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VS_2017

Technical Details –

Technical Details – Components for Discharge Lamps Assembly Instructions for Electronic Ballasts Assembly instructions for mounting and installing electronic ballasts for high-pressure discharge lamps Mandatory regulations DIN VDE 0100 Erection of low voltage installations EN 60598-1 EN 61347-1 EN 61347-2-12 EN 55015 Luminaires – part 1: general requirements and tests Operating devices for lamps – part 1: general and safety requirements Control gear for lamps; part 2-12: Particular requirements for d.c. or a.c. supplied electronic ballasts for discharge lamps (excluding fluorescent lamps) Limits and methods of measurement of radio disturbance characteristics of electrical lighting and similar equipment EN 61000-3-2 Electromagnetic Compatibility (EMC) – part 3: maximum values – main section part 2: maximum values for mains harmonics (device input current up to and including 16 A per conductor) EN 61547 Installations for general lighting purposes – EMC immunity requirements Descriptions of VS EBs for discharge lamps The type designations for VS HID ballasts all follow the same pattern, as follows: EHXc 70 .326 Electronic ballast for HID lamps Wattage Serial number Mechanical mounting Surface Firm, flat surface required to ensure good heat transfer. Avoid mounting on protruding surfaces. Mounting location Electronic ballasts must be protected against moisture and heat. Installation in outdoor luminaires: water protection rate of > 4 (e.g. IP54 required). Fastening Heat transfer Using M4 screws in the designated holes If the ballast is destined for installation in a luminaire, sufficient heat transfer must be ensured between the electronic ballast and the luminaire casing. Electronic ballasts should be mounted with the greatest possible clearance to heat sources or lamps. During operation, the temperature measure at the ballast's tc point must not exceed the specified maximum value. Supplement for independent electronic ballasts Mounting position Any position using the mounting tabs Clearance Surface Min. of 0.10 m from walls, ceilings and insulation Min. of 0.10 m from further electronic ballasts Min. of 0.25 m from sources of heat (lamp) Solid; EB must not be allowed to sink into insulation materials 80

Technical Details – Components for Discharge Lamps Technical specifications Type Operating voltage Protective Mean service Power Temperature Possible no. of VS devices/automatic cut-out type range conductor life*** factor protection* B (10A) B (16A) C (10A) C (16A) AC: 220 V...240 V mA hrs. λ Standard EB EHXc 35.325 ±10% 0.5 32,000 (tc 85 °C) 0.95 yes** 7 12 12 20 (183033;183034) 40,000 (tc 80 °C) 50,000 (t c 75 °C) EHXc 35.325 ±10% 0.5 32,000 (tc 80 °C) 0.95 yes 7 12 12 20 (183035) 40,000 (tc 75 °C) 50,000 (t c 70 °C) EHXc 35G.327 +6 –10% 0.5 30,000 (tc 80 °C) > 0.95 yes 7 12 12 20 EHXc 70.326 ±10% 0.5 32,000 (t c 80 °C) 0.95 yes** 7 12 12 20 (183036) 40,000 (t c 75 °C) 50,000 (t c 70 °C) EHXc 70.326 ±10% 0.5 26,000 (tc 75 °C) 0.95 yes 7 12 12 20 (183038) 40,000 (t c 65 °C) 50,000 (t c 60 °C) EHXc 150G.334 +6 –10% 0.5 50,000 (tc 75 °C) > 0.98 yes 4 7 7 12 * The devices are fitted with a temperature switch to protect against impermissible overheating. Once the device has cooled down, it is switched on again. It may prove necessary to briefly dis- and then reconnect the device to the mains voltage. ** The temperature protection inside the luminaire must be checked when using devices without a cap. *** To achieve the mean service life, the max. temperature (tc max.) at the tc point must not be exceeded; failure rate = 0.2% per 1000 hrs Product features Shutdown of defective lamps In the event of a lamp failing to ignite or of a lamp with an increased operating voltage (end of the lamp's service life), the electronic ballast will switch off after a defined period of time (< 20 minutes). The ballast will also shut down if the lamp fails to attain its specified rated output. The ballast can be reset by disconnecting and then reconnecting the mains voltage. The ballast must always be disconnected from the mains prior to changing a lamp. EOL Effect In high-pressure discharge lamps, the EOL effect manifests itself in a change of the lamp's voltage. These changes can, for instance, occur due to unsealed parts of the burner or the rectifier effect. An automatic EOL cut-out prevents safety risks at the end of the service life of high-pressure discharge lamps. EOL tests are conducted to check the behaviour of electronic ballasts at the end of a lamp's service life. The EOL cut-out stops the lamp base overheating at the end of a lamp's service life. Short-circuit resistance The ballast outputs (to the lamp) are short-circuit-proof. Short-circuits between the lamp connection and the casing (earth conductor) will destroy the ballast. Temperature protection To prevent excess temperatures, some ballasts are fitted with temperature protection. A ballast will restart after it has cooled down. It might be necessary to briefly interrupt the supply voltage. The above table contains a list of temperature-protected devices. Transient mains peak protection Values are in compliance with EN 61547 (interference immunity). 1 2 3 4 5 6 7 8 9 10 81

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    Contents 5 Transformers for Low-vol

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    1 PUMA Headquarters Porsche Museum

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    2 Ballasts for Discharge Lamps For

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    5 Transformers for Low-voltage Halo

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    6 Emergency Lighting Modules for TC

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    Technical Details - Emergency Light

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    1 2 3 4 5 Energy Management & Contr

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    Components for the UL Market GX10 L

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    General Technical Details Product d

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    Glossary A A type, B type capacitor

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    Glossary R Reference ballast Specia

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    Subsidiaries Subsidiaries Adress Ph