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G98 vs G99: what decides which one you need

G98 and G99 are decided by one number: 16A per phase, measured across everything installed at the property, not per device. What that means for solar, battery and EV charger jobs, and the edge case most guides skip.

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Jamie Duncan

Jamie Duncan

Head of Customer Operations·31 August 2026
G98 vs G99: what decides which one you need

G98 and G99 are the two Energy Networks Association routes for connecting generation and storage equipment to the electricity grid. Which one applies comes down to a single number: 16A per phase, measured across everything installed at the property, not per device. Under that, you install and notify the DNO afterwards. Over it, you need approval before you start. Our DNO application checker works out which route a specific job needs from the postcode, the technology and what is already installed there.

Key points

  • The threshold is 16A per phase - 3.68kW on a single-phase supply, 11.04kW on three-phase - and it covers everything installed at the premises, not one device
  • Adding a second system to a property that already has generation can push the combined total over the line, even when the new device looks small on its own
  • G98 is connect, commission, then notify within 28 days. G99 is apply and wait for approval before you install
  • A system that will not normally run in parallel with the grid for more than five minutes a month, or is designed to island, goes through G99 regardless of size
  • Multi-technology jobs - solar plus battery plus EV charger prep - are where installers most often get the route wrong

Working out G98 or G99 automatically

Payaca determines the application type from what you select on the job - heat pump, EV charger, battery, V2G, solar panel - and tracks it through to commissioning. See how it works.

The number that decides it

Both standards come from the same source: EREC G98 and EREC G99, published by the Energy Networks Association. A micro-generator is defined as equipment "designed to operate in parallel with a public Low Voltage Distribution Network with nominal currents up to and including 16A per phase," and the standard applies that limit to the aggregate capacity installed at the premises, not to each device separately.

On a standard single-phase domestic supply, 16A works out to 3.68kW. On three-phase, it is 11.04kW. Anything at or under that goes through G98. Anything over it needs a full G99 application, with a technical assessment and formal approval before you connect. What triggers a G99 rejection, and how the assessment timescales vary by network covers what happens once a job is over that line.

It is not a per-device test

The line most guides skip is that the 16A figure applies per premises, not per box, and the ENA definition names storage devices specifically. A 4.2kWp solar array with a 3.68kW inverter sits right at the G98 boundary on its own. Add a 3kW battery inverter for storage later, and the property's combined capacity moves to 6.68kW - comfortably into G99, even though neither piece of kit looks large by itself.

This catches retrofit jobs more than new-build ones, because the first installer often has no visibility of what is already on site. If the property already has solar registered under G98, a second contractor adding a battery needs to know the existing capacity before they can tell which route the new work needs. Export limitation and the G100 route covers the one way to keep a combined system under the threshold without dropping capacity.

Install first, or apply first

For a single premises under the threshold, G98 does not involve the DNO before you connect. Your installer commissions the system, then submits the G98 installation document within 28 days. It is a legal requirement, not a courtesy, but it does not sit on the critical path of the job.

G99 reverses the order. The application goes in, the DNO assesses it against network capacity, and only once you have approval - or approval with conditions - can you install. That puts G99 squarely on the job's critical path, which is why getting the application right first time matters more than it would for a G98 notification.

There is a third route worth knowing if you run installation programmes rather than one-off jobs: G98 also has a multiple-premises path for connecting several systems in the same close geographic region within 28 days, which does involve notifying the DNO before you install rather than after. It is a different process from single-premises G98, and easy to miss if you are used to the connect-and-notify version. When the DNO replies and nobody notices is about the same category of process gap - status changes that need a response and do not always get one.

The edge case that overrides the number

EREC G99 also covers equipment that would otherwise qualify for G98 on capacity alone, if it does not normally run in parallel with the public network. Anything designed to connect for less than five minutes a month, or to operate islanded rather than exporting to the grid, falls outside the micro-generator definition and needs a G99 application regardless of size. It is a narrow case in practice, but it is the kind of detail that gets an otherwise straightforward domestic job bounced if nobody checks for it.

Multiple technologies, one aggregate total

Solar panels, batteries with grid-tied inverters and V2G chargers all count toward the same premises total, because they can generate or export in parallel with the network. Heat pumps and standard EV chargers sit on the demand side, so they matter for the load calculations but not for the 16A generation aggregate. A job that adds solar, a battery and prepares wiring for an EV charger can cross the 16A threshold even when each piece read as G98-eligible on its own datasheet. Solar PV commissioning under MCS and heat pump commissioning under BUS V5 cover the certification side of the same multi-technology jobs.

This is where a spreadsheet approach breaks down fastest, because the person filling in the DNO form for the battery add-on is rarely the person who filed the original solar notification. Payaca's DNO application card lives on the project itself, so the devices on a job and their capacities are recorded on that project's DNO application, not buried in a previous engineer's paperwork. See grid connections for how the application, the type search and the commissioning submission sit together.

Getting the route wrong costs time either way. File G98 when the job needed G99, and you have installed ahead of an approval you were required to get - a compliance problem, not just a paperwork one. File G99 when G98 would have done, and you have added weeks to a job that did not need them. Automating commissioning submissions and DNO works required: what the status means cover what happens on the other side of a correctly filed application, once the DNO responds.

Related reading: G99 applications: when you need one, and how to get it approved first time | Do you need MCS to install solar PV? | Export limitation and the G100 route | What software solar businesses actually use

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