Prosthetic components for dental implants
Shop by indication
Choose IPD prosthetic components by clinical situation. Here you will find scan bodies, digital analogs for 3D printing, high-profile CAD/CAM Ti-bases including angulation options for TPA, Multi-Unit abutments with dedicated scan transfers for accurate positioning after splinting (FRI), as well as LITE libraries (without the need for an original scan body), the free CAD program ModelPro for printed models, and also titanium fixation screws with increased strength thanks to titanium nitriding.
Scan bodies
Scan bodies and transfers for accurate CAD positioning.
Digital analogs
Analog interfaces for 3D-printed models.
CAD/CAM Ti-bases
High-profile Ti-bases, angulated TPA screw channels, aesthetics and stability.
Multi-Unit
Straight and angled Multi-Unit abutments plus MUA prosthetic components for a precise workflow.
Fixation screws
Titanium, TiN and BLC screws, plus long impression screws for a stable prosthetic connection and accurate transfer.
ModelPro / software libraries
Software, libraries and guides for the digital workflow.
- Clear navigation without guesswork
- Indications that make sense in both the laboratory and the clinic.
- Digital workflow
- Scan bodies, 3D printing, CAD/CAM, libraries and ModelPro.
- For CZ and SK
- Fast availability and support for dental technicians and implant clinicians.
Try a combination such as “Multi-Unit 30”, “Ti-base 2 mm” or “digital analog 3D”.
Digital workflow
Scan bodies (Scan body)
Accurate registration of implant and Multi-Unit positions for CAD/CAM and digital workflows. Stable seating and clearly readable geometry.
Digital analogs for 3D printing
Precision analogs for 3D-printed models. Reproducible implant position and reliable transfer into the CAD/CAM workflow.
CAD/CAM Ti-bases
High-profile Ti-bases for cement-retained and screw-retained restorations. TPA, precise geometry and compatibility with CAD systems.
Scan transfers
Accurate capture of implant or Multi-Unit position. A stable option for physical verification of restoration fit.
Provisional abutments
Temporary solutions for the transitional phase and immediate loading. Controlled tightening torque and system compatibility.
Premill CAD/CAM blocks
Blanks for custom abutment milling. Precise interface geometry and a reliable implant connection.
NT-Trading® pre-mill analogs
System-specific replicas for CAM production. Accurate seating and compatibility with NT-Trading® holders for stable milling.
NT-Trading® premill holders
Stable clamping and fixation of premill blanks during milling. Accuracy and process security when manufacturing custom abutments.
Multi-Unit abutments
Straight Multi-Unit abutments
Multi-Unit solutions for screw-retained full-arch restorations without angulation. A stable prosthetic platform, reproducible seating and support for passive-fit workflows.
17° Multi-Unit abutments
17° angled Multi-Unit abutments for correcting implant axes in full-arch cases. Precise seating, a stable interface and compatibility with MUA prosthetic components.
30° Multi-Unit abutments
30° angled Multi-Unit abutments for greater correction of implant divergence. Suitable for full-arch indications where connection stability and predictability are essential.
MUA prosthetic components
Complete Multi-Unit accessories: temporary and definitive components, transfers, analogs and related parts. Designed for digital workflows, passive-fit verification and serviceability.
Analogs – replicas
Digital analogs (3D printing)
Digital analogs for 3D-printed models with precise interface geometry. Reproducible implant position and reliable transfer into the CAD/CAM workflow.
Conventional analogs for stone models
Reliable analogs and replicas for conventional impressions and stone working models. Stable seating, accurate rotational indexing and controlled verification of restoration fit.
Prosthetic abutments
Cobalt-chromium castable abutments
Co-Cr bases for custom cast implant restorations. High strength, a stable implant interface and reliable restoration fit.
Cobalt-chromium scannable abutments
Indexed / non-indexed Co-Cr bases for digital workflows and scannable design.
Angled Co-Cr castable abutments
Castable abutments for correcting implant axes and optimising screw access. Stable interfaces and controlled angulation.
Plastic castable abutments
Plastic bases for straightforward wax-up and custom prosthetic restorations. Flexible emergence-profile shaping and precise control of the final form.
Cement-retained / screw-retained titanium abutments
Titanium abutments for cement-retained and screw-retained restorations. Precise connection geometry and long-term structural stability.
Titanium provisional abutments
Provisional solutions for the transitional phase and immediate implant loading. Controlled tightening and a stable connection.
Healing abutments
Prosthetic fixation screws
Abutment screws
Fixation screws with precise geometry and stable preload. Controlled tightening for long-term stability of the implant-prosthetic joint.
TPA fixation screws
Screws for angulated screw channels (TPA). Improved screw-access positioning and greater flexibility in prosthetic design.
Long screws for impression copings
Long fixation screws for impression copings. Secure tightening and stability during accurate implant impressions.
System-specific screwdrivers
Prosthetic and surgical
System-specific screwdrivers for implant dentistry and prosthetics. Precise engagement, stable guidance and safe screw tightening.
Prosthetic kits and adapters
Practical kits, adapters and bits for everyday prosthetic work. Clear instrument selection and compatibility across different connection systems.
Adjustable torque ratchet
Controlled tightening torque for abutment and restoration screws. Repeatable tightening for safe clinical and laboratory workflows.
Impression copings
Closed-tray impression technique
Closed-tray copings for fast and efficient implant impressions. Straightforward handling and reliable transfer of position to the working model.
Open-tray impression technique
Open-tray copings for maximum transfer accuracy. Suitable for multiple implants, full-arch cases and situations with demanding passive-fit requirements.
PSD-Loc compatible with Locator®
PSD-Loc abutments
Locator®-compatible abutments for secure and comfortable retention of removable restorations. Stable retention and straightforward maintenance.
PSD-Loc accessories
Replacement parts and accessories for the PSD-Loc system: retention inserts, housings and service components. Fast replacement and reliable long-term function of the prosthesis.
Accessories
Guides for Ti-bases
Accessories for accurate seating and handling of Ti-bases in laboratory and clinical workflows. Controlled position, stability and repeatability.
Prosthetic instruments
Tools and accessories for servicing, tightening and handling prosthetic components. Suitable for both laboratory and clinical use.
Digital support
ModelPro CAD software
Installation files, manuals, video guides and support for ModelPro CAD software used in digital models and laboratory workflows.
LITE software libraries
OEM scan body, Model Creator, manuals and libraries for an efficient digital workflow.
TECH software libraries
IPD scan body, advanced workflows, manuals, Model Creator and technical libraries for precise digital design.
CEREC® / Sirona® Ti-bases
Sterilisation of IPD prosthetic components (important)
Prosthetic components for dental implants (Ti-bases, abutments, screws, impression copings, etc.) are supplied non-sterile. Before intraoral use, they must be sterilised in accordance with the practice's validated internal protocol and applicable standards.
Recommended autoclave cycle
- 1 134 °C / 5 min (autoclave)
- 2 or 121 °C / 30 min + drying for 30 min
Reference values according to UNE-EN ISO 17665-1:2007. Always follow your facility's validated protocol and methodology.
Responsibility
Sterilisation and correct clinical use are the responsibility of the treating clinician.
Exclusive distributor for the Czech and Slovak Republics
Exklusiv Dent s.r.o. – support for dental laboratories and implant clinicians.
Related resources
Quick navigation to prosthetic components, libraries and technical support.
Shop by implant brand
Select compatible IPD prosthetic components by implant system and platform.
Libraries, instructions and technical documents
CAD/CAM libraries (including LITE), instructions for use, materials and resources for digital workflows.
Technical support and orders
Fast consultation for dental technicians and implant clinicians: compatibility, workflow and availability.
Frequently asked questions
Practical answers for laboratory and clinical use of IPD prosthetic components.
How quickly can you deliver IPD prosthetic components in the Czech Republic and Slovakia? ▾
We keep most items in stock. Standard dispatch is within 24–48 hours within the Czech and Slovak Republics, subject to availability and carrier.
Are IPD components compatible with my dental implant system? ▾
Yes. IPD offers compatible prosthetic components for dozens of implant systems. If you are unsure about the platform (NP/RP/WP, connection type, height or angulation), contact us and we will help identify the correct option.
How should IPD prosthetic components be sterilised before clinical use? ▾
Components are supplied non-sterile. Sterilisation is the responsibility of the treating clinician.
- 134 °C po 5 min (autoclave), or
- 121 °C po 30 min + drying for 30 min
Reference values according to UNE-EN ISO 17665-1:2007. Follow the validated protocol used by your facility.
Do I need an original IPD scan body, or can I use LITE libraries? ▾
For some workflows you can use LITE libraries without an original IPD scan body. The correct choice depends on the specific implant system, indication and required accuracy. Send us the implant brand and your preferred workflow and we will recommend the appropriate solution.
What is the difference between shopping by indication and by implant brand?▾
Shopping by indication starts with the type of restoration or component, such as a Ti-base, scan body, analog, Multi-Unit or PSD. Shopping by implant brand starts with the specific implant system. In both cases, confirm the platform and the relevant IPD product family before ordering.
When do I need an engaging component and when a non-engaging one?▾
An engaging component uses anti-rotational geometry and is typically selected for a single crown or another restoration in which rotation must be controlled. A non-engaging component is used for multi-unit restorations according to the specific workflow. Always verify the selection against the CAD library and indication.
What is the difference between a conventional analog for a stone model and a digital analog for a 3D-printed model?▾
A conventional analog is intended for a traditional working model produced from an impression. A digital /3D analog is inserted into a model created from digital data and 3D printing. They are not interchangeable based on appearance alone; the analog must match the selected library and prosthetic platform.
Where can I find Ti-bases compatible with CEREC® / Sirona®?▾
Use the dedicated CEREC® / Sirona®-compatible Ti-base page or the corresponding tile in the Ti-base section. Before ordering, verify the implant system, platform and exact reference.
Where can I find components for a full-arch or Multi-Unit workflow?▾
For screw-retained full-arch restorations, start with the Multi-Unit section and, depending on the scanning method, continue to the ScanLogiQ or full-arch Scan Transfer pages. It is important to distinguish implant-level from MUA-level workflows.
When does a PSD / Locator®-compatible solution make sense?▾
PSD is a low-profile retention system for removable restorations. Selection depends on the implant platform, gingival height, divergence, available prosthetic space and planned retention family.
Can I enter an IPD code directly, for example KA-CL-14 or IPD/DB-LN-01?▾
Yes. Both the global site search and the catalogue registry support SKU searches, the IPD/… reference format and ordinary text names. An exact code is the fastest route to a specific item.
Laboratory indications
Analogs form a separate group of working-model components
When shopping by indication, distinguish between a conventional analog for a stone model and a digital analog for 3D printing. Both replicate the implant interface, but they belong to different workflows.

