Webasto Charging Systems Inc CSG1SAE-032016

Webasto Charging Systems Inc CSG1SAE-032016 is a Level 2 home EV charger from Webasto Charging Systems Inc with up to 32 A (7.68 kW) output and a J1772 connector — 20 ft cable, non-networked operation.

Charging
Connector type J1772
Max output current 32 A
Max output power 7.68 kW
Input voltage 240 V
Smart features
Wi-Fi / app connected No
Installation
Cable length 20 ft
Certification
ENERGY STAR certified Yes
Efficiency
Standby power draw 2.31 W

How fast does the Webasto Charging Systems Inc CSG1SAE-032016 charge?

Real charging speed is the lower of the charger's 7.68 kW output and each vehicle's onboard AC limit. Full-charge times and range added per hour on the Webasto Charging Systems Inc CSG1SAE-032016:

Vehicle Real rate 0–100% Range/hr
Tesla Model Y 7.68 kW 9.8 h 33 mi
Tesla Model 3 7.68 kW 9.8 h 37 mi
Ford Mustang Mach-E 7.68 kW 11.8 h 27 mi
Chevrolet Equinox EV 7.68 kW 11.1 h 29 mi
Hyundai Ioniq 5 7.68 kW 10.9 h 29 mi
Ford F-150 Lightning 7.68 kW 17.1 h 19 mi

EV compatibility

The Webasto Charging Systems Inc CSG1SAE-032016's J1772 connector plugs directly into 23 of the 29 EVs tracked in this database. The other 6 (Hyundai Ioniq 5, Tesla Cybertruck, Tesla Model 3, Tesla Model S, Tesla Model X, Tesla Model Y) work with it too — requires a J1772-to-NACS adapter (Tesla includes one with its vehicles).

Unsure which port your car has? See J1772 vs NACS for home charging.

Similar chargers

Frequently asked questions

Is the Webasto Charging Systems Inc CSG1SAE-032016 ENERGY STAR certified?

Yes, the Webasto Charging Systems Inc CSG1SAE-032016 is ENERGY STAR certified for standby energy efficiency.

Does the Webasto Charging Systems Inc CSG1SAE-032016 have Wi-Fi or app control?

No, the Webasto Charging Systems Inc CSG1SAE-032016 is a non-networked charger without app connectivity.

What size breaker does the Webasto Charging Systems Inc CSG1SAE-032016 need?

At its maximum 32 A output the Webasto Charging Systems Inc CSG1SAE-032016 needs at least a 40 A circuit, per the NEC rule that continuous loads may use only 80% of breaker capacity.

Sources