How to Wire 48A Level 2 Dual Port EV Charging Station

Wiring Dual Port Level 2 EV Charging Station Using Two 60A or One 120A Breaker

Leviton’s Dual Port EV Charging Station

The Leviton EV48S-DP 48A Dual-Port Level 2 Electric Vehicle Charging Station is designed to simultaneously charge two electric vehicles from a single wall-mounted charging station. Each charging port delivers up to 48A of continuous charging current at 208–240V AC, making it ideal for commercial, workplace, fleet, multifamily, and public charging applications.

The charger supports two hardwired installation methods i.e. two independent 60A branch circuits (one dedicated circuit for each charging port) or one 120A branch circuit supplying both charging ports. In other words, the charger can be powered by either two individual 60A circuits or a single 120A circuit, depending on the installation requirements.

The charging station features two built-in SAE J1772 charging connectors, making it compatible with most electric vehicles. Tesla vehicles can also be charged using a compatible NACS (Tesla) to J1772 adapter.

With high-speed Level 2 AC charging, each charging port can deliver up to 47 miles (76 km) of driving range per hour of charging when operating at 48A – 240V.

In addition, the charging station is compatible with the AmpUp Charging Station Management Software (CSMS) platform for remote monitoring and management. It also supports RFID card authentication, allowing charging sessions to be enabled, controlled, and managed securely for authorized users.

Good to Know: The EV48S-DP is designed specifically for commercial EV charging applications. For residential installations, including standard and smart home charging stations, refer to the Leviton’s EV Series Charger and Station Wiring Guide for hardwired and plug-in installations.

How to Wire 48A Dual Port EV Charging Station with One 120A or Two 60A Breakers

Electrical Ratings & Specifications

Mounting the Charger

Before installation and routing the conductors for both methods, confirm the service panel has adequate available capacity for the selected method (120A single circuit, or 60A x 2 = 120A combined if run as two circuits) using a proper load calculation per NEC Article 220 and 625.

Verify the wall or mounting surface can support the 37 lb (16.8 kg) charger and confirm mounting height of 48 inches in. (1200–1300 mm) from grade to the top of the mounting template, adjusting for ADA requirements where applicable.

Mount the charger per the wall-mount procedure (Torx key removes the two mounting-bracket screws; bracket is anchored to the wall with the four M6 expansion screws at the marked hole pattern; charger body then hangs on the bracket notch and is secured with the two retained screws at the bottom).

To do so:

  1. Install the mounting template approximately 48 inches above the finished floor.
  2. Mark and drill the mounting holes. Install the wall anchors and secure the mounting bracket.
  3. Lift the charger onto the bracket and fasten the retaining screws supplied with the charger.
  4. Install the cable entry depending on the wiring method (shown below):
    • For individual branch circuits, install the supplied conduit fitting for multiple cables.
    • Feed both branch circuits through the conduit fitting into the wiring compartment.

Method 1: Wiring with Two Individual 60A 2-Pole Breakers

The Leviton EV48S-DP Dual-Port level 2 electric vehicle charging station is designed to simultaneously charge two electric vehicles from a single wall-mounted charging station. Each charging port delivers up to 48A continuous output at 208–240V AC. This feature makes it suitable for commercial, workplace, fleet, multifamily, and public charging applications. The charger supports either two independent 60A branch circuits (one for each charging port) or one 120A branch circuit supplying both ports.

The charger terminal block provides two sets of line terminals which is marked L1/L2 (Port 1) and L1(1)/L2(2) (Port 2) plus a GND terminal (as shown i fig). In this method the two circuits remain electrically separate all the way to the terminal block i.e. no shorting terminals are used.

The following installation tutorial shows the dual-circuit method, where each charging port is supplied by its own dedicated 60A, 2-pole circuit breaker.

Good to Know: Choose this method when you want each port to operate independently. For example, if you want charging on one port to continue uninterrupted while servicing the circuit for the other, or when panel design favors two smaller breakers over one large one. This is because the wiring setup supplies each output port from its own dedicated 60A, 2-pole branch circuit.

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How to Wire Dual Port EV Charging Station with Two Individual 60A 2-Pole Breakers

Step-by-Step Wiring Procedure

  1. Switch off the main breaker as well as both upstream 60A breakers to disconnect the power. Remove the cover of charger and panel to access the wiring terminal block and panel. If the breakers are not installed, make sure there are 4 empty slots in the panel. Snap over two 60A – 240V, 2-pole breakers on two adjacent busbars.
  2. Route Circuit 1’s phase conductors through the installed cable fitting and into the wiring compartment.
  3. Connect Circuit 1’s two phase (i.e. L1 (Hot 1) as black wire & L2 (Hot 2) as red wire) conductors from 1st 60A-2P breaker to the terminals marked L1 and L2.
  4. Route Circuit 2’s phase conductors through the fitting (using the second conduit run or the multi-cable conduit fitting).
  5. Connect Circuit 2’s two phase (hot) conductors from 2nd 60A 2-pole breaker to the terminals marked L1 (1) and L2 (2).
  6. Connect the equipment grounding conductors (Green wires or bare conductors) from both circuits to the terminal marked GND (as shown in wiring diagram)
  7. Torque all terminal screws to the manufacturer’s specified torque value (refer to the terminal block label)
  8. Secure conductors with the supplied cable clamp and self-tapping screws (if using the cable gland).
  9. Reinstall the wiring access panel and charger’s front cover. Snaps into place around the full perimeter, then reinstall the two retaining screws.
  10. Energize the charging station by turning ON circuit 1 and circuit 2 breakers. During startup, the charger performs a self-test. The LEDs illuminate in sequence before entering standby mode.

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Method 1 - Wiring Dual Port EV Charging Station with 2 Individual 60A 2-Pole Breaker

Good to Know:

Method 2: Wiring Using a Single 120A 2-Pole Breaker

Unlike the dual-circuit installation described in method 1, this method supplies both 48A charging ports from a single 120A, 2-pole branch circuit. The EV48S-DP is internally designed to support this configuration by electrically connecting the two input terminal sets using the supplied shorting terminals (bus links).

Because a single circuit must feed both sets of line terminals, you will have to use the shorting terminals that bridge L1 to L1 (1) and L2 to L2 (2) at the terminal block. This internally parallels the two port terminal sets so one incoming circuit energizes both (as shown in the fig below).

When only one feeder supplies the charger, the L1 / L2 and  L1 (1) / L2 (2) terminals must be electrically connected using the supplied shorting terminals before connecting the incoming conductors from 120A breaker. These factory-supplied links distribute power from the single branch circuit to both charging modules.

By doing so, this wiring configuration simplifies the installation by requiring only one feeder and one overcurrent protective device and allows both charging ports to operate from the same branch circuit.

Good to Know: This method is suitable when panel space is limited to a single large breaker position. This wiring installation supplies both output ports in the charger from a single branch circuit protected by one 120A, 2-pole breaker.

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How to Wire Dual Port EV Charging Station Using a One 120V 2-Pole Breaker

Step-by-Step Wiring Procedure

  1. Confirm the charger cover and wiring access panel have been removed, and the upstream 120A breaker is OFF. If not already installed, snape a 2-Pole, 120A – 240V breaker in two empty slots on hot busbars.
  2. Install the supplied shorting terminal set which connects L1 to L1 (1) and L2 to L2 (2) as shown in fig.
  3. Route the single circuit’s two phase (L1 (Hot 1) as black wire and L2 (Hot 2) as red wire) conductors through the installed cable fitting into the wiring compartment.
  4. Connect the phase (hot) conductors to the terminals marked L1 and L2 (the shorting terminals will carry the connection through to L1 (1)/L2 (1) and out to both ports).
  5. Connect the single circuit’s equipment grounding conductor (green or bare conductor) to the terminal marked GND.
  6. Torque all terminal screws to the manufacturer’s specified value, including the shorting terminal hardware.
  7. If using the cable gland, secure the cable with the supplied cable clamp and self-tapping screws.
  8. Reinstall the wiring access panel and charger’s front cover to confirm it snaps into place around the full perimeter, then reinstall the two retaining screws.
  9. Restore power at the upstream breaker 120A breaker. The status light on unit should cycle Blue, Green, and Red on power-up, then settle to solid Blue (Standby) once initialization completes.

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Method 2 - Wiring Dual Port EV Charger using a single 120A, 2-Pole Breaker

Good to Know:

RFID Card Activation and Setting the Charger with AmpUp

To add the dual port charger in AmpUp charging station management software, activate the charger by following these steps:

  1. Visit the AmpUp activation page or scan the QR code on the green AmpUp sticker attached to the charger.
  2. Select the charger brand and click Continue.
  3. Review the checklist, then click Get Started.
  4. Enter your name, email address, and phone number.
  5. Select an existing site or create a new one.
  6. If creating a new site, enter the installation address, host contact information, and the electrical panel capacity limit.
  7. Follow the remaining on-screen instructions to complete the activation process.

Enabling or Disabling RFID Access Control

Device → Settings → RFID Card

Good to Know

Status Light Indicators

The LED indicator shows the operating status of all Leviton EV Series chargers. Refer to the table below for the meaning of each LED indication.

Light Status Indication
Blue, Green, Red (running clockwise) Power On – startup sequence
Solid Blue Standby
Solid Green Charger connected to vehicle
Green, blinking Waiting for authentication (swipe card)
Green, breathing Charging in progress
Solid Green Finished / stopped charging
Solid Yellow Reservation charging
Yellow, blinking Device unavailable
Yellow, breathing OTA (firmware update) in progress
Solid Red Fault

Error & Fault Codes

The red status LED flashes a count corresponding to the fault type below, followed by a 3-second pause before repeating.

Fault Red Light Pattern Recovery
Meter Fault 1 flash + 3s pause Auto recover
CP Fault 2 flashes + 3s pause Unplug connector to recover
UVP 3 flashes + 3s pause Auto recover
OVP 4 flashes + 3s pause Auto recover
OTP 5 flashes + 3s pause Auto recover
OCP 6 flashes + 3s pause Unplug connector to recover
Ground Fault 7 flashes + 3s pause Unplug connector to recover
Relay Fault 8 flashes + 3s pause Unplug connector to recover
RCD Abnormal 9 flashes + 3s pause Unplug connector to recover
RCD Self-Test Fault 10 flashes + 3s pause Reboot to recover
Relay Self-Test Fault 11 flashes + 3s pause Reboot to recover
Sensor Fault 12 flashes + 3s pause Check sensor or contact after-sales
Cable Fault 13 flashes + 3s pause Check cable or contact after-sales

Instruction and Precautions

Disclaimer:

The author will not be liable for any losses, injuries, or damages from the display or use of this information or if you try any circuit in wrong format. So please! Be careful because it’s all about electricity and electricity is too dangerous. If you are unsure, contact a licensed electrician to do it according to the local area codes.

Resources:

EV Charger Wiring Series

Smart Devices Wiring Series

Wiring Standard GFCI & Breakers

Main Panels Wiring Tutorials

Wiring General Outlets & GFCI/AFCI Receptacles

Sizing Breakers, Wires & Panels

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