Explore our ISO 13485 & CE certified implants and surgical instrument systems engineered for primary arthroplasty, trauma revision, and pediatric/veterinary osteosynthesis.
High-precision digital transfer analogs engineered for custom implant prosthetics, CAD/CAM workflow accuracy, and long-term joint interface stability.
316LVM medical grade surgical instrument set engineered for anatomical femoral stem reaming, rasping, and precise acetabular alignment.
Specialized micro-implant total hip replacement system and pedicle screw assemblies designed for veterinary orthopedic reconstructive surgery.
Titanium plasma-sprayed porous coated cementless acetabular cup system featuring UHMWPE insert options for biological bony ingrowth.
Ti-6Al-4V ELI anatomical femoral stems featuring optimized proximal cross-section to minimize stress shielding and enhance rotational stability.
Comprehensive surgical tray collection containing precise osteotomy guides, trial heads, and ergonomic drivers for primary total hip replacement.
Cobalt-Chromium-Molybdenum primary total knee joint replacement kit with highly cross-linked polyethylene tibial inserts for low-friction kinetics.
Advanced arthroscopic reconstruction system utilizing fully threaded knotless titanium anchors for rotator cuff and glenoid labrum repair.
An exhaustive guide to controlled fracture collapse, rotational stability, and material integrity for trauma care facilities across Finland and the broader Nordic region.
The Dynamic Hip Screw (DHS) System remains the gold standard in orthopedic traumatology for treating stable and unstable intertrochanteric, pertrochanteric, and basilar neck fractures (AO/OTA 31-A1 and 31-A2). The foundational mechanical principle of the DHS relies on controlled dynamic sliding compression along the longitudinal axis of the femoral neck screw.
By allowing the lag screw to telescope within the barrel plate attached to the lateral femoral shaft, patient weight-bearing forces are converted into compressive loads across the fracture line. This micro-motion stimulates secondary bone healing through periosteal callus formation while eliminating excessive shear stresses that lead to mechanical cutout or non-union.
Manufactured with an outer thread diameter of 12.5 mm and a pitch designed for maximum cancellous thread engagement, our lag screws ensure superior pullout strength even in severely osteoporotic bone beds common in sub-zero Nordic winter trauma admissions.
To accommodate diverse neck-shaft anatomical variations across Scandinavian patient populations, our DHS sideplates are precision-machined in 130°, 135°, 140°, and 145° angles with barrel lengths available in standard (38 mm) and short (25 mm) configurations.
The following engineering specification matrix details the bio-compatible alloy profiles, dimensional parameters, and manufacturing tolerances governing our export supply to Finnish hospitals and European distributor networks:
| Component Name | Material Specification | Dimensional Range | Surface Treatment / Coating | Regulatory Standard |
|---|---|---|---|---|
| DHS Barrel Sideplate | Titanium Ti-6Al-4V ELI (ISO 5832-3) / Stainless Steel 316LVM (ISO 5832-1) | 2 to 16 Holes (Plate length: 50mm - 274mm); Barrel angle 130°-145° | Anodized Type II (Ti) / Electropolished Ra < 0.05 µm (SS) | ISO 13485 / CE Marked / EU MDR Class IIb |
| DHS Lag Screw | High-Strength Titanium / Cold-Worked Stainless Steel 316LVM | Lengths: 50mm to 120mm (5mm increments); Outer Thread Ø: 12.5mm | Micro-Passivated Anti-Gall Threading | ASTM F136 / ASTM F138 / DIN 58814 |
| Compression Screw | Biocompatible Titanium Alloy / Medical Grade 316L Stainless Steel | Drive: Hexagonal 3.5mm; Thread Ø: 4.5mm; Length: 36mm | Color-Coded Anodization for Metric Identification | ISO 5835 / EU MDR Compliant |
| Cortical Fixing Screws | Ti-6Al-4V / Stainless Steel 316LVM | Ø 4.5mm Full Thread; Lengths: 14mm to 60mm | Self-Tapping Flute Geometry with T-25 Star/Hex Socket | ISO 9261 / CE Certified |
Addressing sub-zero climatic trauma demands, hospital procurement structures, and rigorous Valvira & EU regulatory protocols within Finnish Wellbeing Services Counties (*Hyvinvointialueet*).
Finland’s severe sub-zero winters produce extended periods of black ice (*pääkallokeli*), triggering high-volume seasonal admissions for trochanteric and femoral neck fractures. With over 23% of the Finnish population aged 65 or older, surgical centers require high-pullout DHS lag screws and locking plate systems capable of securing osteoporotic bone in emergency trauma surgery.
Our DHS implants and modular instrumentation trays are structured to integrate seamless surgical workflow in major Finnish central and university hospitals—including HUS Helsinki University Hospital, TAYS Tampere, and TYKS Turku. Ergonomic quick-coupling reamers and color-coded depth gauges reduce intraoperative theater time.
Medical devices entering Finland must comply strictly with the Finnish Medical Devices Act (719/2021) monitored by Fimea (Finnish Medicines Agency) and Valvira. Our full product line provides full technical dossiers, Clinical Evaluation Reports (CER), and GS1-compliant Unique Device Identification (UDI) barcoding for immediate hospital integration.
Analyzing market shifts toward value-based purchasing, carbon-neutral supply chains, and minimally invasive osteosynthesis in Scandinavian health systems.
Following Finland’s health services reform, medical procurement has shifted from municipal health centers to 21 centralized Hyvinvointialueet plus the HUS Group. This centralizing trend demands high-capacity global manufacturing partners able to guarantee bulk inventory reserves, fixed multi-year contract pricing, and zero-defect quality control across standardized trauma product codes.
Our direct-factory export framework eliminates middle-man margins, enabling Finnish public health authorities to optimize budgetary allocation while maintaining top-tier European medical device standards.
Nordic tenders increasingly weigh environmental life-cycle factors in supplier evaluation. Public healthcare buyers in Helsinki, Tampere, and Oulu mandate minimal single-use plastic waste and eco-friendly protective sterile barrier packaging.
Sharma Orthopedic leverages 100% recyclable Tyvek® double-sterile pouch systems and optimized bulk shipping packaging that minimizes carbon footprint across air transport corridors from India to Helsinki-Vantaa logistical hubs.
Combining over 30 years of specialized manufacturing experience with state-of-the-art 5-axis CNC technology, cleanroom processing, and absolute regulatory transparency.
Founded in 1992, Sharma Orthopedic has expanded into a global industry leader operating a 62,391 sq. ft. high-tech manufacturing campus in Vadodara, Gujarat. Our long-standing commitment to mechanical precision makes us a trusted tier-1 supply partner worldwide.
Utilizing high-precision Swiss-type CNC auto-lathes, DMG MORI multi-axis milling machining centers, and automated surface passivating lines, we ensure micron-level tolerances across all DHS sideplates, lag screws, and spinal constructs.
With a dedicated team of 8+ Regulatory Affairs (RA/QA) experts, 10 QC inspection engineers, and computerized Coordinate Measuring Machines (CMM), every lot undergoes strict dimensional, torque, and fatigue test protocols prior to international dispatch.
Addressing key questions regarding compliance, freight delivery logistics to Helsinki, OEM customization, and hospital evaluation samples.
Yes. Sharma Orthopedic India Limited manufactures all implants under ISO 13485:2016 accredited quality management systems. Our product portfolio holds CE certification compliant with European Medical Device Regulation (EU MDR 2017/745), ensuring seamless legal import and hospital distribution throughout Finland and the European Economic Area (EEA).
For standard catalog items, orders are dispatched via express air freight (DHL/FedEx/Lufthansa Cargo) arriving at Helsinki-Vantaa Airport (HEL) within 5 to 7 business days. Bulk containerized sea freight shipments to the Port of Helsinki or Port of Hamina-Kotka typically take 22 to 28 days from dispatch.
Absolutely. We offer complete OEM contract manufacturing and private label packaging tailored to distributor specifications in Finland. Our in-house R&D team can customize sideplate geometries, lag screw lengths, and tray laser-etching with custom serial numbers and GS1 UDI barcodes.
We supply DHS implants in both premium medical-grade Titanium Alloy (Ti-6Al-4V ELI conforming to ISO 5832-3 / ASTM F136) and High-N2 Cold-Worked Stainless Steel (316LVM conforming to ISO 5832-1 / ASTM F138). Raw materials are sourced exclusively from globally certified melt suppliers with full chemical and mechanical mill test certificates (MTC).
We provide non-sterile sample implants and demonstration surgical instrument trays to qualified distributors, procurement teams, and chief orthopedic surgeons in Finland for tactile, dimensional, and mechanical bench testing upon request.
Every export consignment includes a complete documentation pack: Commercial Invoice, Detailed Packing List, Certificate of Origin (COO), ISO 13485 & CE Certificates, Certificate of Analysis (COA), Batch Sterilization Validation Reports, and Air Waybill (AWB) for swift clearance by Finnish Customs (*Tulli*).