Skylla-i

Skylla-i

Skylla-i

Product catalog summary
Overview: The Skylla-i battery chargers by Victron Energy are designed to charge multiple battery banks with options for 1+1 or 3 outputs. They are rugged, flexible, and suitable for various environments and battery types, including lead-acid and Li-Ion.
Specifications: The Skylla-i chargers come in models with different output configurations: 1+1 for two battery banks and 3 for three battery banks. They feature input voltage ranges of 185-265 VAC and 180-350 VDC, with a power factor of 0.98. The chargers support a 7-stage adaptive charge algorithm and have a temperature sensor for optimal charging.
Key Features:
  • Rugged Design: Aluminium epoxy powder-coated cases and stainless steel fixings ensure durability in harsh environments.
  • Flexible Charging: CAN bus interface, rotary switch, DIP switches, and potentiometers allow customization of the charge algorithm.
  • BatterySafe Mode: Prevents damage from excessive gassing by limiting voltage increase rate.
  • Storage Mode: Reduces float voltage to minimize gassing and corrosion when the battery is not in use.
  • Temperature Compensation: Adjusts charge voltage based on battery temperature to extend battery life.
  • Voltage Sense: Compensates for voltage loss due to cable resistance.
  • AC and DC Supply: Can operate with both AC and DC inputs.
  • Power Supply Use: Can be used as a power supply due to stabilized output voltage.
  • Li-Ion Ready: Supports simple on-off control and complete voltage/current control via CAN bus.
Additional Components:
  • BMV 600S Battery Monitor: Provides advanced monitoring of battery voltage and charge/discharge current with complex calculation algorithms.
  • Skylla-i Control Panel: Offers remote control and monitoring of the charge process, with input current adjustment and parameter changes.
Standards and Compliance: The chargers comply with safety standards EN 60335-1 and EN 60335-2-29, emission standards EN 55014-1 and EN 61000-6-3, and immunity standards EN 55014-2 and EN 61000-6-1.
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Catalog excerpts

Skylla-i-1

Skylla-i Battery Charger 24V Li-Ion ready Skylla-i (1+1): two outputs to charge 2 battery banks The Skylla-i (1+1) features 2 isolated outputs. The second output, limited to approximately 4 A and with a slightly lower output voltage, is intended to top up a starter battery. Skylla-i (3): three full current outputs to charge 3 battery banks The Skylla-i (3) features 3 isolated outputs. All outputs can supply the full rated output current. Rugged Aluminium epoxy powder coated cases with drip shield and stainless steel fixings withstand the rigors of an adverse environment: heat, humidity and salt air. Circuit boards are protected with an acrylic coating for maximum corrosion resistance. Temperature sensors ensure that power components will always operate within specified limits, if needed by automatic reduction of output current under extreme environmental conditions. Flexible Next to a CAN bus (NMEA2000) interface, a rotary switch, DIP switches and potentiometers are available to adapt the charge algorithm to a particular battery and its conditions of use. Please refer to the manual for a complete overview of the possibilities Skylla-i 24/100 (3) Important features: Synchronised parallel operation Several chargers can be synchronised with the CAN bus interface. This is achieved by simply interconnecting the chargers with RJ45 UTP cables. Please see the manual for details. The right amount of charge for a lead-acid battery: variable absorption time When only shallow discharges occur the absorption time is kept short in order to prevent overcharging of the battery. After a deep discharge the absorption time is automatically increased to make sure that the battery is completely recharged. Preventing damage due to excessive gassing: the BatterySafe mode If, in order to quickly charge a battery, a high charge current in combination with a high absorption voltage has been chosen, the Skylla-i will prevent damage due to excessive gassing by automatically limiting the rate of voltage increase once the gassing voltage has been reached Less maintenance and aging when the battery is not in use: the Storage mode The storage mode kicks in whenever the battery has not been subjected to discharge during 24 hours. In the storage mode float voltage is reduced to 2,2 V/cell (26,4 V for 24 V battery) to minimise gassing and corrosion of the positive plates. Once a week the voltage is raised back to the absorption level to ‘refresh’ the battery. This feature prevents stratification of the electrolyte and sulphation, a major cause of early battery failure. To increase battery life: temperature compensation Every Skylla-i comes with a battery temperature sensor. When connected, charge voltage will automatically decrease with increasing battery temperature. This feature is especially recommended for sealed lead-acid batteries and/or when important fluctuations of battery temperature are expected. Battery voltage sense In order to compensate for voltage loss due to cable resistance, the Skylla-i is provided with a voltage sense facility so that the battery always receives the correct charge voltage. Suitable for AC and DC supply (AC-DC and DC-DC operation) The chargers also accept a DC supply. Use as a power supply As a result of the perfectly stabilized output voltage, the Skylla-i can be used as a power supply if batteries or large buffer capacitors are not available. Li-Ion (LiFePO4) ready Simple charger on-off control can be implemented by connecting a relay or open collector optocoupler output from a Li-Ion BMS to the remote control port of the charger. Alternatively complete control of voltage and current can be achieved by connecting to the galvanically isolated CAN bus port. Learn more about batteries and battery charging To learn more about batteries and charging batteries, please refer to our book ‘Energy Unlimited’ (available free of charge from Victron Energy and downloadable from www.victronenergy.com).

 Open the catalog to page 1
Skylla-i-2

Input voltage range (VAC) Input voltage range (VDC) Maximum AC input current @ 180 VAC Power factor Charge voltage 'absorption' (VDC) (1) Charge voltage 'float' (VDC) Charge voltage ‘storage’ (VDC) Charge current starter batt. (A) Charge algorithm Charge algorithm, Li-Ion 3 stage, with on-off control or CAN bus control Temperature sensor Can be used as power supply Remote on-off port CAN bus communication port (VE.Can) Two RJ45 connectors, NMEA2000 protocol, galvanically isolated Synchronised parallel operation Alarm relay Forced cooling Battery reverse polarity (fuse) Operating temp. range Output...

 Open the catalog to page 2

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