1 Disconnect the network fibre optic cable from the SFP transceiver module connector immediately reinstall the dust plugs in the SFP transceiver module s optical bores and the fiber optic cable LC connectors 2 Pull the out and down to eject the SFP transceiver module from the socket connector If
2. 10 1550 nm 1310 1550 nm Single or duplex LC PC bidi 2 fibre model S bidi 1 fibre model M bidi 1 fibre model L CFO160 CFO460 1 composite video 4 composite video 13 88 MHz 8 bits 75 ohm 1 Vp p 1 5 Vp p 5 5 8 MHz 5 40 ns 2 1 58 dB typical unified weighted ITU T J 61 BNC female DC component 3 dB 3 bi directional bi state 2 wire EIA RS232C bi state 4 wire EIA RS422 tri state 2 wire half duplex EIA RS485 tri state 4 wire EIA RS485 Line termination selectable Line bias selectable Half duplex dwell time selectable 0 230 kbps 16 MHz oversampled push in terminal block Audio Number of channels Sampling frequency Sampling resolution Input impedance Output impedance Nominal level Clipping level Frequency response S N ratio Contact Closure Number of channels Input Output Data rate Ethernet Bridge Number of ports Port type Compliant General Supply voltage Current consumption max Dimensions Weight IP Housing Operating temperature Storage temperature Humidity Indicators LEDs Alarm EMC conformance Optical conformance Safety Other Notes Class 1M Laser product 2 bi directional unbalanced balanced 81 4 kHz 16 bits 600 10k ohm 10 ohm 0 dBm 20 dBm 0 02 20 kHz 70 dBqp selectable 3 dB ref 1 kHz CCIR weighted 3 2 bi directional dry contact open close max loop R 120 ohm relay max 30 V 1A switchi
3. HERNET BRIDGE connector Pin Signal Green blinking Link active and traffic detected No light Link down or disabled 2 E eee BP No light Half Duplex Ethernet bridge interface s indicator operation Left side view Ethernet Bridge connector s pinout SW1 SW2 Data mode Data mode selection selection DIP swithes are located on the bottom of device SW2 DIP switch position Sm DIP switch position LL Datattype 1 2 3 4 5 Ethemet 6 7 8 rsa of of of of of Autoneo off rs H r tom of of on Rss on on 100mD of on on rsss ot T on of on mews on on omo on on on notes _ of of i emner on H i H Sd oem of Sid Ethernet connection settings SW2 16 CFO160 460 user manual Technical Specifications Optical SFP plug in optics 2 km multimode 20 km singlemode 40 km singlemode Connector Video Number of channels Sampling frequency Sampling resolution Source and load impedance Input and output signal levels Input overload level Insertion gain Bandwidth CIL gain inequality CIL delay inequality Differential gain Differential phase S N ratio Connector Data Number of channels Data format RS232 RS422 RS485 2W RS485 4W Data termination 485 422 specific Data rate Sampling rate Connector CFO160 460 u see block diagram examples 1310 amp 1310 nm 13
4. Optical Transmitter amp Receiver One and four channel video link for uni directional video and bi directional audio data contact closure amp Ethernet transmission CFO160 video link CFO160 460 user manual Welcome and thank you for purchasing Teleste s CFO Products Introduction The CFO160 460 series is a basic building block for multi channel video transmission system providing uni directional transmission of 1 4 uncom pressed video channels with three bi directional data two audio 3 2 con tact closure and one Fast Ethernet signal over optical fibre PAL and NTSC video formats are supported to provide a transparent vid eo transmission With CFO160 460 models it is also possible to transmit three bi directional RS data channel e g for PTZ control All common data protocols are supported and are easily configurable by DIP switches Optical transmission is based on hot swappable SFP transceivers class 1M The high speed optics enable a full quality and a zero delay latency free video transmission Available SFP options are supporting 2 km trans mission over multimode fibre or 20 40 km operation over single mode fibre As with all CFO Platform products the units meet all standard EMC and environmental requirements All units are fully compatible with all CFO rack systems Stand alone options are available with the CMA module adapter and a separate mains adapter e 1 and 4 channel video multiplexer e One
5. User manual One and four channel video links CFO First Mile series consist of fibre optic modems which provide a high quality and lossless video transmission for variety of CCTV applications OPTICAL TRANSMITTER OPTICAL RECEIVER 2 LINK i gt i a in Le F I amp gt CRR460 OPTICAL RECEIVER CRT460 OPTICAL CFO160 1 ch video link for PTZ camera applications CFO460 4 channel video link for PTZ camera applications Video Networks CFO160 460 user manual 59300502 rev002 Contents Optical Transmitter Receiver TTT 3 INTOdUCION TTT 3 eI EE L E E E 3 Vide LINK Front Pane PETH 4 Frame TSTST S 0 a anata a EH d Video connections and indicator leds sse eee 4 RECEIVER alar m connectloO a A dls 4 T Ile Tene e A A ii 5 Oyo ares 1M La lt Ace EH a ESS EUR SENER eee 6 EINK late fer re ICO T 6 FIDE CONDECION TT 6 SFP tansoeWern ModE tana H a a A 7 Configuring Audio Channels T 8 AUdIO CONN eal TTT 8 Configuring Contact Closure Channels iia 9 Contact closure loop CCL COMME Clic a Ol a 9 Configuring VSA and LSA alar U 10 Video Source Ten VOSA T 10 GNK SOURCE Alan ESA a e dida 10 Configuring Data Chanel Suit 11 Data CONNECCION TTT 11 Data mode settings Receiver CRRT160 d00 see 12 DAOA aana dictadas 13 Ethernet Interact 16 Ethernet Bridge eaae nle 16 h LRT HIRA sO L Te nina tant 17 Block DIAQUAINS uta 18 Ree aT e TT 20 CFO160 460 user manual
6. and four CVBS PAL NTSC video channels e Alternative SFP optics for various optical needs e Standard alternatives 2 km MMF 20 km SMF and 40 km SMF e Video SNR 58 dB typical 8 bit video sampling e Data supports RS232 RS422 or RS485 e Uncompressed zero delay digital transmission e Fast Ethernet Bridge full 100 throughput e Multiple Contact Closure channels e Dual Audio e Common card units for rackmount or stand alone installations e Compatible with all CFO installation systems e EMC and environmental conformance Video Link Front Panel An example view for CRT460 optical transmitter same information applies respectively to receiver unit CRR460 1 Locking screw 4 pcs 2 AUDIO connector push in terminal block 5 pin 3 Slot for SFP optical tranceiver and link status led 4 Video input BNC female and video indicator led 5 CCL connector push in terminal block 5 pin 6 DATA connector push in terminal block 5 pin 7 ETHERNET BRIDGE connector RJ 45 8 Handle with unit information CAUTION CFO160 460 OPTICAL UNITS USES CLASS 1M LASER DIODE DO NOT STARE INTO BEAM OR VIEW DIRECTLY WITH OPTI CAL INSTRUMENTS APPLICABLE STANDARD 1EC60825 1 2001 Frame installation The CFO unit is to be pushed along the guide rails into the installation frame e g CSR216 or 316 series and secured with the four locking screws The unit can be freely positioned in any slot in the frame Alarm card slot
7. ata mode selection selection OOO DIP swithes are located on the bottom of device CFO160 460 user manual 9 Configuring VSA and LSA alarms mne 1 oz os ra 8 NS 7 MAA of of off vsA oom LBK Rsas5s 2aw II a Rs4s5 aw IA S linebias f mn RR RR RR RR RE nolinebias ff termination on S e S S S notem f oof po o oo VSA LSA settings SW1 Video Source Alarm VSA The CCL output channel can be alternatively configured for Video Source Alarm VSA monitoring Instead of normal CCL use the CCL output can be used to provide a VSA signal if a loss of video signal occurs When VSA mode is enabled at transmitter and if video signal is missing e g a camera malfunction link otherwise operates normally the CCL output pins are closed Using VSA at just one end of the link enables the opposite path to be used for standard CCL operation simplex In case when VSA is enabled both at transmitter and receiver the CCL channel is no longer available for any other use When VSA is disabled the CCL channel is available for normal use in both directions The VSA mode can be set on off via management connection Note Enabling VSA on any channel overrides normal contact closure functionality Link Source Alarm LSA The CCL output channel can be alternatively configured for Link Source Alarm LSA monitoring Instead of normal CCL use the CCL output can be used to provide a LSA signal if a
8. ch periodically polls all connected Slave units e g CCTV camera receiver units The Slave unit that has been addressed then sends the appropriate reply packet back to the Master Slave units have no means of initiating communication without the risk of a collision so they need to be assigned the right to transmit by the Master by polling RS485 exists in two versions 2 wire and 4 wire CFO160 460 user manual 13 14 Master CRR160 460 CRT160 460 Slave Tx Rx Tx Rx Fibre GND GND RS485 2w data connection diagram A 2 wire RS485 network is implemented as a half duplex system using single twisted pair cabling This means that data can flow in both directions but only in one direction at a time As the fibre links not synchronised with master slave devices trasmit receive turn time aka dwelltime needs to be manually selected See the table on left for selectable predefined turn time values Master CRR160 460 CRT160 460 Slave GND GND RS422 I RS485 4w data connection diagram A 4 wire RS485 network can be implemented as a full duplex system using two twisted pair buses where each bus is used for each direction of transmission In full duplex mode the turn time value is ignored CFO160 460 user manus al CFO160 460 user manual Data termination and biasing Termination is used to match impedance of a node to the impedance of the transmission line being used When impedance are
9. excluded The empty positions in the frame should be blanked off with cover plates The supply voltage is to be provided by a CPS384 or CPS390 power supply unit Video connections and indicator leds The impedance of the video connection BNC female is 75 O The nominal input output level is 1 Vpp Video connection is equipped with the dual colour VIDEO led on the front panel See table below for explanation of VIDEO indicator led s lights Colour Status Green A signal is present and in nominal level Yellow No video signal or the video level is too low VIDEO indicator operation Receiver alarm connection Alarm at the rear connector of the unit is an open collector output with the capability of 30 V 10 mA switching alarm status low imp i No synchronisation achieved at Link status alarm a optical input Refer to documentation of CCU001 002 rack alarm cards CFO160 460 user manual Me oe CMA025 module adapter Power supply connection For limited space installation the CMA module adapters can be rear mounted by means of an optional installation kit CIKOO2 CMA025 module adapter with CIK002 rear mounting kit CFO160 460 user manual Stand alone installation The units can be installed for stand alone use by using a CMA025 installation for 10HP wide CFO series units module adapters To insert a CFO card unit into the module adapter push the unit along the guide rail
10. ime for RS485 data for RS485 data CRR160 460 DIP switches are located on the top of device 12 CFO160 460 user manual CFO160 460 top view UU SW4 Hogg ooog CRR160 460 DIP switches are located on the top of device SW4 Data 1 and SW5 Data 2 DIP switch position Dwell time settings for RS485 2w data Txdta Rxdata Data channel mode Dwelltimems 1 2 3 4 sf 6 7 e 04 on off on on on off on off RS485 2w IC of of on on of of of of 2 pon Data mode selection and RS485 2w dwelltime settings Data 1 SW4 and Data 2 SW5 Note The data mode is only selected in the receiver Data formats RS232 is an unbalanced data format i e the signal wire working against a reference ground Simplex RS232 requires two connections signal and ground Full duplex RS232 requires three connections signal TX signal RX and ground RS422 is a balanced data format Simplex RS422 requires three data connections and ground Full duplex RS422 requires five data connec tions in in out out and ground RS485 is used for full multipoint communications where multiple trans ceiver devices may be connected to a single twisted pair signal cable Most RS485 systems use a Master Slave architecture where each Slave unit has a unique address and responds only to packets addressed to that unit Packets are generated by the Master e g CCTV controller keyboard whi
11. loss of optic link occurs When LSA mode is enabled at transmitter and if optical communication is disturbed seriously link fail alarm due to e g a cable break or dam age a laser fail etc the CCL output pins are closed Using LSA at just one end of the link enables the opposite path to be used for standard CCL operation simplex In case when LSA is enabled both at trans mitter and receiver the CCL channel is no longer available for any other use When LSA is disabled the CCL channel is available for normal use in both directions For a practical use the LSA CCL operation can be also used to control an optical switch in fibre redundant applications Note Enabling LSA overrides normal contact closure and VSA functionality 10 CFO160 460 user manual Configuring Data Channels Data connection The CFO160 460 link provides three independent bi directional data channels CRT lt gt CRR The connector type is a push in terminal block Available data modes for data channel 1 and 2 are RS232 RS422 RS485 2w and RS485 4w Data channel 3 is fixed for RS232 mode only See table below how to connect the desired data type The desired data mode settings can be set by the means of DIP switches The default factory setting is RS232 DATA comnector Pin Signal RS232 RS422 RS485 2w RS485 4w 1 In in out In 2 Data 1 in in in out in 3 out out out 4 out out 5 Data 3 in 6 in in out in 7 in in in
12. mismatched the transmitted signal is not completely absorbed by the load and a portion is reflected back into the transmission line If the source trans mission line and load impedance are equal these reflections are elimi nated Biasing gt the lines will be biased to known voltages and nodes will not interpret the noise from undriven lines as actual data without biasing resistors the data lines float in such a way that electrical noise sensitiv ity is greatest when all device stations are silent or unpowered RS485 Line Line 2 wire Termination Biasing Input termination options RS232 None RS422 ne term an failsafe Line termination 120 Q No term with failsafe RS485 2w Line bias forced 680 Q line biasing Line termination 120 Q No term with failsafe RS485 4w Line bias forced 680 Q line biasing Line termination 120 Q Data input termination options for data channels Data termination connects 120 Q between pins Hard line bias connects 680 Q input to 5V and GND input 15 Ethernet Interface Led 1 Ethernet Bridge Connection status The ETHERNET BRIDGE interface provides one Ethernet 10 100Base Tx port for any IP device requiring Ethernet connectivity The connector type Led 2 is a RJ 45 female At 100Mbps operation the supported throughput is mode 100 with all standard frame sizes Default port configuration is with autonegotion feature enabled tea eoo ses gt e 1 ET
13. n and to ensure quality connec tions between fiber optic devices it is important that every fiber connector be inspected and cleaned prior to mating Connectors should always be cleaned with professional cleaning equipment and accessories for fibre optics The optical connectors on the equipment should always be protected with dustcaps when there is no fibre inserted Optical connection meets class 1M laser safety requirements of IEC Any contamination in the fibre connection can cause failure of the 60825 1 2001 and US department of component or failure of the whole system Even microscopic dust health services 21 CFR 1040 10 and particles can cause a variety of problems for optical connections 1040 11 1990 when operated within A particle that partially or completely blocks the core generates the specified temperature power strong back reflections which can cause instability in the laser supply and duty cycle ranges system Dust particles trapped between two fibre faces can scratch the glass surfaces Even if a particle is only situated on the cladding or the edge of the endface it can cause an air gap or misalignment between the fibre cores which significantly degrades the optical signal 6 CFO160 460 user manual CFO160 460 user manual SFP transceiver module If your transmission requirements change simply unplug the existing SFP module and plug in the new module Keep the protective dust plugs on the unplugged fibre optic
14. ng 5 Hz max 1 bi directional 10 100Base TX IEEE802 3 IEEE802 3U configurable 10 5 14 VDC regulated 450 mA operational with SFP 3U x 10HP x 190 mm 0 5 kg 20 dry indoor required 34 74 C 40 80 C 0 90 non condensing Video presence Link status Ethernet bridge Link status B alarm open collector Video source B alarm open collector EN61000 6 3 EN50130 4 EN 60825 1 FDA 21 CFR 1040 21 and 1040 11 EN 60951 1 RoHS Typical values unless otherwise stated 17 Block Diagrams video x 1 video x 1 a multimode fibres A audio x 2 lt P audio x 2 BENE CRT160S CRR160S x gt CC X 3 lt gt eth x 1 up to 20 km AE up to 2 km video x 1 video x 1 ie x 3 singlemode fibre a x al 2 lt gt audio x ado lt 1 CRT160M sre CRR160M SS CC X 3 lt a eth x 1 video x 1 data x 3 singlemode fibre audio x 2 up to 40 km ata x3 CRT16OL ser CRRIGOL Ker video x 4 data x 3 CRT460S CRR460S sudo CC X 3 eth x 1 gt lt gt eth x 1 video x 4 data x 3 singlemode fibre audox2 4 gt CRT460M lare lern CRR460M CC X 2 up to 20 km eth x 1 gt multimode fibres up to 2 km video x 4 video x 4 data x 3 singlemode fibre Ee N 7 di 2 lt gt ado 25 CRT460L srrje isr CRR460L KS Cex 2 up to 40 km CGS eth x 1 lt gt eth x 1 18 CFO160 460 user manual Notes CFO160 460 user manual 19 TELESTE Legal declarations Cop
15. op of device Audio a a aeret om omo A balanced nara on off on ror fon for zans apor pa aaeeea a on of on 2unbalanced off on off Audio 1 and Audio 2 connection settings SW3 1 unbalanced CFO160 460 user manual Configuring Contact Closure Channels Contact closure loop CCL connection D S ged The link provides three contact closure channels in direction of TX to RX and two contact closure channels in direction of RX to TX The CCL input is a normal short circuit on off dry contact signal between connector s contact pins The CCL output is a normal relay on off sig nal between connector s contact pins as shown in the table below maximum switching 30V 0 6A The connector type is a push in terminal block TX 3 x CC in 2 x CC out RX 2 x CC in 3 x CC out CC2 out CC1 out yen CC1 out VSA CCL connector CC1 out CC1 out CC2 out LSA CC2 out CC2 out es on Tang CCL connector s pinout Note Enabling VSA on channel 1 overrides normal contact closure The CCL output channel can be alternatively configured for VSA functionality video source alarm or LSA link source alarm usage The desired contact closure outputs 1 and 2 connection must be confirm by Note Enabling LSA overrides normal the means of SW1 DIP switches contact closure and VSA functionality Left side view SW1 SW2 Data mode D
16. out in Data 2 8 out out out 9 out out 10 Data 3 out Data connector s pinout and supported data types Left side view SW1 SW2 Data mode Data mode selection selection AA LAA DIP switches for connection type settings are located on the bottom of device CFO160 460 user manual 11 SW1 DIP switch position reposan CO A E O CI RS232 off off off off off vsa on ae REE RS485 2w J om a Rsass aw ot ot FP pclinebias o f o PP nolinebias off off P RR RR RR RR termination on ER RR RR BER RR notem oof poo RE Data 2 connection settings SW1 SW2 DIP switch position Sa IP switch position S Datattype 1 2 3 4 5 Ethemet 6 7 8 rs i o tom of on IEEE on on 100mD of on on IEC HT of smd on of on mews on om aa on on on Comes of of maana on id S S P noterm of sd H H Data 1 connection settings SW2 FUT Data mode settings Receiver CRR160 460 ON 1 The desired data mode settings including dwelltime settings for RS485 2w can be set by the means of DIP switches The default factory setting is RS485 2w dwelltime 75 us no line bias and no term CRR160 460 DIP switches SW1 and SW2 for data mode selection Note These settings are done only at the video receiver Right side view Audio mode selection SW4 SW5 Dwell time Dwell t
17. s into module until the unit is firmly attached Secure the plug in unit with the upper and lower locking screws The stand alone unit should be mounted to a vertical surface The 12V DC supply voltage is supplied by the means of a separate mains adapter with a regulated output e g CPS251 Please refer to separate documention for module adapters and mains adapters By using an optional mounting kit item code CIKOO2 a rear side mounting is enabled below CIK002 rear mounting kit dimensions Optical Interface Link indicator led The status of optical link is indicated by a led next to the SFP slot e A Optical signal level is adequate and syncronization on link reen i i Gree level is achieved Yellow Optical signal is missing or input level is too low LINK indicator operation Note On unidirectional links CFO160 the led at the transmitter module is always green Fibre connection The optical interface is a small form factor pluggable SFP see picture beside The optics is hot swappable Optical cable connector in use is type LC PC The optical operation depends on the type of selected SFP transceiver module This information is marked to the models type sticker which is located on the side of the unit When installing the fibre optic cable do not exceed the minimum bending radius when connecting cable to the system Optical connector is type LC PC Note For correct optical operatio
18. the bail clasp latch is obstructed and you cannot use your index finger to open it use a small flat blade screwdriver or other long narrow instrument to open the bail clasp latch Grasp the SFP transceiver module between your thumb and index finger and carefully remove it from the socket Place the removed SFP trans ceiver module in an antistatic bag or other protective environment Configuring Audio Channels AUDIO connector l R T signal signal Pt audio tin Pa m t e aom re cnn foo e aoza AUDIO connector s pinout Audio Connection The CFO160 460 link contains two bi directional audio channels TX lt gt RX which can be used for one stereo audio or two mono audio purposes The AUDIO interface supports both balanced both channels separately and unbalanced wiring The default audio input impedance is set to high impedance gt 10 kQ this setting requires balanced connection for both channels Alternatively the audio input impedance can be set to 600 Q The audio output impedance is set to 10 O The connector type is a push in terminal block The audio channels operates independently i e despite the absence of all video signals The desired audio connection mode is selected by DIP switches SW3 Audio mode selection SW4 SW5 Dwell time for RS485 data AQ Dwell time for RS485 data DHT on 1 2 4567 8 SW4 ARROBAOA GSQ9000R DIP swithes are located on the t
19. yright 2015 Teleste Corporation All rights reserved TELESTE is a registered trademark of Teleste Corporation Other product and service marks are property of their respective owners This document is protected by copyright laws Unauthorized distribution or reproduction of this document is strictly prohibited Teleste reserves the right to make changes to any of the products described in this document without notice and all specifications are subject to change without notice Current product specifications are stated in the latest versions of detailed product specifications To the maximum extent permitted by applicable law under no circumstances shall Teleste be responsible for any loss of data or income or any special incidental consequential or indirect damages howsoever caused The contents of this document are provided as is Except as required by applicable law no warranties of any kind either express or implied including but not limited to the implied warranties of merchantability and fitness for a particular purpose are made in relation to the accuracy reliability or contents of this document Teleste reserves the right to revise this document or withdraw it at any time without notice CE 7 Teleste Corporation P O Box 323 FI 20101 Turku Street address Telestenkatu 1 20660 Littoinen FINLAND www teleste com

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