ERL100 eVision retract bow/stern thruster 48V

Call 954-577-2850 or Send Enquiry for Pricing

The ERL100 is a highly efficient, compact, lightweight retract thruster suitable for boats between 35-55 feet. The integrated inverter for variable speed control makes for a quick and easy installation.

ERL100 has the new 6-phase PMSM synchronous motor made explicitly for marine thruster use, delivering performance and runtime never seen before in a DC thruster. The unit is compact with bevel gears, making it perfect for boats with limited height space.

  • Up to 50% lighter
  • Compact design
  • Industry-leading runtime
  • Active air cooling
SKU: ERL100/185T-48V Categories: ,

Product Description

X-Yachts on Sleipner’s ERV100 Thrusters for the XC-47 Sailboat

X-Yachts shares their experience with Sleipner’s advanced ERV100 retract thrusters, highlighting the ease of single-handed sailing with proportional control and the hold function. Discover why Sleipner’s technology is their trusted choice for precision and solo sailing.

Properties
S-LINK™

S-Link™ is a CAN-based control system used for communication between Sleipner products installed on a vessel.

  • Compact and waterproof plugs
  • Keyed and color-coded connectors to ensure correct and easy installation
  • Different cable lengths, extenders and T-connectors makes the system scalable and flexible to install
Q-PROP™

The Q-PROP™ has measured noise reductions of up to 75% in controlled environments. The five-bladed skew propeller reduces noise levels while maintaining exceptional efficiency. Some thruster models even see an increase in thrust power.

  • The expected noise reduction in average installations: 20-40%
  • Upgrade kits are available for most Sleipner thruster models with special adaptors
PRO™

A PRO™ thruster system enables you to apply only the necessary power to complete your maneuver. The variable speed control eliminates the noise associated with standard on/off thrusters.

The system also includes a practical hold-function. In a dual system (bow and stern) a single press of a button will keep you alongside the docks – making docking truly a one-person job.

Speed controlled thrusters are the best choice for joystick interaction.

HOLD-FUNCTION

Docking your vessel has never been easier. With a single press of a button, you can rely on your thrusters to maintain the boat controlled against the dock while stepping off to secure the lines — making docking truly a one-person job.

IGNITION PROTECTION

Ignition-protected products are compliant with ISO 8846 to operate safely in hazardous environments where gasoline vapors or other flammable gases might be present.

OVERHEAT PROTECTION

When high temperatures are detected, On/off thrusters are automatically shut off to prevent overheating. PRO™ thrusters with speed control provide extended run-time by derating power to maintain temperature within safe levels.

SAFE START-UP

This control panel use dual ‘on’ buttons to prevent accidental activation for a child-safe environment.

SEALED DRIVE LUBRICATION

The thruster gearleg is pre-filled for lifetime lubrication and sealed using a long-time mechanical seal with ceramic and carbon surfaces for ultimate security against water intrusion.

FLEXIBLE COUPLING

Flexible coupling protects the product’s driveline by compensating for minor misalignments between the shafts of the thruster motor and gearleg.

TWIN PROPELLERS

Twin propellers can provide more thrust than a single propeller system in the same tunnel diameter. We use this system in our mid-range models, where high thrust is required in small tunnel diameters. Due to the compact design and high performance, the twin models have become the thrusters of choice among boatbuilders worldwide.

⚙️ Main power
Power supply 48V DC
Nominal voltage 42V DC
Current consumption A 150A
Power output at nominal voltage 5.6kW / 7hp
Recommended fuse A ANL 125
❄️ Cold Cranking Amps (CCA)
Minimum battery CCA (DIN) 150
Minimum battery CCA (SAE) 285
Minimum battery CCA (EN) 255
🔔 Alarms
Alarm notification Via the product’s control device
🚤 Performance & features
Motor cycle duty Runtime @ 100% thrust: Continuous @ 22degC ambient, typically limited by battery capacity
📊 Thrust ratings
Thrust at 48V 100kg / 220lbs
Thrust at 42V 100kg / 220lbs
🧩 Features
Q-Propeller Yes
Twin Propellers Yes
Sealed Drive Lubrication Yes
IP – Ignition Protection Yes
Variable Speed Control Yes
S-Link Yes
Overheat Protection Yes
Flexible Coupling Yes
Safe Start-Up / Child safety Yes
Hold Thrust Yes
Ceramic Seals Yes
Intelligent Power Control Plus Yes
Industry leading efficiency Yes
Plug and play signal cables Yes
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ERL_high_d_ychzUaO.png ERL_high_d_ychzUaO.png
📏 Dimensions
(H) Height 245mm / 9in
(+H) Additional Height 94mm / 3in
(L) Length 563mm / 22in
(+L) Additional Length 293mm / 11in
(W) Width 356mm / 14in
(ID) Internal Diameter 185mm / 7in
(WD min.) Minimum Water Depth 185mm / 7in
(RD) Retract Depth 275mm / 10in
(RW) Retract Width 195mm / 7in
(MW) Mould Width 265mm / 10in
(MH) Mould Height 72mm / 2in
(CT) Cable Terminal M8
🔧 Installation capability
Bow Capability Yes
Stern Capability Yes
Retractable Capability Yes
⛵ Ideal vessel integration
Typical vessel class Motor boat, Sail boat
Typical vessel size 12-17m / 39-55ft
⚖️ Product weight
Net weight 51.5kg / 113lbs
Are Lithium-ion (Li-ion), LiFePO4 or Lithium batteries a good solution for thruster battery banks?

Not necessarily. These systems typically come with a Battery Management System (BMS) that will disconnect the thruster in case of any issue with the battery (for instance, if the thruster draws more current than the BMS allows). Just imagine a sudden cut-out in the middle of a maneuver without any pre-warning.

At Sleipner, we recommend a solution with a simple, separate battery and without a disconnect BMS system (such as the lead acid bank frequently used for starting or similar). The helmsman will then be warned when the battery is getting low and feel that the thrusters are gradually losing power, which is significantly better than losing your thrusters without any pre-warning.

Disclaimer: Ensure battery/energy source is installed according to CE/ISO current rules and regulations and by licensed electricians.

Can I use LiFePO4, Lithium or Lithium-ion batteries for my thrusters?

Yes, you can, but not without taking some precautions. Sleipner produces two product lines of thrusters that will work well with high-capacity batteries and one product line which should be used with caution in combination with LiFePO4, Lithium, Li-ion, or similar batteries, which may be capable of delivering higher voltage under load than traditional batteries (such as lead-acid, AGM, gel or similar).

All Sleipner proportional thrusters will work well with Li-ion or LiFePO4 batteries, as the included PPC unit will control the output voltage to a safe level for the thruster. Make sure, though, that you actually get a good battery intended for maritime use. NB – make sure you have the latest embedded software installed.

All Sleipner eVision thrusters have built-in functionality to limit the maximum voltage delivered to the thruster. Again, make sure your battery is intended for maritime use.

Traditional DC on/off thrusters may be damaged or have a reduced life expectancy if operated at voltage levels outside their specifications.

Disclaimer: Ensure battery/energy source is installed according to CE/ISO current rules and regulations and by licensed electricians.

Can the thruster cause the BMS (Battery Management System) to disconnect the batteries?

Yes. Most engineers would tell you that it is not ideal for connecting the bow thrusters to a service bank protected by a Battery Management System. Thrusters are heavy consumers, and they may create sudden peaks in current draw, which again may cause the BMS to disconnect the batteries if the thruster draws more current than allowed. If this happens in the middle of a maneuver, you would be left without thrusters and may lose control of the boat.

Hence, Sleipner recommends that the thrusters be connected to a separate battery bank (that is not lithium) without a Battery Management System that can disconnect the batteries (and consequently the thrusters).

Disclaimer: Ensure battery/energy source is installed according to CE/ISO current rules and regulations and by licensed electricians.

What type of batteries are recommended for thrusters?

Sleipner recommends that the thrusters are connected to a battery bank that is not protected by a Battery Management System (BMS). Typically this means lead-acid, AGM, gel, or similar kinds of batteries. This is important because thrusters draw a lot of currents quickly, and the high amp draw may lead the BMS system to think that there is an issue with the system and consequently disconnect the batteries from the circuit, in which case you would lose maneuverability.

If you have Lithium batteries powering your thrusters, the best advice we can give you is to check the actual voltage measured on the thrusters during operation. Sleipner thrusters are designed to operate within a specific voltage range, and as long as you are within these boundaries, it doesn’t matter for the thruster if the current is delivered by this or that battery pack.

It may also be a very good idea to check the actual current drawn from the battery during full power at the thruster to see that you are not at the limit for the BMS to avoid sudden loss of maneuverability if the BMS disconnects the battery.

With installations where the battery pack is far from the thruster, the higher voltage delivered by LiFePO4 or similar batteries might not be a problem as you will experience a voltage drop through the long cables.

Always make sure you measure your voltage on the thruster to avoid the risk of early thruster wear.

As battery technology is changing rapidly, we always recommend consulting a professional battery supplier.

Disclaimer: Ensure battery/energy source is installed according to CE/ISO current rules and regulations and by licensed electricians.