A cyclist riding in an aero-tucked position on an open road

01 / DEVELOPMENT

Performance Cycling Apparel Developed Around Four Aero Units

Brand product leads, cycling federations and team technical staff bring us pattern and fabric questions they need answered in specifics.

Start a development conversation

Binary-blend fabric development. Sample-stage pattern work. No bulk production runs of our own.

02 / THE LINE

What We Develop: Four Aero Units

Each unit is engineered around one specific problem, separately from the others.

01 / TORSO

Aero Jersey

Solves torso drag through seam placement and panel mapping built for a tucked riding position.

See the Aero Jersey page →

02 / EXTREMITY

Aero Socks

Solves lower-leg compression that holds shape through a race distance.

See the Aero Socks page →

03 / EXTREMITY

Aero Gloves

Solves the trade-off between grip and a close aero fit at the hand.

See the Aero Gloves page →

04 / FOOT

Aero Shoe Covers

Solves the foot-level drag gap most kits leave uncovered.

See the Aero Shoe Covers page →

03 / AUDIENCE

Who We Develop For

Three buyer types reach out, each at a different point in their own process.

Brand product leads

Already selling cycling apparel, need pattern-engineering depth their current OEM can't answer in specifics.

Cycling federations and event technical directors

Equipping multiple teams, need judgment specific to each garment part rather than one kit covering everything.

Team technical staff

Choosing equipment specs for a season, need answers grounded in pattern and fabric logic.

Buyers turned away by a generalist OEM

Asked about seam placement, weight tier or compression zoning and got a vague answer back.

04 / AT A GLANCE

Aero Unit Comparison

How the four units differ across the questions buyers ask first.

DimensionJerseySocksGlovesShoe Covers
Primary problemTorso dragLower-leg compressionGrip vs. aero-fitFoot-level drag gap
Who typically asks firstBrand leads, federationsTeam technical staffBrand leadsFederations, teams
Standalone or pairedEitherStandaloneUsually paired with jerseyAdded once jersey or socks are underway
Common pairingOften with glovesRarely paired at first inquiryOften with jerseyPairs with either

Jersey

Primary problem
Torso drag
Who typically asks first
Brand leads, federations
Standalone or paired
Either
Common pairing
Often with gloves

Socks

Primary problem
Lower-leg compression
Who typically asks first
Team technical staff
Standalone or paired
Standalone
Common pairing
Rarely paired at first inquiry

Gloves

Primary problem
Grip vs. aero-fit
Who typically asks first
Brand leads
Standalone or paired
Usually paired with jersey
Common pairing
Often with jersey

Shoe Covers

Primary problem
Foot-level drag gap
Who typically asks first
Federations, teams
Standalone or paired
Added once jersey or socks are underway
Common pairing
Pairs with either

Talk Through Which Unit Fits Your Situation

Start a development conversation

06 / START HERE

How to Choose Your Starting Unit

The order to think about it in, if you can only start development on one unit.

Torso drag is your sharpest problem

Start with the jersey — seam placement and panel mapping for a tucked riding position.

Start on the jersey
Lower-leg compression is your sharpest problem

Start with socks — compression that holds shape through a race distance.

Start on socks
Grip and hand comfort at speed is your sharpest problem

Start with gloves — the trade-off between grip and a close aero fit at the hand.

Start on gloves
Jersey and socks are already in development

Add shoe covers to close the remaining drag gap.

Add shoe covers

07 / FABRIC LOGIC

Fabric and Weight Logic by Unit

Torso pieces and support pieces are engineered toward opposite priorities.

Close-up of lightweight moisture-wicking mesh cycling fabric

Close-to-body units (jersey)

Lightweight, moisture-wicking mesh and 4-way stretch fabric, prioritized for breathability under sustained effort.

Close-up of compression-knit cycling fabric

Support units (socks, gloves)

A firmer compression-oriented weave, prioritized for shape retention over airflow.

Shoe covers sit between the two, prioritized for aerodynamic surface smoothness. All four units stay inside our binary-blend range: 88/12, 90/10 or 91/9 nylon-spandex. We do not use tri-blend fabrics.

Get a Fabric and Weight Read on Your Unit

Start a development conversation

09 / VERIFY

What to Check Before You Commit

Five questions that separate real performance cycling apparel development from a relabeled generic template.

Can they explain why a seam sits where it does? Seam placement here is argued from panel mapping.

Can they explain why this unit's weight tier is what it is? Fabric weight is sized per unit, not applied from one generic template.

If a sample comes back wrong, does it go into a next revision? The first 2 sample-revision rounds are included at no extra sampling fee.

Is decoration planned alongside the pattern? Sublimation printing and decoration placement are planned alongside panel mapping, before the pattern is fixed.

Does a single-unit question and a full-line question get the same technical answer? They do here. Ordering, roster and season-reorder programs are handled separately from development; the development decision itself sits here.

10 / HOW THEY INTERACT

How the Three Technical Pillars Interact

Pattern engineering, fabric science and decoration constrain each other on every unit we develop.

Pattern and fabric: a seam placement that works on paper can fail if the fabric's stretch percentage pulls the panel out of alignment under motion. The two are decided together.

Fabric weight and decoration: sublimation heat can change the hand-feel of a lightweight mesh if the weight tier wasn't chosen with the print method in mind.

Decoration and pattern: print placement has to route around seam lines and compression zones, or it distorts where the garment moves most.

Pattern, fabric and decoration are planned as one development decision here, not split across three suppliers.

12 / AFTER YOU REACH OUT

What Happens After You Reach Out

Four stages, and what you get at each one.

1

Initial contact and spec intent

You send: your target aero unit and the problem you're solving.

You get: a reply within 24 business hours confirming which unit fits your case.

2

Feasibility and direction

You send: your development spec or reference.

You get: within 48 hours, a feasibility review covering whether it fits our binary-blend fabric range, a suggested pattern and fabric direction, and the next sampling step.

3

Sampling and confirmation

You send: sign-off on the suggested direction.

You get: a physical sample in 5-7 days to confirm against your spec.

4

Ongoing cadence

You send: your go/no-go decision.

You get: the response cadence for the next round of development.

Start the First Stage Now

Start a development conversation

14 / RISK

Sample Revisions and Verification

What happens if the first sample isn't right.

A fabric panel being measured during sample inspection
What counts as not right, and how revisions work

The sample doesn't match the confirmed pattern spec or fabric direction from stage 2. The first 2 sample-revision rounds are included at no extra sampling fee. A change to the original spec starts a new sampling cycle.

What triggers a full resample

A fabric substitution, a pattern change affecting more than one panel, or a decoration method change. Anything smaller stays inside the revision rounds above.

How each round is recorded

Every revision is logged against the confirmed stage-2 spec — what changed, on which panel, and why it changed. The trail sits behind the sample you are holding, so a later decision doesn't rest on anyone's memory of an earlier call. This record-keeping runs inside our ISO 9001:2015 quality management system.

Internal verification before it ships

Samples are checked against the confirmed spec before shipping, aligned with our ISO 9001:2015 quality management system and OEKO-TEX® STANDARD 100 fabric certification.

15 / EXPERIENCE

Development Programs We've Run

Two development programs, described by what the development work involved.

Technical pattern specification pages on a table

A European performance-apparel brand needed a pattern-development partner for a new aero product line. We ran 3 rounds of sample iteration across 2 fabric-weight tiers (lightweight summer mesh and a mid-weight stretch main body), delivering confirmed pattern specs and sample packs.

Fabric-weight swatch cards arranged on a table

A regional cycling federation preparing seasonal gear for multiple teams needed pattern and fabric plans developed separately for two garment categories. Close-to-body torso pieces and support pieces at the extremities were each judged against a different priority. We ran 2 rounds of sampling and delivered two category-specific pattern spec packages.

A garment pattern piece marked up with annotation lines during development

A sample pattern piece, marked up during development.

17 / BOUNDARIES

Capability Boundaries

Three things to know before you reach out.

Bib shorts and chamois

Development and sampling only. We can work from a buyer-supplied chamois pad specification; we do not currently ship finished bib shorts.

Fabric

Binary nylon-spandex blends only, 88/12, 90/10 or 91/9. We do not offer tri-blend fabrics.

Aerodynamic claims

Pattern and seam decisions are argued from pattern-engineering logic. We do not run or cite wind-tunnel test data.

Check Whether Your Project Fits

Start a development conversation

19 / EXTENDED COVERAGE

Extended Coverage: Layers and Accessories

Three situations where you need more than the four core aero units.

Cold starts and warm-up or cool-down

A thermal and windproof jacket or gilet layers over or under the aero jersey before and after the effort.

Crosswind and rain

A windproof layer is cut to go over the aero jersey without loosening the close-body fit the jersey was engineered for.

Heat and sun exposure

Arm and leg warmers and a cycling cap add UV protection and sun coverage without changing the aero core units underneath.

20 / GET IN TOUCH

Start a Development Conversation

Tell us which aero unit you're starting with.