Retail Automation · As a Service

Grocery Shelf RestockingShelf replenishment,
as a service.

Your grocery shelves, restocked every night — as a service. You don't buy a robot or manage a fleet; we run the shift.

The Problem

Robots that can stock a shelf still can't save you money.

Most stocking robots run at 60–75% of a human worker's throughput — so on paper they "work," but on the P&L they lose money. Overnight shifts are brutal to staff and turnover is constant. And every hour an aisle sits unstocked is an hour of lost sales. The problem was never whether a robot could physically place a can on a shelf. It's whether the whole operation — sequencing, routing, uptime — pencils out against a human crew.

How It Works

Built to stock more, in less time

Every route and every pick is planned before the robot moves — so a full shift adds up to more shelf stocked, not more distance traveled.

The right aisles first
High-turn SKUs and empty facings get restocked before low-priority backstock.
Fewer trips
Batched picks and shorter routes — the way a stocker who's worked the floor for five years would do it.
More shelf per shift
Fewer wasted motions means more cases stocked in the same overnight window.

Route Planning, Visualized

Every stop is sequenced before the shift starts.

The Commercial Model

You don't buy a robot.

01
We map your store.
Layout, SKU distribution, replenishment patterns, blocked paths.
02
We deploy and operate.
Our robots, our software, our monitoring. Your team does nothing differently.
03
You pay per shift.
No capital expense, no maintenance contract, no robotics hire.

Book a Pilot

Let's talk about a pilot.

We're onboarding a small number of grocery and retail operators for paid pilots. Tell us about your store — layout, hours, current restocking pain — and we'll scope what a shift with Mimicus looks like for you.

Mimicus

What's Next

Beyond the shelf

Shelf replenishment is the first workflow, not the last.

The operational intelligence that makes a restocking robot economical applies to any repetitive physical work where sequencing and wasted motion decide whether automation pays for itself.