The Big Picture
- BREMONT uses a dedicated watch winder in its workshop to put initial power into each movement before quality testing begins.
- Spinning the watch rotates the rotor, which winds the mainspring and starts the watch ticking.
- The winding stage is the first step in a 3-to-4-day long timekeeping assessment.
- After winding, watches are transferred to chronoscopes, which measure whether a watch is gaining or losing time.
- Every watch leaving BREMONT‘s workshop must perform within specified tolerances before it is approved for sale.
A Machine with One Clear Purpose
Tucked into BREMONT’s workshop among the benches and measuring instruments sits a piece of equipment that looks, at first glance, rather unremarkable. The watch winder is not flashy, but its role in the brand’s quality control process is fundamental. Every watch that passes through the workshop encounters this machine before it is allowed to proceed to more advanced evaluation, making it the genuine starting point of BREMONT’s finishing protocol.
The principle behind it is straightforward. By spinning the watch continuously, the winder causes the rotor inside the movement to rotate. That rotation transfers energy through the gear train to the mainspring, which stores it and releases it at a controlled rate. The result is a fully powered, ticking movement ready to be assessed with precision. Without this initial charge, the watches would arrive at the next stage with insufficient energy to produce reliable rate data.
For collectors and enthusiasts who follow BREMONT’s output, from the Moon Mission I to the Supernova 41mm Tourbillon, understanding this stage offers a clearer picture of what underpins the brand’s reputation for accuracy. Quality control is rarely the most visible part of watchmaking, but it is where performance claims are either validated or found wanting.
The 3-to-4-Day Timekeeping Protocol
Once a watch has been fully wound on the winder, it moves into the first of several timekeeping evaluations that together span three to four days. This is not a brief spot check. The extended duration is deliberate: mechanical movements behave differently as the mainspring tension decreases from fully wound to near-depleted, and a multi-day test captures that full arc of performance rather than a single snapshot at peak power reserve.
The instruments at the centre of this stage are the chronoscopes. These are precision devices capable of reading the rate of a movement, expressed in seconds per day gained or lost, with a degree of accuracy that far exceeds what a simple stopwatch could offer. The data they produce tells BREMONT’s watchmakers exactly where each piece sits relative to the tolerances the brand has set for release.
Tolerances and What They Mean in Practice
The word “tolerance” in watchmaking refers to the acceptable band of deviation from perfect timekeeping. No mechanical movement is perfectly accurate in an absolute sense, but the goal is to keep that deviation within a defined range that the brand considers acceptable for the wearer. BREMONT tests each watch against its own stated tolerances, and any piece that falls outside them is returned for adjustment rather than passed through.
This approach connects directly to the broader BREMONT philosophy of building watches that function as genuine instruments, not merely objects of display. The testing sequence, winder first, chronoscope second, is structured to catch rate problems early and correct them before a watch reaches its owner, wherever that owner may be, whether in London, Dubai, or Riyadh.
Workshop Discipline Behind Every Release
The brief glimpse into the workshop that this video provides is a reminder that the finished watch a collector receives has already spent the better part of a working week being assessed, corrected, and confirmed. The watch winder, for all its simplicity, represents the point at which a movement transitions from assembly to verification. Nothing proceeds until the mainspring is charged and the watch is demonstrably running.
For the GCC market, where collectors are increasingly knowledgeable about movement quality and after-sales performance, this kind of transparency about process carries genuine weight. Buyers in Dubai and Doha are not simply purchasing a name; they are investing in the confidence that the piece on their wrist has passed a structured, documented test sequence before it ever left the manufacturer’s hands.
Why It Matters
BREMONT’s workshop winding and chronoscope protocol represents the practical infrastructure behind every accuracy claim the brand makes. For collectors across the GCC who place high value on mechanical reliability and verifiable quality standards, understanding this process adds a meaningful layer of confidence to any purchase decision. It also illustrates why the gap between an assembled movement and a market-ready watch can be measured in days, not hours.
Stay ahead of the latest releases. Subscribe to our newsletter for editor-curated coverage of luxury timepieces and jewellery across the GCC.
Frequently Asked Questions
What does the watch winder in BREMONT's workshop actually do?
The watch winder spins each watch to rotate its rotor, which in turn winds the mainspring and puts power into the movement, starting the watch ticking. It is the first step in BREMONT's multi-day quality control process.
How long does BREMONT's timekeeping test take?
After leaving the watch winder, BREMONT timepieces go through a 3-to-4-day testing period during which their rate accuracy is evaluated on chronoscopes to confirm they are neither gaining nor losing time beyond specified tolerances.
What is a chronoscope and how does BREMONT use it?
A chronoscope is a precision instrument that measures the timekeeping accuracy of a watch. BREMONT uses chronoscopes following the initial winding stage to verify that every watch leaving the workshop performs within the brand's stated tolerances.


