In-house tooling · Shenzhen

In-House Mold Making & Overmold Tooling

We design, machine and maintain the molds we run — 100 tooling sets built to date. That is why a geometry change is a decision between us, not a renegotiation with a third-party shop.

The overmold is where a cable assembly succeeds or fails

On a custom cable, the connector is usually a purchased part. The overmold is not. It is the only part of the assembly that you, your housing and your end user all touch — and it decides three things no datasheet will tell you.

Strain relief

The taper, length and durometer of the overmold decide where the cable bends and how many times it can bend there. Get the geometry wrong and the conductors fatigue at the connector, not in the middle of the run.

Sealing

An IP67 rating is a property of the overmold-to-jacket bond and the insert-to-housing fit, not of the connector alone. Both are tooling decisions made before steel is cut.

Retention

Whether an insert spins, pulls out or walks loose under vibration is settled by the anti-rotation features and cavity fit we build into the tool.

Cost of change

When the mold is in our toolroom, a revision is a quotation for machining. When it sits in someone else’s shop, it is a new negotiation, a new queue and a new lead time.

What we build in-house

All of the following are designed and machined by our own tooling team. We do not broker mold work out.

Tool type What it produces Typical application
Low-pressure injection overmold tools Connector overmolds, strain-relief boots, screw-lock collars USB, DC, RJ45, custom connector overmolds
Insert molds Threaded inserts, captive hardware, panel-mount bezels Panel mount and flush mount assemblies
Vertical injection tools Circular connector bodies, M8/M12 overmolds Sensor and actuator cords, industrial I/O
Sealing and waterproof tools IP67 / IP68 geometries with jacket bond control Outdoor, marine and wash-down equipment
High-temperature tools Silicone and high-temp overmolds High-temperature and silicone wire harnesses
Prototype and bridge tooling Low-cavity aluminium tools for pilot runs Pilot builds before production steel is committed

Seven gates from drawing to production

Tooling lead time is 10 working days from approved mold concept to T1. Prototype samples follow in 3 working days; production runs 14 working days after sample approval.

01

Requirement and DFM review. We read the drawing against the mating parts and return open questions in writing — before any tooling commitment.

2 working days

02

Mold concept and split-line proposal. You see where the halves meet, where the gate sits and how the insert is held, and you approve it.

With the quotation

03

Cavity machining and assembly. Steel selection, electrodes, fit and pre-T1 checks.

10 working days typical

04

T1 sampling. First articles off the tool with a dimensional report.

3 working days · 5 pcs

05

Dimensional and fit check against your drawing and the mating connector.

With T1

06

Correction and re-sample if anything is out. Geometry changes are quoted against the existing tool.

5 working days per round

07

Release to production. Process parameters and inspection criteria are fixed and kept under your part reference.

14 working days after approval

The six decisions that decide whether a mold works

These are the questions we answer in the DFM review, and the ones worth asking any supplier who quotes you an overmold.

Split-line placement
Where the two mold halves meet. It is moved away from grip surfaces and away from seal faces, because flash on a sealing surface is a leak path.
Strain-relief geometry
Bend-limiting taper, length and durometer. Set against the cable’s minimum bend radius, not copied from a previous job.
Insert anti-rotation
Knurls, flats and hex features that stop inserts spinning in service. This is what keeps a screw-lock collar from turning when the user tightens it.
Gate and vent position
Where material enters and where air escapes. On long, thin overmolds, a badly placed gate means short shots and burn marks.
Shrink and bond behaviour
The overmold material is selected for how it bonds to your jacket material, not for hardness alone. A hard material that does not bond is a seal that fails.
Cavity count
Matched to your annual volume so piece price and tool cost are balanced. Over-cavitating a tool for a 500-pcs-a-year part just buys idle steel.

Materials we mold

Material Why it is chosen Typical use
PVC Lowest cost, good bond, wide hardness range General-purpose overmolds, strain relief
TPE Soft touch, flexible at low temperature Handheld devices, cold-environment cables
TPU Abrasion and oil resistance, high elasticity Drag chain, industrial, wearable devices
PP Chemical resistance, low density Medical and chemical-exposed assemblies
PA (nylon) High mechanical strength and temperature resistance Structural overmolds, insert molding
PUR Tough, hydrolysis-resistant, good for outdoor Marine, outdoor and direct-burial builds

Jacket compounds available alongside the overmold: PVC, PUR, TPE, silicone and halogen-free. Material certificates are supplied with traceability to the material lot.

Who owns the mold, and what happens to it

Ownership
Tooling is quoted as a separate line item and belongs to you. It is not amortised into a piece price you cannot see, and there is no rebate scheme to unwind.
Storage and maintenance
We retain and maintain the tool free of charge for 36 months after your last order. Maintenance and refurbishment are our responsibility while it is in our care.
End of life
Expected shot life is stated at quotation for your material and geometry. We tell you when a cavity is approaching end of life — before it affects your parts, not after.
Changes
Geometry changes are quoted against the existing tool. Cavity additions and insert changes are usually far cheaper than starting a new one.
Records
Mold drawings, material lot references and process parameters are kept under your part reference, so a reorder years later matches the original build.

Because the tool is retained under your part reference, repeat runs do not need to be large to be economical: 5 pcs for prototypes, 500 pcs for production.

What we need from you to quote tooling

Twelve items. Send what you have — a drawing plus a mating connector is often enough to start. We will tell you which of the rest actually affect the quotation.

  1. Drawing of the assembly — STEP / STP preferred; IGES, DWG and PDF accepted
  2. Mating connector part number, or a physical sample
  3. Cable specification: conductor size (we run 32–12 AWG), jacket material, outer diameter
  4. Pinout and wiring schedule
  5. Overmold material and colour, or the environment it has to survive
  6. Target IP rating, if any, and the test method you will use
  7. Operating temperature range
  8. Flex or bend requirement: cycles, radius, load
  9. Annual volume and expected order pattern
  10. Target piece price, if you have one — it changes the cavity count we propose
  11. Documentation you need: FAI report, material certificates, test data
  12. Shipping terms: EXW, FOB Shenzhen or CIF

Tooling questions we get asked

Tooling

Do I own the mold?

Yes. Tooling is quoted as a separate line item and the tool is yours. We hold it, run it and maintain it — we do not claim it against your volume.

How long do you keep the tooling?

36 months free of charge after your last order. If you want it released or transferred, we will discuss it when you ask.

Can you modify a mold you built?

Yes, and that is the point of keeping it in-house. Send the revised geometry; we quote the machining, not a new tool.

What files do you need?

STEP or STP preferred. IGES, DWG and PDF are accepted. A physical sample works too — we can reverse-engineer from a part.

Is there a minimum order for a tooling project?

The tooling itself has no minimum. Prototype runs start at 5 pcs, production at 500 pcs.

Do you charge for tooling storage?

No. Storage and routine maintenance are free for 36 months from your last order.

Send the drawing and the mating connector

We will come back with the split-line proposal, the material recommendation, the tooling cost and the piece price — in one document, before you commit to anything.

REQUEST TOOLING QUOTE