Voice-Frequency Telegraph Modem HY101-SWT

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Voice-Frequency Telegraph Modem HY101-SWT Revision: August 2014 V 1.6 08/14 1 HYTEC Gerätebau GmbH

2007 / HYTEC Gerätebau GmbH All rights reserved No part of this document may be reproduced or used except as authorized by contract or other written permission from HYTEC Gerätebau GmbH. The information contained in this document is the property of Hytec Gerätebau GmbH and is supplied without liability for errors and omissions. Technical modifications are subject to change without notice. V 1.6 08/14 2 HYTEC Gerätebau GmbH

EG - Konformitätserklärung EC-Declaration of Conformity CE-Déclaration de Conformité Wir/ We /Nous Hytec Gerätebau GmbH Cochemer Straße 12-14 D-68309 Mannheim erklären in alleiniger Verantwortung dass unser Produkt declare under our sole responsibility that the product attestons sous notre responsabilité que le produit HY101-SWT1200, HY101-SWT9600 auf welches sich diese Erkärung bezieht, mit der /den folgenden Norm(en) oder normativen Dokumenten übereinstimmt which is the subject of this declaration, is in conformity with the following standard(s) or normative documents auquel cette déclaration se rapporte, est conforme aux norme(s) ou aux documents normatifs suivants Bestimmung der Richtlinie Terms of the directive Prescription de la directive Titel und/oder Nr. sowie Ausgabedatum der Norm Titel and/or No. and date of issue of the standard Titre et/ou No. Ainsi que date démission des normes 73/23/EWG : Niederspannungsrichtlinie Low Voltage Directive DIN EN 60950 (2001) 98/336/EWG : Elektromagnetische Verträglichkeit Elektromagnetic compatibility Compatibilité electromagnétique DIN EN 61000-6-2 (2002) DIN EN 61000-6-4 (2002) 99/05/EG : Telekommunikationsrichtlinie R&TTE European Telecommuncation Standard ETSI ES 203 021-3 (2005) Mannheim, 20. August 2007 Ort und Datum Place and date lieu et date Prof.Dr.-Ing.Dr.-Ing.E.h. Norbert Fliege Technical Director Dipl.-Ing. Michael Boe Quality Manager V 1.6 08/14 3 HYTEC Gerätebau GmbH

Getting started with HY101-SWT The considered modem HY101-SWT is a voice-frequency telegraph modem for snap-in mounting on DIN-rail. It is available in the variants SWT1200 (CCITT V.23) with 1200 bit/s and SWT9600 with 9600 bit/s. The built-in power supply has an input voltage range from 24 to 60 VDC. The HY101-SWT provides half-duplex communication on 2-wire line circuits or full-duplex communication on 4-wire line circuits. Switching between these two modes is accomplished by DIP switch 2-W. For data flow control in half-duplex communication the following handshake signals are available at an RS232-D RJ45 jack: RTS, CTS, and DCD (pin assignment to be found in technical data). The RTS signal switches on the sender. This is indicated by the CTS-LED, see picture of front side. When the receiver detects a carrier frequency, it switches on the DCD signal as well as the DCD-LED, see picture of front side. Both LEDs TxD and RxD are off when the corresponding data line is in idle state. When in 4-wire full-duplex mode no RTS signal is available, the sender can be turned on permanently by means of DIP switch C-2. In this case the CTS-LED is also on. The factors of amplification of the receiving amplifier are set by means of DIP switches 10dB, 20dB, 30dB und 40dB. Only one DIP switch at a time is allowed to be in the on state (right position). If no DIP switch is on, the amplification is 0 db. The DIP switches T-T and T-R are switched on, when the HY101-SWT is to be terminated with the line impedance. This is usually the case at both ends of the line. If the HY101-SWT is to be connected in a party-line manner in between, these DIP switches have to be off. The DIP switches 20% and 40% raise the amplitude of the upper sending frequency by 20, 40 or 60 % with respect to the lower frequency. When both switches are turned on, the raise is 60 %. With the DIP switch 20dB the sending power can be reduced by 20 db to avoid clipping of the receiver signal in the central station in the case the distance between central station and the first station in a party-line configuration is rather short. The RTS signal of the data termination equipment has to guarantee leading and trailing times with respect to the transmitted data. The leading time for SWT1200 is 10 ms, for SWT9600 it is 3 ms minimum. The trailing time should not be less than 3 ms in both cases. With some combinations of line characteristic and switching time of the sender it is possible for the receiver to output an isolated bit. This has to be coped with and eliminated by the protocol of the data link layer (layer 2). The user data is not affected by this event. V 1.6 08/14 4 HYTEC Gerätebau GmbH

Front view and switch settings 1 2 3 VIN+ PE VIN- 1 2 3 1 2 3 4 LEDs Power RTS CTS DCD RxD TxD 1-2: 2-wire, sender 4-wire 3-4: receiver 4-wire Figure 1: Front view power supply active RTS of termination equipment is on carrier of transmitter is on carrier frequency detected by receiver receive data transmit data Table 1: Meaning of the LEDs DIP switch left Off right On C-1 for future use for future use C-2 switch on sender with RTS carrier always active (4-wire) 2-W 4-wire mode 2-wire mode -20dB normal sending power sending power reduced by 20 db 20% both raising factors active: raise upper frequency amplitude by 20 % 40% 60 % raise of amplitude raise upper frequency amplitude by 40 % 10dB 10 db amplification 20dB only one amplification factor 20 db amplification 30dB allowed to be active 30 db amplification 40dB 40 db amplification T-T termination of sender inactive termination of sender active T-R termination of receiver inactive termination of receiver active Table 2: DIP switch settings max. distance between stations DIP switches in on posisition 0..5 km 10dB, 20% 0..10 km 20dB, 20% Table 3: Recommended settings Front side connector Pin Name 1 DSR 2 DCD 3 DTR 4 GND 5 RxD 6 TxD 7 CTS 8 RTS Figure 2: View RJ45-jack Table 4: Pin assignment RJ45-jack V 1.6 08/14 5 HYTEC Gerätebau GmbH

Technical Data Sending and receiving unit for transmission of digital data at a rate of 1200 and 9600 baud respectively. General data symbol rate 1200 baud 9600 baud level number binary binary data rate 1200 bit/s 9600 bit/s modulation frequency shift keying(fsk) frequency shift keying(fsk) center frequency 1700 Hz 13,6 khz frequency deviation ± 400 Hz ± 4400 Hz modulation index 0,66666 0,91666 Range of operation 2-wire Cu-line SWT1200 SWT9600 0,8 mm > 30 km 20 km Line connection mode of operation transmission line galvanic isolation overvoltage protection connector type Party-line configuration possible half-duplex (2-wire), same frequency range full-duplex (4-wire) 2-wire Cu / 4-wire Cu 1:1-transformer varistor 150 V 4-pole plug connection input impedance selectable by DIP switch: (from line into device) T-T, T-R = off high impedance (sender = current source) = internal resistance in or sending condition T-T, T-R = on line impedance termination at end of line termination in party-line T-T, T-R = on T-T, T-R = off line impedance SWT1200 SWT9600 600 Ω model for 0.8 0.9 mm 130 R 2 Ω = 140 O h m 150 C 2 nf = n F 600 Ω R 2 931 = 953 O h Ω m V 1.6 08/14 6 HYTEC Gerätebau GmbH

Sender SWT input TxD signal from RS-232 interface output level (voltage level at line SWT1200 SWT9600 connection without load) U Eff = 550 mv U Eff = 850 mv sending equalizer raise of amplitude of upper frequency with DIP switches 20% = off, 40% = off : 0 % 20% = on, 40% = off : 20 % 20% = off, 40% = on : 40 % 20% = on, 40% = on : 60 % reduced sending level -20dB = on : 20 db attenuation switching on and off by RTS signal Receiver SWT input sensitivity required input level input amplification possible attenuation typ. U On, Eff = 3 mv max. U On, Eff = 10 mv by means of DIP switches 10dB-40dB (according to table and line length): 0, 10, 20, 30 und 40 db typ. 50 db, min. 40 db Data interface standard V.24/V.28 and RS 232-D resp. kind of interface HY101-SWT is a DCE connector type RJ45 (jack) pin assignment Pin 1 DSR (output) (according to EIA RS 232-D) Pin 2 DCD (output) Pin 3 DTR (output) Pin 4 GND (ground) Pin 5 RxD (output) Pin 6 TxD (input) Pin 7 CTS (output) Pin 8 RTS (input) activate sender RTS = on (+12 V i.e. > +3 V) CTS signal follows RTS signal with a delay of 1,5 ms carrier detection DCD = on (+12 V i.e. > +3 V) of remote station V 1.6 08/14 7 HYTEC Gerätebau GmbH

TxD, RxD idle state log. 1 (-12 V i.e. < -3 V) stop bit = idle state start bit log. 0 (+12 V i.e. > +3 V) data polarity transparent: RxD has the same polarity as TxD of remote station switch-on delay RTS local station / SWT1200 SWT9600 DCD remote station typ. 9 ms typ. 1,8 ms max. 9,6 ms max. 1,86 ms switch-off delay RTS local station / SWT1200 SWT9600 DCD remote station typ. 1,1 ms typ. 0,16 ms max. 2 ms max. 0,23 ms transmission delay TxD local station / SWT1200 SWT9600 RxD remote station typ. 0,7 ms typ. 0,085 ms max. 0,73 ms min. 0,08 ms, max. 0,09 ms leading time RTS = on / defined by DTE start bit SWT1200 SWT9600 min. 10 ms min. 3 ms trailing time stop bit / defined by DTE RTS = off SWT1200 SWT9600 min. 3 ms min. 3 ms Other data housing dimensions (WxHxD) temperature range humidity DIN-rail mounting 45 x 99 x 114,5 mm -30 +70 C 5 95% non condensing power supply SWT1200 SWT9600 24 V DC, 85 ma 24 V DC, 100 ma 60 V DC, 35 ma 60 V DC, 40 ma technology FSK sender IC, FSK receiver IC analog and digital electronics V 1.6 08/14 8 HYTEC Gerätebau GmbH