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Ferroelectric 3D resins for electronics

3Dresyns Ferroelectric / High-Permittivity Resins — choose filled or clear route 3DRESYNS · FERROELECTRIC RESINS HIGH-PERMITTIVITY DIELECTRIC RESINS Choose by route — filled ferroelectric or clear transparent WHICH FERROELECTRIC ROUTE DO YOU NEED? FILLED FERROELECTRIC HP1 BTO70 High-permittivity filled; ferro/pyro/piezoelectric. CLEAR HIGH-PERMITTIVITY HP1 Clear Optically transparent, high-permittivity route. ⚠ Remember: functional dielectric materials for R&D & demonstrators. Validate dielectric, pyro & piezoelectric behavior on the printed part. At-a-glance summary · full product details on the page.

Ferroelectric and high-permittivity 3D resins organized around two visible routes: a BTO70 filled functional route and a clear high-permittivity transparent route for electronics-oriented R&D.

This collection is not a generic “electronics resin” category. The visible products already define two specific material strategies: 3Dresyn HP1 BTO70 as a high-permittivity filled system with ferroelectric, pyroelectric and piezoelectric properties, and 3Dresyn HP1 Clear as an optically transparent high-permittivity route.

Navigate by: filled ferroelectric route, clear high-permittivity route, electro-active function or optical transparency requirement.

Real collection logic: one filled ferroelectric route and one clear high-permittivity route

The visible collection is already precise enough that it should not be described in general terms. One product is a functional filled dielectric route with ferroelectric, pyroelectric and piezoelectric positioning; the other is a clear high-permittivity route where transparency matters.

That means selection should start from whether the priority is electro-active functionality through a filled system or transparent high-permittivity behavior through a clear route.

Quick selection by material route

Material navigation

Choose your ferroelectric route

Select the product according to whether you need a filled electro-active material or a clear high-permittivity system.

Typical routes

Key features & benefits

Collection logic

Two distinct functional dielectric strategies

The visible product list shows that this collection is not about many similar grades. It is about two clearly differentiated technical routes: one route centered on strong functional dielectric behavior through BTO70 filling, and one route centered on optical transparency with high permittivity.

Main capabilities across the collection
  • High-permittivity behavior for electronics-related demonstrators
  • Ferroelectric, pyroelectric and piezoelectric positioning in the filled route
  • Clear optically transparent high-permittivity route
  • Suitability for dielectric components, sensors and transducers depending on project
  • Electro-active material benchmarking rather than standard structural resin selection
Collection overview

Products in this collection

Products in this collection are shown below.

This collection currently includes: 3Dresyn HP1 BTO70 High Permittivity resin with ferroelectric, pyroelectric and piezoelectric properties, and 3Dresyn HP1 Clear High Permittivity optically transparent resin.

Included products and technical roles

Product 01

3Dresyn HP1 BTO70

HP1 BTO70 is the filled functional route in the visible collection. Its title already defines the core value proposition: high permittivity plus ferroelectric, pyroelectric and piezoelectric properties.

Core role
  • Functional dielectric route with electro-active positioning
  • Filled material route rather than transparent optical route
  • Most appropriate when the priority is field-responsive dielectric behavior rather than optical clarity
Best for
  • Sensors and transducer demonstrators
  • Functional electro-active parts
  • High-permittivity filled-system R&D
  • Projects requiring ferroelectric or piezoelectric positioning
Product 02

3Dresyn HP1 Clear

HP1 Clear is the optically transparent high-permittivity route in the collection. It is structurally different from BTO70 because the collection title and product title position it around clear high-permittivity behavior rather than explicitly around ferroelectric, pyroelectric and piezoelectric functionality.

Core role
  • Clear and optically transparent dielectric route
  • High-permittivity route where transparency matters
  • Suitable when visual transparency and dielectric function must coexist
Best for
  • Transparent dielectric demonstrators
  • Optically clear electronics-related R&D
  • Projects where filler opacity would be a limitation
  • Comparative studies between clear and filled high-permittivity systems

Selection logic

Decision guide

How to choose the right ferroelectric resin

Selection should begin from the actual function required: filled electro-active behavior or clear high-permittivity optical route.

Decision guide
  • Need explicit ferroelectric / pyroelectric / piezoelectric positioning → choose HP1 BTO70
  • Need optical transparency with high permittivity → choose HP1 Clear
  • Need to compare filled vs clear dielectric strategies → benchmark both routes directly
Workflow principle

Filled dielectric route and clear route are not interchangeable

The visible product structure already shows that the collection is split between a functional filled route and a transparent route. Those are different design strategies and should be selected according to the final electrical and optical objective, not just by price or general electronics interest.

Final dielectric and electro-active performance depends on formulation, printed geometry, cure conditions, electrode configuration and testing protocol.

These products should be understood as two distinct high-permittivity material strategies rather than as a generic family of similar electronics resins. Final validation must always be carried out in the intended functional test configuration.

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