SZI 1029. IR Audio Transmission Technology Modulators/Radiators



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General Description The is a 5-W high-power radiator for use with all wideband and narrowband modulators. The radiator is automatically switched on by the RF carrier and can cover areas of up to 800 m 2 in single-channel operation. High-quality GaAlAs transmitting diodes have been arranged in 12 independent groups to ensure re liable transmission. A malfunction indicator is triggered when the radiating power is reduced by more than 30 %. Technical Data IR diodes... 132 GaAlAs Average radiating power... 5 W Operating voltage... 85 260 V, 50 60 Hz Current consumption operation... 350 ma (120 V: 610 ma) stand-by...50 ma RF input... BNC socket Input impedance...approx. 5 kω Max. coverage area... approx. 800 m 2 Threshold voltage for automatic on/off function... 50 mv (RF signal) RF output... BNC socket Weight...approx. 2.1 kg Features j High-power radiator with a maximum coverage area of 800 m 2 j RF output for connecting additional radiators j Automatic on/off function j Versatile installation due to 5/8, 3/8 and 1/2 threads j Excellent reliability due to 12 independent groups of transmitting diodes and malfunction indicator j Delivery includes: 1 radiator 1 mains cable 180 mm 250 mm 80 mm Recommended Accessories j BNC-BNC co-axial cable GZA 1019 A 1 (1 m) Cat. No. 002324 GZA 1019 A 5 (5 m) Cat. No. 002325 GZA 1019 A 10 (10 m) Cat. No. 002326 j GZV 1019 A BNC coupler Cat. No. 002368 j GZP 10 mounting plate Cat. No. 003193 j GZG 1029 swivel joint Cat. No. 003226 j MZT 100 anti-vibration table stand Cat. No. 001883 Dimensions of the Product Variants j -EU: High-power radiator, Euro mains cable, 5 W radiating power, black housing Cat. No. 003664 j -UK: as -EU, but with UK mains cable Cat. No. 004077 j -120: as -EU, but with USA mains cable Cat. No. 004078 j -EU-W: as -EU, but with white housing Cat. No. 004076 j -24: as -EU, but with operating voltage of 24 V DC Cat. No. 004100

-10 General Description With a radiating power of 10 W, the -10 is the most powerful Sennheiser radiator. Like the, it is fitted with an automatic on/off function, independent diode groups and a malfunction indicator but with twice the amount of IR diodes, the -10 is able to cover areas of up to 1,600 m 2 in single-channel operation. Technical Data IR diodes... 264 GaAlAs Average radiating power... 10 W Operating voltage... 170 260 V, 50 60 Hz Current consumption operation... 700 ma (120 V: 1 A) stand-by...50 ma RF input... BNC socket Input impedance...approx. 5 kω Max. coverage area... approx. 1,600 m 2 Threshold voltage for automatic on/off function... 50 mv (RF signal) RF output... BNC socket Weight...approx. 3 kg Features j High-power radiator with a maximum coverage area of 1,600 m 2 j RF output for connecting additional radiators j Automatic on/off function j Versatile installation due to 5/8, 3/8 and 1/2 threads j Excellent reliability due to 12 independent groups of transmitting diodes and malfunction indicator j Delivery includes: 1 radiator 1 mains cable 288 mm 250 mm 80 mm Recommended Accessories j BNC-BNC co-axial cable GZA 1019 A 1 (1 m) Cat. No. 002324 GZA 1019 A 5 (5 m) Cat. No. 002325 GZA 1019 A 10 (10 m) Cat. No. 002326 j GZV 1019 A BNC coupler Cat. No. 002368 j GZP 10 mounting plate Cat. No. 003193 j GZG 1029 swivel joint Cat. No. 003226 j MZT 100 anti-vibration table stand Cat. No. 001883 Dimensions of the -10 Product Variants j -10-EU: high-power radiator, Euro mains cable, 10 W radiating power, white housing Cat. No. 004005 j -10-120: as -10-EU, but with USA mains cable and 90 130 V operating voltage Cat. No. 004006

INPUT MONO MULTI The is a high-power radiator for wideband or narrow-band signals from any modulator. Its mains unit automatically adapts to mains voltages of 85 265 V and mains frequencies between 50 and 60 Hz, the individual product variants only differing in the type of mains cable supplied. The only exception is the -24 which operates on 24 V DC. For 24-V equipment, mains voltage regulations are no longer applicable, thus making installations by audio-visual companies much easier. radiator LED indicators of the Green LED: operation indicator Red LED: stand-by Red and green LEDs: malfunction indicator All controls and connectors of the are on the base. A 5/8 thread with an adaptor for conversion to 3/8 and 1/2 threads makes for versatile mounting. If the radiator is to be stand-mounted, its cables are guided unobtrusively down the stand. For ceiling mounting, the is simply turned upside down (the bottom faces the ceiling) and the cables are guided along the ceiling. The 132 IR diodes of the are arranged in independent groups of eleven. The operational status of the diodes and the radiator is indicated by a green and a red LED at the front. If only the red LED is lit, the radiator is in stand-by mode and a mains voltage is present, but there is no RF carrier. If only the green LED is lit, the radiator is operating and transmitting an IR signal. The radiator switches on automatically as soon as it receives an RF signal of at least 50 mv. When the RF signal is no longer present, the radiator switches back to stand-by. If both the red and the green LED are lit, the radiator indicates a malfunction: more than four diode groups fail to operate. The radiator will continue to operate at a reduced radiating power but it should be repaired as soon as possible. The sockets and controls are on the base of the (see diagram on the left). On each side, the radiator is fitted with a heat sink. When installing the radiator, care should be taken that these sinks are not covered and that the radiator is not mounted horizontally. The optimum position is vertical or almost vertical so that air can circulate freely through the cooling fins and heat is dissipated quickly. The modulator signal is fed to the BNC RF input. An automatic modulation control compensates for cable losses and ensures an optimum modulation level for the IR diodes. At the RF output socket (BNC) the signal can be daisy-chained to additional radiators. 1 2 3 4 5 6 7 1 1 Heat sinks 2 RF input, BNC socket 3 Mono/multi switch 4 RF output, BNC socket 5 Thread for mounting the radiator 6 IEC mains connector 7 Steel clamp for securing the mains connector The mono/multi switch increases the radiating power by 3 db when set to mono. Thus, the coverage area is approx. 50 % larger, but at the same time, the THD becomes greater, which would lead to interference with higher channels in multichannel operation. For this reason, you should only switch to mono for singlechannel applications and use the multi position for multi-channel operation. The radiator has a 5/8 thread and is supplied with an adaptor for conversion to 3/8 or 1/2 threads. You will find suitable attachments such as mounting plates or table stands in the chapter Accessories. The radiator s IEC mains connector can be secured by a steel clamp. The -24 variant is equipped with an XLR-4 connector as power supply socket. Bottom view of the with sockets and controls

MONO MULTI INPUT MONO MULTI INPUT Daisy-chaining the When planning and installing an IR system you have to pay attention to use the correct terminating impedance for the radiator chains. Sennheiser IR modulators have an output impedance of approx., whereas the radiators have a much higher input impedance of > 5 kω. This headroom allows you to connect many radiators without any problems. In RF transmission, the output impedance has to be terminated with approximately the same input impedance. If this is not done, reflections may occur at the end of the RF chain and disturb the transmission. So, for reasons of reliability, the end of an RF chain should always be provided with a 50-Ω terminating impedance. Please note that you should not use T adaptors in your RF chain as this would halve the terminating impedance. For large installations you should use both RF outputs of the modulator and create two RF chains. This not only increases reliability but also avoids cancelling out between radiators due to time delay. Please refer to the chapter Planning Theory for more information on time delay and cancellations. Risk of cancelling out! -10 The -10 is Sennheiser s most powerful radiator. 264 diodes in 24 independent groups provide an average radiating power of 10 W. The -10 is connected and operated like the smaller. The radiator s higher power is a special asset when it comes to covering large halls or auditoria with high ceilings, especially when a large number of channels are used. The -10 is also interesting for rental companies: due to the higher radiating power less radiators are required and IR systems can be set up and taken down again more quickly. Sennheiser high-power radiators are convection cooled so no cooling fans are used which could cause disturbing noises. -10 radiator

140m 1 110m 100m Coverage Area and Polar Diagrams The coverage area of the and -10 high-power radiators depends on the number of channels transmitted (see also Multi-Channel Operation ). For single-channel applications, the coverage area is up to approx. 800 m 2 for the and up to 1,600 m 2 for the -10 variant. The chapter Practical Planning has already given you some basic information on the recommended number and position of radiators. Please bear in mind that the devices radiate directionally, i.e. reception outside the radiation angle is only possible if the signal is reflected by walls and ceilings. 80m 70m 50m 40m 20m The polar diagram on the left is that of the. You can see that the signalto-noise ratio decreases the further you go away from the radiator. Eventually, the noise becomes so loud in relation to the useful signal that the squelch in the IR receiver mutes the audio output. A signal-to-noise ratio of 26 db (the outer characteristic in the polar diagrams) gives an intelligible but noisy signal. A signal-to-noise ratio of > 40 db, on the other hand, ensures a clear audio signal without the annoying noise. 10m Polar diagram of the * To cover a room more evenly, you can mount your radiators at one point and align them at an angle to one another. In the polar diagram on the left, two have been mounted at an angle of 40 to each other. For more information on how to work with polar diagrams, please refer to the chapter on Planning Theory. 225m 210m 195m 180m 165m 135m Multi-Channel Operation All models are suitable for multi-channel transmissions provided that a suitable modulator is used. The radiator coverage area, however, decreases proportionally with the number of channels the radiator is transmitting. If, for example, your system transmits eight narrow-band channels, the radiating power is uniformly divided between all eight channels. The coverage area is reduced to 1/8th of the area achieved in single-channel operation and a 5-W radiator, for example, will cover 100 m 2 instead of the 800 m 2 in single-channel operation. 105m 75m 45m m 2 800 m 2 1600 600 1200 15m 400 800 200 400 Polar diagram of the -10* 0 1 2 3 4 5 6 7 8 9 10 11 12 Channels 0 1 2 3 4 5 6 7 8 9 10 11 12 Channels 140m Coverage area of the Coverage area of the -10 1 110m 4 100m 80m 70m 50m 40m 20m 40 10m Polar diagram of two, mounted at an angle of 40 to each other* *free field, extraneous light < 100 lx, single-channel operation