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CDSCO LICENSED
ISO 13485:2016
GMP CERTIFIED
PAN-INDIA MASTER FRANCHISE
SURGICAL SUPPORT CERTIFIED
3.5 mm LPS Proximal Humerus Plate
🔩 Trauma FixationREF: MRL-LPS-013✓ Brochure Verified

3.5 mm LPS Proximal Humerus Plate

AURIC · Humerus Plates

The 3.5 mm LPS Proximal Humerus Plate is an anatomically designed titanium alloy locking plate system engineered for complex proximal humerus fracture fixation. This trauma implant features advanced locking screw technology with complex geometry that provides superior angular stability and reduced bone stress. The plate's anatomical contouring ensures optimal fit to the proximal humerus anatomy, minimizing soft tissue irritation while maximizing fixation strength for faster patient recovery.
MaterialTitanium Alloy (Ti-6Al-7Nb)
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Full Technical Matrix
Full Technical Matrix

3.5 mm LPS Proximal Humerus Plate

Technical Blueprint SpecificationClinical Value
diameter
3.5mm

anatomical_location

Proximal Humerus

design

Anatomical

complexity

Complex geometry

Sterilization

Non-sterile (Requires hospital autoclaving) or EO Sterile (if packaged)

Primary Material

Titanium Alloy (Ti-6Al-7Nb)

CDSCO Validated Data
Frequently Asked Questions

The 3.5 mm LPS Proximal Humerus Plate is an anatomically designed titanium alloy locking plate system engineered for complex proximal humerus fracture fixation. This trauma implant features advanced locking screw technology with complex geometry that provides superior angular stability and reduced bone stress. The plate's anatomical contouring ensures optimal fit to the proximal humerus anatomy, minimizing soft tissue irritation while maximizing fixation strength for faster patient recovery.

This product is manufactured by Meril Life Sciences and is distributed by Agile Healthcare across all districts of Telangana.

Yes, all Meril Life Sciences products distributed by Agile Healthcare, including the 3.5 mm LPS Proximal Humerus Plate, strictly adhere to CDSCO guidelines and ISO 13485:2016 quality standards.

The 3.5 mm LPS Proximal Humerus Plate is constructed using Titanium Alloy (Ti-6Al-7Nb), ensuring high biocompatibility and durability.