Research & Development
For the interface that doesn't exist yet

Research & Development

ALMAX develops materials, inks, constructions, and processes for stretchable, in-mold, hybrid, and printed electronics — then moves what works onto the same production floor that builds our keypads. R&D here is not a lab that hands off; it is the front end of a factory.

ISO 9001:2015 · ISO 13485 · IATF 16949 · 100% ALMAX-owned manufacturing

What we develop

AreaWhat it isWhere it goes
Stretchable circuitsConductive traces printed on thermoplastic polyurethane (TPU) that survive repeated 20–50% strain, with the mechanics designed so the ink stretches with the substrate rather than against itWearables, medical patches, soft robotics, garments, curved interiors
In-mold electronics (IME / IMSE)Circuits and sensors printed on film, then formed and back-molded into a single structural part — the electronics become the housingAutomotive interiors, appliance panels, curved and sculpted controls
Hybrid electronics (FHE)Print what you can — traces, sensors, antennas, heaters — and place what you can’t: controllers, LEDs, batteries — including conductive-adhesive attach for heat-sensitive substratesSmart labels, wearables, thin single-board devices
Printed componentsHeaters, antennas, resistors, batteries, displays, and solar cells produced by screen printingThermal management, RFID/NFC, energy harvesting, low-power indication
Printed sensors & electrodesTouch, force, strain, humidity, temperature, and biomedical electrodes (Ag/AgCl, glucose, and related electrochemical constructions)Medical wearables, diagnostics, fitness, structural monitoring
Transparent conductorsPEDOT and related transparent conductive layers for see-through touch and heatingDisplays, windows, lenses
E-textilesConductive constructions integrated into fabric, with washing and flex life as the testGarments, seating, soft goods
Interface constructionsNew tactile, rotary, and touch mechanisms — the line of work that produced SnapMax®, MaxRotor®, and SensTouch®Any keypad or interface program

How an R&D program runs

R&D at ALMAX runs in gates. You can stop at any gate with a report, a proven coupon, or a working prototype in hand.

  • Feasibility (NDA first). A question with a number in it — “can a printed heater hold 40 °C on a curved 2 mm polycarbonate at 12 V?” — and a written answer: yes, no, or what it would take. Deliverable: a feasibility memo with the material shortlist and the risk list.
  • Materials and process development. Ink, substrate, adhesive, and encapsulant screened together — a stretchable ink is only as good as the TPU and the encapsulant it is married to. Deliverable: coupons with data: resistance vs. strain, cycle life, adhesion, environmental exposure.
  • Prototype. A working part from the same screen printers, laminators, and SMT lines that run production. Deliverable: prototypes plus test data and a preliminary drawing.
  • Pilot and process lock. A pilot run to establish yield and tolerance; drawings and process sheets frozen. Deliverable: production-intent samples with a capability statement.
  • Production. The construction moves onto the floor — sheet-fed or roll-to-roll — and, when the run rate is known, into Rapid Inventory® for U.S. stock.

What makes ALMAX R&D different — with the trade-offs

  • The lab is the factory. Development runs on production equipment in ALMAX’s own factory: screen-printing stations including fully automatic CCD-registered lines, roll-to-roll printing lines, SMT lines, injection and compression molding, thermoforming, and a quality lab with force, electrical, environmental, and dimensional test. A construction that works here is already on the equipment that will build it. Trade-off: we develop what the floor can make; a process we would have to outsource is one we tell you about early.
  • Materials qualified, not just tried. Every substrate, ink, and adhesive that reaches a prototype is logged in a materials library with the data behind it. Trade-off: a brand-new material takes a qualification cycle before it goes on a customer part.
  • Twenty-plus years of interface constructions. The stretchable and in-mold work stands on decades of membrane, silicone, and capacitive keypad production. Stretch mechanics are keypad mechanics with a different substrate.
  • Certified from the first coupon. Coupons, prototypes, and pilots are built in ALMAX’s own factory, inside the same ISO 9001:2015 and ISO 13485 quality systems as production — the same material control, inspection, and traceability from the first coupon to the production part.
  • Numbers or nothing. Every gate ends with data, not a rendering.

Applications (anonymized examples)

  • Medical wearable. A stretchable sensing patch on TPU with printed Ag/AgCl electrodes and a placed controller, developed through gates 1–4 to production-intent samples.
  • Curved appliance control. A printed capacitive sensor and backlight film formed and back-molded into one structural bezel — no separate keypad, no adhesive line to fail.
  • Printed heater. A screen-printed heater on film for a curved enclosure, replacing a wound-wire element with a thinner, conformal part.
  • Instrument control redesign. A slider and indicator interface re-engineered from discrete parts into a single printed-and-placed assembly with firmware.

FAQ’s

Do you do R&D for outside companies, or only for your own products?

For customers, first. ALMAX develops constructions to your requirement; internal development exists so that the next customer starts further ahead.

Can you work with our university or research partner?

Yes — we routinely take a construction from a research demonstration to a manufacturable part; that transfer is most of the work.

What can’t printed electronics do?

Carry power. Printed silver is a signal-level medium — under 50 mA and 1.5 W per trace. Power routes to copper flex or a PCB; we design the boundary between them.

How long does a feasibility study take?

It depends on the study. A question we can answer from the materials library and existing test data comes back as a memo; one that needs coupons printed, cured, and tested takes longer. We set the timeline when we scope the question.

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