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Howmedica Osteonics Corp.

United States·US-MF-000001881

Last updated September 18, 2026

What Howmedica Osteonics Corp. makes

The company manufactures reusable orthopaedic instruments for positioning implants during knee and hip surgeries, including tibial and femoral trial components for knee prostheses. It also produces acetabular liners—both non-constrained and constrained polyethylene—and prefabricated acetabular trial components for hip replacements, as well as reusable tibial inserts for knee implants.

These devices are classified under FDA regulations as Class I, Class II, and Class III, with all products listed in the FDA’s Unique Device Identifier (UDI) database. The company is based in the United States.

Written from this company's registered devices by an AI model, and not verified by a human reviewer.

Frequently asked questions

What types of medical devices does Howmedica Osteonics Corp. manufacture?

Howmedica Osteonics Corp. specializes in reusable orthopaedic instruments and components used during knee and hip surgeries. Their products include positioning instruments for implant placement, tibial and femoral trial components for knee prostheses, acetabular liners (both non-constrained and constrained polyethylene), prefabricated acetabular trial components for hip replacements, and tibial inserts for knee implants. These devices are designed to assist surgeons in achieving precise implant alignment and fit.

Where is Howmedica Osteonics Corp. based?

Howmedica Osteonics Corp. is headquartered in the United States. The company’s location in the US aligns with regulatory frameworks governing medical device manufacturing, distribution, and compliance in North America.

Which regulatory registries list devices manufactured by Howmedica Osteonics Corp?

Devices produced by Howmedica Osteonics Corp. are listed in the FDA’s Unique Device Identifier (UDI) database. This registry ensures traceability and transparency for each device’s identification, classification, and regulatory status under FDA guidelines.

How are the devices manufactured by Howmedica Osteonics Corp. classified under FDA regulations?

The devices produced by Howmedica Osteonics Corp. fall under three FDA device classes: Class I (generally low-risk devices), Class II (devices requiring special controls to ensure safety and effectiveness), and Class III (high-risk devices requiring premarket approval). The classification depends on factors like the device’s intended use, potential risks, and the body area it interacts with, such as orthopaedic implants or surgical instruments.

AI-generated from registry data and not verified by a human reviewer.

Information

Country
United States
Address
325, Corporate Drive , Mahwah, United States
LinkedIn
—
Facebook
—
Phone
201-831-5000
PRRC Contact
Dervillia Murphy
EUDAMED SRN
US-MF-000001881
FDA FEI Number
—
DUNS Number
058311945

Catalogue (16214)

Page 3 of 325
DeviceModel / ReferenceRegistriesClassStatus
Instrument I-K1757KF05
FDA UDI
Class IActive
Instrument I-H10043325
FDA UDI
Class IIUnknown
Instrument I-K0300TR2W
FDA UDI
Class IActive
Instrument 6543-6-447
FDA UDI
Class IActive
Instrument I-K3429CB46
FDA UDI
Class IActive
Restoration 6276-7-228
FDA UDI
Class IIActive
Triathlon 5532-G-725-E
FDA UDI
Class IIActive
Instrument I-K2650FS00
FDA UDI
Class IActive
Instrument I-K3240FS01
FDA UDI
Class IActive
Instrument I-H08452053
FDA UDI
Class IIUnknown
Kinemax 6476-3-100
FDA UDI
Class IIActive
Exeter 0920-2-920
FDA UDI
Class IIActive
Instrument I-K2169CR7L
FDA UDI
Class IIActive
Instrument 5555-2322
FDA UDI
Class IIActive
Instrument 6486-8-765
FDA UDI
Class IActive
Kinematic 6485-4-125
FDA UDI
Class IIActive
Triathlon 5535-A-613
FDA UDI
Class IIActive
X3 633-6432
FDA UDI
Class IIActive
Trident 502-11-76K
FDA UDI
Class IIActive
Series II 2041-N-332
FDA UDI
Class IIActive
Trident X3 Insert 763-00-28J
FDA UDI
Class IIActive
Instrument I-K0820DG35
FDA UDI
Class IActive
Instrument T75-2-3710
FDA UDI
Class IActive
Instrument I-K2715KF06
FDA UDI
Class IIActive
Instrument T72-7-0912
FDA UDI
Class IActive
Instrument 7650-1038
FDA UDI
Class IActive
Instrument T81-4407R
FDA UDI
Class IActive
Mrh 6481-1-140
FDA UDI
Class IIActive
Triathlon 5532-P-619
FDA UDI
Class IIActive
Instrument 5531-T-313Y
FDA UDI
Class IIActive
Instrument 6079-9-300
FDA UDI
Class IActive
Scorpio 81-4403R
FDA UDI
Class IIActive
Instrument I-H0659HA75
FDA UDI
Class IIUnknown
Triathlon 5530-G-609
FDA UDI
Class IIActive
Trident 643-00-36J
FDA UDI
Class IIActive
Scorpio 72-4-0918
FDA UDI
Class IIActive
System 12 6302-6-224
FDA UDI
Class IIActive
Instrument 5537-T-131X
FDA UDI
Class IActive
Instrument I-H1387H48D
FDA UDI
Class IIActive
Instrument 7297-0003
FDA UDI
Class IActive
Omnifit 2001-3254
FDA UDI
Class IIIActive
Instrument I-H11952625
FDA UDI
Class IIActive
Instrument I-K2877KF6L
FDA UDI
Class IActive
Instrument 2260-32E
FDA UDI
Class IIActive
Instrument 6210-0-815
FDA UDI
Class IActive
Solar 6948-0-612
FDA UDI
Class IIActive
Instrument 5538-T-625X
FDA UDI
Class IActive
Triathlon 5612-P-511
FDA UDI
Class IIActive
Instrument I-K3240FS07
FDA UDI
Class IActive
Scorpio 72-26-0521
FDA UDI
Class IIActive

Related Companies

Authorised Representatives

Importers

Not available yet.

Notified Bodies

Not available yet.

Authorities

Not available yet.

FDA Recalls (100)

Recalls reported by this firm to the FDA. Listed at company level — FDA recall records don't identify a specific catalogue device.

Howmedica Osteonics Corp. has 233 recall records spanning from November 12, 2002, to February 2, 2026, with statuses recorded as open, classified, or terminated. The recalls involve issues such as software error messages preventing device activation, mismatched custom-made devices, potential product mix-ups in labeling, incorrect expiry dates, distortion from repeated autoclaving, oversized internal profiles in certain components, detachment risks in packaging, loosening screws, overhanging device parts, and mechanical failures like locking mechanism malfunctions or fractured components. Reasons include manufacturing defects, labeling errors, and design or material-related concerns.

AI-generated summary of the recall records listed below. It describes what the records state and is not an assessment of this manufacturer.

DateRecall No.ClassStatusReason
Feb 2, 2026Z-1572-2026—open, classified

A potential issue was identified with the torque strength on the external screws of the MICS3 Angled Sagittal Saw Attachment. These screws, which secure the cover to the Angled Saw Housing, may loosen during use and detach from the attachment.

Nov 12, 2025Z-0963-2026—open, classified

When the device is activated during surgery, the device software issues an error message "Instrument Face Mask (6001385000000) is not valid for this application" resulting in an inability to use the device.

Aug 28, 2025Z-2640-2025—open, classified

a potential product mix where the package labeled as Catalog Number 0580-1-442, lot A00976, may contain Catalog Number 0580-1-352, lot G8754849, and vice versa. Patient labels may also be impacted.

Sep 4, 2024Z-0023-2025—open, classified

Anterior locking tabs on the Triathlon Universal Baseplate are out of specification which may prevent engagement of either of the two locking tabs with the locking wire of the tibial insert.

Aug 7, 2024Z-0044-2025—open, classified

Stryker has identified an issue with the characterization process that impacted the constant values assigned to the associated MICS Handpieces.

Aug 5, 2024Z-2732-2024—open, classified

A patient specific, custom-made device was supplied for a surgical procedure that did not match the design proposal.

Jun 19, 2024Z-2372-2024—open, classified

Mislabeled: the size on the package label of the UNITRAX Endoprosthesis Head Component potentially may not match the device within the packaging. This product mix only involves the three (3) sizes (43mm, 42mm, and the 38mm)

Jun 19, 2024Z-2370-2024—open, classified

Mislabeled: the size on the package label of the UNITRAX Endoprosthesis Head Component potentially may not match the device within the packaging. This product mix only involves the three (3) sizes (43mm, 42mm, and the 38mm)

Jun 19, 2024Z-2371-2024—open, classified

Mislabeled: the size on the package label of the UNITRAX Endoprosthesis Head Component potentially may not match the device within the packaging. This product mix only involves the three (3) sizes (43mm, 42mm, and the 38mm)

May 23, 2024Z-2153-2024—open, classified

The design of the HRIS Storage & Sterilization Case and Tray P/N 6210-9-900 and the Gray Revision Instrument System Accessory Tray/Case P/N 6210-9-910 may lead to misuse of the Gray Revision Instruments including re-use and re-sterilization of the single-use, sterile-packaged instruments.

May 23, 2024Z-2152-2024—open, classified

The design of the HRIS Storage & Sterilization Case and Tray P/N 6210-9-900 and the Gray Revision Instrument System Accessory Tray/Case P/N 6210-9-910 may lead to misuse of the Gray Revision Instruments including re-use and re-sterilization of the single-use, sterile-packaged instruments.

Feb 27, 2024Z-1624-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1628-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1621-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1627-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1623-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1622-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1629-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1631-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1632-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1626-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1625-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 27, 2024Z-1630-2024—open, classified

The acetabular shell may have excessive deburring, resulting in a smooth surface on the edge of the shell

Feb 6, 2024Z-1261-2024—open, classified

Potential packaging breaches of inner blister and outer sterile blister.

Feb 6, 2024Z-1260-2024—open, classified

Potential packaging breaches of inner blister and outer sterile blister.

Feb 6, 2024Z-1259-2024—open, classified

Potential packaging breaches of inner blister and outer sterile blister.

Feb 6, 2024Z-1263-2024—open, classified

Potential packaging breaches of inner blister and outer sterile blister.

Feb 6, 2024Z-1262-2024—open, classified

Potential packaging breaches of inner blister and outer sterile blister.

Feb 6, 2024Z-1265-2024—open, classified

Potential packaging breaches of inner blister and outer sterile blister.

Feb 6, 2024Z-1264-2024—open, classified

Potential packaging breaches of inner blister and outer sterile blister.

Feb 6, 2024Z-1266-2024—open, classified

Potential packaging breaches of inner blister and outer sterile blister.

Dec 22, 2023Z-1000-2024—open, classified

Failed to meet the acceptance criteria for the seal integrity and/or package integrity testing for the Sterile Barrier Outer Pouch and the Protective Barrier Inner Pouch, compromising product sterility

Dec 22, 2023Z-0999-2024—open, classified

Failed to meet the acceptance criteria for the seal integrity and/or package integrity testing for the Sterile Barrier Outer Pouch and the Protective Barrier Inner Pouch, compromising product sterility

Dec 1, 2023Z-0918-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0883-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0878-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0906-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0896-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0917-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0884-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0919-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0879-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0904-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0892-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0887-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0869-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0910-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0893-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0905-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0922-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0886-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0907-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0900-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0873-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0874-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0871-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0902-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0881-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0901-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0875-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0913-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0877-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0916-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0921-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0903-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0898-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0889-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0894-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0912-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0897-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0915-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0891-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0890-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0885-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0924-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0899-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0908-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0909-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0895-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0911-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0888-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0926-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0876-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0914-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0923-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0882-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0870-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0880-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0872-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0925-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

Dec 1, 2023Z-0920-2024—open, classified

Product manufactured using UHMWPE raw material over 5 years of age has the potential for elevated levels of oxidation. Oxidation within UHMWPE can have an impact on its material properties.

May 3, 2023Z-1921-2023—open, classified

The Exeter V40 Trial Head, catalog number 6364-8-026 (size 26mm, -3) may appear green, when it is meant to be a blue color. Green signifies a size 26mm, +3 Trial Head.

Apr 13, 2023Z-1653-2023—open, classified

Mislabeled:Labeled Catalog Number: 5531-G-312-E, TRIATHLON X3 TIBIAL BEARING INSERT CS #3 12MM, may contain Catalog Number: 5532-G-413-E, TRIATHLON X3 TIBIAL BEARING INSERT PS #4 13MM, and vice versa

Apr 13, 2023Z-1654-2023—open, classified

Mislabeled:Labeled Catalog Number: 5531-G-312-E, TRIATHLON X3 TIBIAL BEARING INSERT CS #3 12MM, may contain Catalog Number: 5532-G-413-E, TRIATHLON X3 TIBIAL BEARING INSERT PS #4 13MM, and vice versa

Mar 10, 2023Z-1386-2023—open, classified

Certain lots of the Restoris MultiCompartmental Knee (MCK) Tibial Baseplate Trials contain product with incorrect size laser marking

Mar 10, 2023Z-1385-2023—open, classified

Ccertain lots of the Restoris MultiCompartmental Knee (MCK) Tibial Baseplate Trials contain product with incorrect size laser marking

Nov 7, 2022Z-0737-2023—open, classified

Instructions for Use (IFU) included in the packaging is missing a translation in the Turkish language. Although the Turkish translation is missing, all content within the IFUs is accurate.

Nov 7, 2022Z-0736-2023—open, classified

Instructions for Use (IFU) included in the packaging is missing a translation in the Turkish language. Although the Turkish translation is missing, all content within the IFUs is accurate.

Oct 21, 2022Z-0240-2023—open, classified

Simplex HV With Gentamicin CE, 10 PACKS (P/N 6193-1-010) were distributed to customers who had ordered Simplex HV With Gentamicin in US, 10 PACKS (P/N 6195-1-010)

Aug 24, 2022Z-1778-2022—open, classified

A MK4 Tibial Bearing was supplied with the intention to mate with the Tibial Metal Casing in-situ. However, the device in-situ was a MK3 Tibial Metal Casing. The supplied MK4 tibial bearing was not exchangeable for the MK3 tibial bearing. The surgeon needed to complete the surgery by re-assembling and re-inserting the extracted MK3 tibial bearing.