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Manuel TED 400 mw EN
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1. Version E080421 f H j f 7 it f HHI Hiii HHI MUI MH MIN iii fi HIIHTI i MI f ji te 777 MM i WMT MMT TED TX RX Seite 2 antenna green holder with velcro fastener light emitting diode banana plug yellow data input banana plug green signal input banana plug black shared ground compound DIN plug data and signal input as well as external feed 3 8 thread measured in inches for tripod fastening code switcher 16 positions device button device switcher code switcher 10 positions fastening screw for battery cover battery cover type shield with device number antenna red holder with velcro fastener light emitting diode banana plug yellow data output banana plug green signal output banana plug black shared ground compound DIN plug data and signal output as well as external feed 3 8 thread measured in inches for tripod fastening code switcher 16 positions device button device switcher code switcher 10 positions fastening screw for battery cover battery cover type shield with device number eek ID I L 2 2 2 2 3 2 3 1 2 3 2 2 4 2 4 1 2 4 2 a2 ed iu A IO ID OD O1 o O 2 lalele S 01 iA 00 IN an h u uch 2 5 2 5 2 1 5 2 2 5 2 3 5 2 4 5 3 6 TED TX RX ALGE Table of content E a za pe IDE RR RE a SE RR NEI E N RE N INNER E AI E NI
2. OF ALGE Zeitme ger t TED TX Kabel 104 10 TED TX RX ALGE Kabel 060 10 OR TED RA ena kaba T4 0 6 Technical data Operating frequency Standard 10mW 433 500MHz Standard 400mW 433 800MHz Optional from 433 050 up to 434 790MHz in 70cm band Broadcast performance TED TX10 10mW Range Signal input TED TX TED TX400 400mW TED TX10 approx 1 5 km TED TX400 approx 5 km activ low at least 10 ms debounce time approx 50 ms Signal output TED RX activ low 100 ms Supply external TED TX10 and RX 6 5 to 28 VDC TED TX400 9 to 15 VDC internal 6 x Alkaline batteries 1 5 V Typ AA or Charging rate Operation time 6 x NiCd accus 1 2 V Typ AA TED TX10 Transmitting operation approx 35 mA Standby Mode approx 3 mA TED TX400 Transmitting operation approx 300 mA Standby Mode approx 3 mA TED RX Normal operation approx 35 mA Test operation approx 70 mA see side 6 and 7 Seite 25 ALGE TED TX RX RS232 interface true for TED TX and RX Input Output format 1 Startbit 8 AXCII Bit no Parity Bit 1 Stopbit Transfer speed 2400 or 4800 Baud Connector assignment TED TX DIN plug TED RX DIN plug 1 Impuls Input Start 1 Impule output Start 2 Impuls Input Stop 2 Impulse output Stop 3 GND 3 GND 4 Input V ext 4 Input V ext 5 Output 5 V stabilised 5 Input 5V Input 5V 6 Data output 6 Data input Banana plug with yellow marking Data identically with PIN 6 o
3. all startgates photocells RLS RLS3 SM8 STB1 Tapeswitch hand taste 023 xx Touchpads TP ASC EERE Seite 15 ALGE TED TX RX The following ALGE timing devices can be used as impulse receiver gt gt gt gt gt gt gt gt gt TDC4000 TDC8000 TDC8001 Timy Comet Timer S4 Timer S3 Videotimer VT2 VT2D OPTIc only start impulse With the standard TED two timing channels can be transmitted Normally if cable 004 xx is used it will be start channel CO and finish channel C1 4 1 Impulse transmission of a startgate mit Bananenstecker 2 adrig Kabel TED TX TED RX ALGE Zeitme ger t 4 2 Impulse transmission of a photocell DD imi U U Lichtschranke RLS TED TX TED RX ALGE Zeitme ger t Kabel 001 xx f r Stopimpulse Kabel Kabel 002 xx f r Startimpulse 004 05 Seite 16 TED TX RX ALGE 4 3 Impulse transmission RLS with adapter 129 06 Adapter TI 129 06 el LH Lichtschranke RLS TED TX TED RX ALGE Zeitme ger t Kabel 001 xx oder 0U2 xx You can adjust with adapter 129 06 if you will receive a start or stop impulse This has the advantage if you have e g a round course you just need one photocell 4 4 Impulse transmission with more than 2 timing channels Here you need adapter RX C10 so that you can transfer up to 10 timing channels in connection with TDC8000 8001 and Timer S4 Therefore you need several TED T
4. 1 a Code Schalter auf 0 RX C10 ALGE Zeitmessger t 0 O i ear date dhbt R TOC8000 8001 TED TX TED RX Connection plug at TED TX 000 10 Banana plug 5 6 Net eee Net gt TED TX RX ALGE 4 5 Impulse transmission of more timing channels with Timy and cable 207 10 The cable 207 10 works only with the Timy You can only use start cables 000 xx or 002 xx for this system There will be no impulse and also the Timy prints an error message when you use a stop cable These are the functions of the code switch 12 This have no use in the program Training REF here it is only necessary that the TED channels are different Function 0 CO Stat 1 Ci Finish 2 C2 Intermediate _ 8 C3 Intermediate 4 C4 Intermediate 5 C5 Intermediate 6 C6 Intermediate 8 8 Intermediate 9 CO Start OP O D Seite 19 ALGE TED TX RX 5 Data transmission Operational area Data transmission from an ALGE timing device to a ALGE displayboard Data transmission from Timer S4 to Timer S4 program 0 Data transmission from ALGE timing device to printer P4A Data transmission from ALGE timing device to Comet parallel display Data transmission from Comet to football displayboard Data transmission from ALGE timing device to a PC Data transmission from PC to PC GB Www i There exists different types of operating modes for data transmission Data transmission ALGE 1 second ALG
5. Timer S4 to Timer S4 The Timer S4 can supply the TED TX via a serial interface Timer S4 TED RX Timer S4 Programm 3 Programm 0 mit Tageszeit mit Tageszeit Timer S4 with TED without supply of the TED s Timer S4 Timer S4 Programm 3 Programm 0 mit Tageszeit mit Tageszeit Seite 21 ALGE TED TX RX Data transmission of the start time from a synchronous Timer S4 to another Timer S4 Adjust Timer S4 at the stari to program 3 and indicate dayiime gt Push yellow and red button at the same time gt The diplay of the Timer S4 shows HP 0 00 00 gt Type the hours with the red button gt Type the minutes with the yellow button Adjust Timer S4 at the finish to program 0 and indicate daytime gt Push yellow and red button at the same time t Push yellow and red button at the same time once again t The display of the Timer S4 shows SY 0 00 00 gt Type the hours with the red button gt Type the minutes with the yellow button Start both Timer S4 together synchronous start via a start cable channel CO The display of the Timer at the finish shows the daytime To delete the daytime push yellow and red button together Program 0 works now as described in the manual for Timer S4 The start Timer must be brought to the start Data repetation lf the start time dont arrive at the finish Timer you can send the data once again see side 18 5 1 2 Data transmission from ALGE ti
6. gt Signal is low Diode blinks red gt Signal missing or too low If the loudspeaker plays back voices it means that this radio frequency is used for voice radio This can cause data or impulse losses The field strength test will automatically be finished after 1 minute by the TED TX For the retrieval of the ideal location you have to move the TED RX The best location is chosen if the tone is as high as possible and if the diode is blinking green The field strength can only be evaluated with TED RX TED TX and RX must have a distance of 5 to 10 meters between them to assure a trouble free work Seite 13 ALGE TED TX RX 3 6 Annoyance test tapping of the receiver for disturbing signals If you push the device button of the TED RX for about half a second the loudspeaker will be activated and you can intercept the channel for possible disturbing signals At the same time the light emitting diode shows the field strength of the received signals also those of a possible disquieter ATTENTION The electric power consumption of the TED RX doubles during this test Push the device button to switch off the loudspeaker Seite 14 TED TX RX ALGE 4 Impulse transmission The impulse transmission functions directly from an ALGE emitter to a ALGE timing device via radio Every impulse transfered by the TED has a constantly delay of 0 100 seconds Maximum fault 0 001 seconds gt If only the start impuls
7. transmission from a ALGE timing device to Comet Parallel display N N Kabel 010 10 Kabel 107 10 ALGE Zeitmessger t TED TX ALGE Comet mit Programm Paralleldisplay 5 2 4 Data transmission from ALGE timing device to PC Kabel 010 10 Ea ii m TED RX A a a a ane ep 009000000 f gt h oP a E ELA ae as O0 Oooo oo000 ALGE Zeitme ger t TED TX Kabel 104 10 5 3 Data transmission directly Adjustment Code switcher 12 of TED TX and RX at position 6 Adapter 119 5 must be connected to the TED TX At first you have to send a data set that the TED TX switch in the direct mode illuminating diode goes from blinking to shine Every data set with a baudrate of 2400 up to 4800 Baud will be sent No control character is required The transmitter is always online that means that a power supply unit for the transmitter is recommended by us The data won t be checked by the receiver but passed on as received The verification should be conducted of the Software of the receiving unit PC Advantage Every data set will be transfered No control characters are required Every optional data protocol will be transfered Disadvantage The transmitter TED TX has a high power consumption since it is always online Since the data are sent without protocol the receiver is able to check the data Range of use Wireless data transmission with optional data protocol from one device to another PC Seite 24 Ge
8. E Protocol 1 data set per second Data transmission ALGE 0 1 second ALGE Protocol 1 data set per tenth second Data transmission 2400 Baud Data transmission with control character and 2400 Baud Data transmission 4800 Baud Data transmission with control character and 4800 Baud Data transmission directly Data transmission without protocol of 2400 to 4800 Baud Data repetation If the data don t arrive at the receiver you can trigger off a data repetation at the transmitter The last data set is always stored in the TED TX gt by pushing the device button 10 at TED TX Gerate Taste drucken Or gt by pushing of the hand taste connected on the green and black banana plugs of the TED TX Seite 20 TED TX RX ALGE 5 1 Data transmission 1 second Adjustment Code switcher 12 of TED TX and RX at position 0 If the TED TX recognizes reasonable data ALGE protocol he will change to the operating mode data transmission 1 second In this mode every data set will be transfered 10 times together with a checksum As soon as the TED RX has received a data set with right checksum he will display the data set This operating mode is used if it is important that the receiver will get all data in a secure way But this just functions if the data will not be sent all the time If data are sent all the time e 9 for a displayboard it may happen that parts of the data will get lost 5 1 1 Data transmission from
9. IRI E E i d INI RR e RI 4 POWEr SUBDIV AER ERE RI RR SR E SRI IE PE E SR SP NR EUR RR ernennen 5 Balteiry eXCNanN 6 sec seaca ese osia a se aia ine lit i noa ai eee el li erneuern 5 Operation with Alkaline batteries eee eee eaaaaae 6 Battery WANING nee o a ei alai ata aa aia ia nai ua i ate nai a n iata ai 6 CO DEL all OA IMS cet za cere ae ecua le ao o cee i ce see tot aa ar inot at a to e 6 Operation with NiCd ACCUS ee a simtit ae i anul tell ia i ia aa ia ee i la tr 7 PAC CUA NNO Ge a a eat end cca uated tena tan ae aa i nee ne en lu dl 7 Operation iMG esaea Ea ac cat dai ial miti aaa EA ie ai ai slide a aa cadoul mie RE 7 EXlE ial SIDO soi easier a as all ii eat di iai Oa ia snes ee een 8 DIESEL SUV te catei oaie a Dia la a d ao ea ee ee 8 Supply by the timing device eee 8 GPT e Li Le E ERE RR SER RE daher O ORI RI MIRI RIS RSI EN NERA 9 ASTA UOTE PRR PRR RR E N RN RER N N RN TEN IN INN PRR II NEI N INI NIN PR RI RP PCC IRI 9 SOWIE ON mu mia au nai ta can a i a tei a n ur a ni a 10 Choice Of OC AMON MOJE IRI RI E een 11 POSS SUN PRR RR RR SRR RER CR gern MARE DEI NA N N eos ee NE DIR IRI N ee ee 12 Field strength test for site selection eee eee nana eee 13 Annoyance test tapping of the receiver for disturbing signals 2 200022200020nne nennen 14 IMDUISE TFANSMISSION e ina niz e aaa aaa Lia REE EAER iti ta it ia tai tr bi ana alea 15 Impulse transmission of a8tarlgale een ee odata ala ae bata dale die d
10. X You can transfer 2 timing channels per TED TX You can adjust the timing channels at the TED TX with the code switcher 12 The code switcher 12 don t have any function in this operation ATTENTION Blocking time see point 4 impulse transmission With the small provided screw driver you can adjust the arrow of the code switcher to the right position TED TX TED TX timing channel TED TX DIN socket TED TX DIN Stecker Code Schalter 12 banana socket timing channel timing channel green 5 and black 6 on pin 1 on pin 2 switch position 0 switch position 2 switch position 5 PB switch position 6 EEE EEE switch position 7 switch position 8 switch position 9 Seite 17 ALGE TED TX RX Timing with 10 timing channnels at a Ski test run Adjustment of the code switcher 12 to the TED TX Switcher Startgate Intermediate time 1 Photocell Intermediate time 2 Photocell 7 p EE Startschranke STS Kabel 000 xx zweiadrig mit Bananenstecker Lichischranke RLS Lichtschranke RLS Lichtschranke RLS Seite 18 Cable type 001 10 001 10 001 10 001 10 001 10 001 10 001 10 001 10 001 10 N START TED mit Kanal 0 Code Schalter auf 0 TED TX 1 Zwischenzeit TED mit Kanal 2 Code Schalter auf 1 2 O TED TX usw A n 8 Zwischenzeit x TED mit Kanal 9 ici Code Schalter auf 8 O TED TX N n ZIEL x TED mit Kanal
11. ai 16 Impulse transmission OF a photocell u 16 Impulse transmission RLS with adapter 1229 06 eee eee 17 Impulse transmission with more than 2 timing channels eee eee 17 Impulse transmission of more timing channels with Timy and cable 207 10 19 Data Fans ISSN ze ue Du lu ara oi aia nino muia iun iai aie ate a tei 20 Data transmission 1 SOCONG anna ae ata aia daia ai aia aa 21 Data transmission from Timer S4 to Timer S4 uuannueesssneensnnesnnnnnsnnnnennnnnenennonennn nenne nennen 21 Data transmission from ALGE timing device to printer P4A 0 0 0 cece e cece eeeeteeteeeeeeeeeeeeees 22 Data transmission 0 1 SECOnNdS nennen nenne en ee 23 Data transmission to ALGE displayboard c eee eee eee 23 Data transmission from Comet to ALGE soccer displayboard mee eee 23 Data transmission from a ALGE timing device to Comet Parallel display 24 Data transmission from ALGE timing device to PC ee 24 Data transmission CIRGCUY sc oaie oii iezi ia iii a n li le ale il a i i il 24 TECHNICAL Gala erea E EAE ce Haaren aus e EEEE SD E p F E AE AE EEE 25 Subject to technical alterations in terms of improvement Download the latest manual for free on our homepage http www alge timing com TED manual copyright by ALGE TIMING Rotkreuzstra e 39 A 6890 Lustenau Seite 3 ALGE TED TX RX 1 General Purpose Wireless transfer of timing impulses or data Tra
12. ch data set you have to indicate an identifier in order to start and to stop the data transfer Data transfer directly All data will be transfered the transmitter TED TX is always on Seite 4 TED TX RX System test Field strength test Power supply Annoyance test external supply Radio permission The permission regulations in Europe variies from country to country For some countries you have to apply for a permission for our TED TX400 with 6 batteries or with 6 NiCd accus or with ALGE If you need any information concerning this matter please get in contact with your ALGE representative 2 Power supply There are two types of power supply gt gt 2 1 Internal power supply with six batteries Mignon or accus Typ AA External power supply with ALGE power supply unit via timing device or a 12V battery Battery exchange You can reach the battery cover at the lower side of the TED s The knurled screw must be unscrewed anticlockwise Remove the cover Remove the batteries put up the device in order that the batteries will slip out Set in the new or loaded battery Notice the polarity see battery cover Put on the cover and screw the knurled screw The screw must be screwed to the stop position Seite 5 ALGE TED TX RX 2 2 Operation with Alkaline batteries Every TED requires 6 Alkaline batteries Type AA The battery status will be shown during the
13. d accus Typ AA The accus cannot be loaded in the device In order to load you will need a separately loading station The accu sitution accu capacity will be shown during the normal operation with help of the light emitting diodes 3 Color of diode 3 Battery capacity 15 to 100 border between green and orange approx 15 orange Cd 1015 border between orange and red approx 5 less than 5 The TED switches automatically off if the battery pressure goes below 5 Volt Attention The light emitting diode has an other function during the field strength test see point 3 5 2 3 1 Accu warning The same as Alkaline batteries 2 3 2 Operation time The above indicated measurings refer to accus of the tyoe Panasonic 700mAh at room temperatures 25 C Please pay attention to the fact that the battery capacity will be reduced at low temperatures at 20 C approx just 80 capacity TED TX10 without photocell 1 impulse per minute TED TX10 with photocell 1 impulse per minute TED TX10 1 data set per minute TED TX10 always sends data TED TX400 without photocell 1 impulse per minute approx 90 hours TED TX400 with photocell 1 impulse per minute approx 20 hours TED TX400 1 data set per minute approx 18 hours TED TX400 always sends data approx 2 hours TED RX the same in all operation approx 18 hours modes Seite 7 ALGE TED TX RX 2 4 External supply The TED can be supplied by a pow
14. e is transfered by TED you have to add a tenth second to the run time gt If only the finish impulse is transfered by TED you have to discount a tenth second of the run time t If the start impulse as well as the finish impulse is transfered by TED the run time is accurately TED TX is from the beginning of the first impulse blocked for 0 163 seconds respectively incidental impulses within this time will be delayed until this time is expired TED RX is from the beginning of the first impulse blocked for 0 1 seconds and ignores all impulses within this period Bounce protection g M 7 5V Inside the TED TX is a built in bounce protection integrated This bounce protection prevents double impulses 50 ms i A Bounce at the beginning of an impulse B Bounce at the end of an impulse C Impulse duration plus bounce duration D Bounce protection time 50 ms E Bounce protection abrupted al since 50 ms were not expired B E Control of the impulse transmission If a timing impulse is transfered the diode of TED TX and RX will blink once again Safety of the impulse transmission Please bare in mind that the radio connection may be disturbed by outside influences That means that in case of annoyances there cant be any transmissions of impulses II With an impulse transmission via radio we can never assure the same security as by an impulse transmission by cable The following ALGE devices can be used as emitter
15. er supply unit Supply pressure gt TED TX10 6 5 to 28 VDC gt TED TX400 9to15 VDC t TED RX 6 5 to 28 VDC 2 4 1 Direct supply The TED can be supplied directly by the following ALGE power supply units NLG4 NLG8 LG Comet not for TED TX400 NBG NG13 PS12 Du n 230V 50Hz 2 4 2 Supply by the timing device In the operation type impulse transfer the TED RX can be supplied by the power supply unit ot the timing device Therefore you need cable 004 05 between the TED RX and the timing device ATTENTION The supply just functions if the timing device is connected to an external supply LG Comet cannot supply Comet and the TED at the same time Netzgerat 230V 50Hz Kabel 004 05 TED RX ALGE Zeitme ger t Seite 8 TED TX RX ALGE 3 Implementation The reach of the radio contact is strongly depending on the location of the transmitter and receiver In many cases you can improve the received field strength high field strength high safety by a minimal relocation if the TED TX or RX 3 1 Installation There are different possibilities to mount the TED Bad The TED should never stand on the ground Too much reach will be lost Good Mounting with Velcro fastener In critical situations always make an over head mounting Bad The antenna must always be uprightly Good Mounting on a tripod 3 8 inch Bad There mustn t be any parts near the antenna
16. f DIN plug with green marking Impulse identically with PIN1 of DIN plug with black marking GND identically with PIN 3 of DIN plug Antenna at TED TX10 and TED RX10 I 4 antenna approx 165mm at TED TX400 and TED RX400 BNC connection for 50 W antenna Working temperature 20 up to 50 C Weight without batteries approx 600g with batteries approx 750g Dimensions 198 198 Seite 26 TED TX RX ALGE Seite 27 TED TX RX
17. hows the position Our factory settins is at position 0 lf several TED s are used in the same area you have to work with different addresses So you are safe of false impulses or data though not against blocking of another device Code switcher 9 Address Position 0 Address 0 Position 1 _ Address 1 Position 2 Address 2 Position 3 Address 3 Position 4 Address 4 Position 5 Address 5 Position 6 Address 6 Position 7 Address 7 Position 8 Address 8 Position 9 Address 9 Address F If you will avoid any blocking of another TED so you have to change to another radio frequency Example impulse transfer of start signal Seite 12 TED TX Startschranke STS Kabel 004 05 TED RX ALGE Zeitme ger t TED TX and RX must be adjusted to the same address TED TX RX ALGE 3 5 Field strength test for site selection The field strength test can just be carried out in the operation mode impulse transfer If you would like to work smooth with your TED you have to choose an appropriate location Activate field strength Switch on TED TX Push device button 10 Mount the TED aloft side 9 Switch on TED RX The loudspeaker of the TED RX makes a tone and the light emitting diode blinks The higher the tone the better the field strength Diode blinks green gt Signal is good Diode blinks orange
18. ht emitting diode must blink Every data set will be transfered once with 4800 Baud At the beginning as well as at the end of each data set you have to indicate an identifier in order to start and to stop the data transfer Set code switcher of TED TX and RX to position 6 Light emitting diode of TED RX must shine Light emitting diode of TED TX blinks At first you have to send a data set that the TED TX switch in the direct mode illuminating diode goes from blinking to shine Every data set will be transfered 3 3 Choice of operation mode Switcher__ Signal mode Code switcher 12 Position 0 data transfer ALGE 1 second Position 1 data transfer ALGE 0 1 second Position 0 to 9 Position 2 without function for choice of timing Position 3 data transfer 2400 Baud channel Position 4 data transfer 4800 Baud Position 6 data transfer directly Position 7 to 9 without function Code switcher 9 for addressing for addressing field strength tst On Off repeat last data set button 10 The field strength test can also be started by triple short circuiting of the green and black banana plug Seite 11 ALGE TED TX RX 3 4 Addressing The code switcher 9 for addressing has got 16 positions and is accessible from the bottom All TED TX and RX must be installed to the same address if they work in one system Chose the requested address with the provided screw driver The arrow of the switcher s
19. l Seite 9 TED TX RX Used for small and middle distances Lichtschranke RLS AGE d d A SEN Befestigungswinkel TED Tr om a Kr Tr ger Sa zum Befestigen i des TED und dem A Befestigungswinkel oder Stativ U 3 2 Switch on Normal operation Switch on with device switcher 11 TED works in operation mode Impulse transfer Light emitting diode blinks Test Mode Push device switcher 10 Device switcher 11 to ON light emitting diode should blink Let loose of the device switcher Test Mode will automatically switch off after one minute manually with device switcher 10 Data transfer ALGE 1 Sec Switch on theTED light emitting diode must blink If the first data set is transfered in the right format then the data transfer will be activated for 1 second Data transfer ALGE 0 1 Sec Set code switcher 12 of TED TX and RX to position 1 Switch on the TED light emitting diode must blink Data transfer 2400 Baud Set code switcher of TED TX and RX to position 3 Switch on the TED light emitting diode must blink Every data set will be transfered once with 2400 Baud At the beginning as well as at the end of each data set you have to indicate an identifier in order to start and to stop the data transfer Seite 10 Data transfer 4800 Baud Data transfer directly TED TX RX ALGE Set code switcher of TED TX and RX to position 4 Switch on the TED lig
20. ming device to printer P4A ALGE Zeitme ger t TED tX Printer P4A TED RX If the output RS232 is used by a timing device you must use cable 060 10 for the TED TX TDC 8000 8001 oder Comet ber Rs232 Schnittstelle Seite 22 TED TX RX ALGE 5 2 Data transmission 0 1 seconds Adjustment Code switcher 12 of TED TX to RX at position 1 Just for data with ALGE protocol Every data transmission from TED TX to RX happens once Every data set has got a checksum if these are right the received data will be displayed In this operation mode it is possible to transfer a running tenth This operation mode is used if it is important that the transfered data must be available immediately or if many data sets should be transfered in a short time The transmission security isnt as high as at mode data transmission 1 second 5 2 1 Data transmission to ALGE displayboard Kabel 010 10 ohne Speisung oder 107 10 mit Speisung Kabel 037 10 ohne Speisung oder 103 10 mit Speisung ALGE Zeitme ger t TED TX Gro anzeigetafel GAZ 4 TED RX oder D LINE 5 2 2 Data transmission from Comet to ALGE soccer displayboard Fu ball Anzeigetafel Kabel 103 10 ALGE Comet TED TX TED RX In order to supply TED TX from a Comet you need cable 108 10 We would recommend to supply the Comet by an ALGE power supply unit Seite 23 ALGE TED TX RX 5 2 3 Data
21. normal operation with help of the diodes Color of diode 3 Battery capacity 35 100 border between green and orange empty The TED switches off automatically if the battery tension is below 5 Volt ATTENTION The light emitting diode has an other function during the field strength test see point 3 5 2 2 1 Battery warning lf the battery has less than 20 capacity LED red then the TED TX will transfer this information the the TED RX together with the next data set or information He will switch on the internal loudspeaker after that you can hear alternately a high pitched and a low tone The TED RX will always activiate the internal loudspeaker as soon as the battery capacity is below 20 2 2 2 Operation time The above indicated measurings refer to Alkaline batteries Type Energizer at room temperatures 25 C Please pay attention to the fact that the battery capacity will be extremely reduced at low temperatures at 20 C approx just 20 capacity TED TX10 1 dataset per minute approx 270 hours _ TED TX40 1datasetperminute approx 54 hours TED TX400 always sends data approx 6 hours ET TED RX the same in all approx 54 hours operation modes TED TX400 with potocell 1 impulse per minute approx 60 hours ED ST TED TX400 without photocel 1 impulse per minute approx 270 hours Seite 6 TED TX RX ALGE 2 3 Operation with NiCd accus Every TED requires 6 NiC
22. nsfer frequency in 70cm band TED TX10 Teledata transmitter with an output performance of 10mW appr 1 5 km range 1 4 antenna TED RX10 Teledata receiver to TED TX10 with 1 4 antenna TED TX400 Teledata transmitter with an output performance of 400mW appr 5 km range BNC antenna TED RX400 Teledata receiver to TED TX400 with BNC antenna Minimal equipment components 1x TED TX and 1x TED RX Expanded Accessories added TED TX for impulse and data transfer added TED RX for data transfer RX C10 for impulse transfer if you use more than two timing channels Cognition feature for TED TX type shield 15 and green holder 2 Cognition feature for TED RX type shield 15 and red holder 2 Indication on type shield device type device number Impulse transfer The impulse transfer works directly from a ALGE emitter to the ALGE timing device Data transfer ALGE 1 Sec Every data set will be transfered 10 times out of safety reasons Onedata set per second will be transfered Data transfer ALGE 0 1 Sec Every data set will be transfered once One data set per 0 1 seconds will be transfered Data transfer 2400 Baud Every data set will be transfered once with 2400 Baud At the beginning as well as at the end of each data set you have to indicate an identifier in order to start and to stop the data transfer Data transfer 4800 Baud Every data set will be transfered once with 4800 Baud At the beginning as well as at the end of ea
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