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MEDTRONIC, INC.

United States·US-MF-000019977

Last updated September 17, 2026

What MEDTRONIC, INC. makes

Medtronic, Inc. manufactures a range of medical devices including vascular guide-catheters, peripheral and coronary angioplasty balloon catheters, and angiographic catheters. Their portfolio also includes cardiopulmonary bypass and extracorporeal membrane oxygenation cannulas, drug-eluting coronary artery stents, mitral and tricuspid annuloplasty rings, and cardiopulmonary bypass system blood tubing sets.

The company is based in the United States, and its products are categorized under Class I, Class II, Class III, Class IIb, and unclassified designations. These devices are listed in the EUDAMED, FDA 510(k), and FDA UDI registries.

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

Frequently asked questions

Where is Medtronic, Inc. based and what types of medical devices do they manufacture?

Medtronic, Inc. is based in the United States. The company manufactures a diverse range of medical equipment, primarily focusing on vascular and cardiovascular health. Their product portfolio includes vascular guide-catheters, peripheral and coronary angioplasty balloon catheters, angiographic catheters, cardiopulmonary bypass and extracorporeal membrane oxygenation cannulas, drug-eluting coronary artery stents, mitral and tricuspid annuloplasty rings, and cardiopulmonary bypass system blood tubing sets.

Which regulatory registries list the devices produced by Medtronic, Inc.?

Devices manufactured by Medtronic, Inc. are listed in the EUDAMED, FDA 510(k), and FDA UDI registries. These registries are used to track medical device information and regulatory status, ensuring that the company's products are documented according to the requirements of the respective health authorities.

How are the medical devices from Medtronic, Inc. classified?

The medical devices manufactured by Medtronic, Inc. fall under several regulatory classifications, including Class I, Class II, Class III, Class IIb, and unclassified designations. These classifications are used by regulatory bodies to categorize devices based on the level of risk associated with their intended use and the controls necessary to ensure their safety and effectiveness.

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

Information

Country
United States
Address
710 , Medtronic Parkway, Minneapolis, United States
Website
medtronic.com
LinkedIn
—
Facebook
—
Phone
+1(800)633-8766
PRRC Contact
—
EUDAMED SRN
US-MF-000019977
FDA FEI Number
3015544746
DUNS Number
006261481

Catalogue (19435)

Page 6 of 389
DeviceModel / ReferenceRegistriesClassStatus
Launcher LA8JR60SH
FDA UDI
Class IIActive
Admiral Xtreme ADM080080130
FDA UDI
Class IIUnknown
Bio-Medicus™ CB96345-029
FDA UDI
Class IIActive
SimuPlus™ 7700FB42
FDA UDI
Class IIActive
Zuma® ZS8JR50
FDA UDI
Class IIUnknown
SiteSeer™ 4A0019
FDA UDI
Class IIActive
Launcher LA8AL20
FDA UDI
Class IIActive
Dlp® 82020
FDA UDI
Class IIActive
Dlp® 12115
FDA UDI
Class IIActive
Sherpa Nx Balanced SB7RDCK
FDA UDI
Class IIActive
Mosaic® 305C223
FDA UDI
Class IIIUnknown
PED NIH™ Cardio-Marker 990803
FDA UDI
Class IIActive
Pro-Flo™ 060047
FDA UDI
Class IIActive
Sherpa Nx Balanced SB6AL10SH
FDA UDI
Class IIActive
Sherpa Nx Balanced SB8AL20J
FDA UDI
Class IIUnknown
Profile 3d™ 680R36
FDA UDI
Class IIUnknown
Custom Perfusion System BB8M04R4
FDA UDI
Class IIUnknown
Admiral Xtreme ADM080020130
FDA UDI
Class IIUnknown
Cg Future™ 638BL26
FDA UDI
Class IIActive
Sentrant™ SENSH2064W
FDA UDI
Class IIActive
Z2 Z26AR20SH
FDA UDI
Class IIActive
Sherpa Nx Balanced SB8MPSTSH
FDA UDI
Class IIUnknown
autoLog® ATLG110
FDA UDI
Class IIActive
Dlp® 80222
FDA UDI
Class IIActive
Chocolate® CB1413535040OTW
FDA UDI
Class IIActive
Pro-Flo™ 006465
FDA UDI
Class IIActive
Launcher LA7IMASHD
FDA UDI
Class IIActive
Sherpa Nx Balanced™ SB6MB1SHD
FDA UDI
Class IIActive
Capsure® Z Novus 5554-53
FDA UDI
Class IIIUnknown
EverCross™ AB35W07020080
FDA UDI
Class IIActive
SimuPlus™ 7700FB32
FDA UDI
Class IIActive
Valiant Navion™ VNMF2222C96TU
FDA UDI
Class IIIUnknown
Custom Perfusion System TL6W38R5
FDA UDI
Class IIUnknown
Resolute Onyx™ RONYX20022UX
FDA UDI
Class IIIActive
TurboHawk™ TH-LX-M
FDA UDI
Class IIActive
MyCareLink™ 24950M
FDA UDI
Class IIIActive
Admiral Xtreme ADM050080080
FDA UDI
Class IIActive
Sherpa Nx Balanced SB6MAC40
FDA UDI
Class IIActive
Dlp® 94525
FDA UDI
Class IIUnknown
NC Euphora™ NCEUP32527X
FDA UDI
Class IIActive
Zinger® Marker ZNGRMK180J
FDA UDI
Class IIActive
Bio-Medicus™ 96570-117
FDA UDI
Class IIActive
Launcher LA6AL20
FDA UDI
Class IIUnknown
Dlp® 79004
FDA UDI
Class IActive
Tmc50 1475R1
FDA UDI
Class IIActive
Integrity INT30009UX
FDA UDI
Class IIIActive
Launcher™ LA6RELAXLCB
FDA UDI
Class IIActive
Dlp® 87522
FDA UDI
Class IIUnknown
Launcher LA6SAR10SH
FDA UDI
Class IIActive
Zuma® ZM6AL105
FDA UDI
Class IIUnknown

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.

There are 323 recall records for Medtronic, Inc. initiated between January 31, 2003, and March 11, 2026, with statuses recorded as completed, open, classified, and terminated. The reasons provided for these recalls include software anomalies, manufacturing defects, labeling inaccuracies, potential for battery power failure, and issues related to device components such as sterile barriers, stent diameters, and catheter tips.

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
Mar 11, 2026Z-1948-2026—open, classified

ventricular fibrillation (VF) during radiofrequency (RF) therapy with the Medtronic Sphere-9 catheter in patients who have a Biotronik Implantable Cardioverter Defibrillator (ICD) or Biotronik Cardiac Resynchronization Therapy-Defibrillator (CRT-D) implanted. The observation is caused by an interaction between the Sphere-9 catheter current flow and a safety feature built into Biotronik ICDs and CRT Ds. Medtronic recommends physicians use increased caution when using the Sphere-9 catheter for RF ablation therapy in patients implanted with a Biotronik ICD/CRT-D system, and to ensure external defibrillation systems are readily available.

Dec 4, 2025Z-1098-2026—open, classified

Stents may be impacted by a Nitinol anomaly which causes a reduced stent diameter when deployed and corresponding reduced radial force. Issue may result in stent migration.

Oct 29, 2025Z-0726-2026—open, classified

There is a potential for delayed time to high-voltage (HV) therapy should a rare sequence of events occur.

Jun 18, 2025Z-2169-2025—open, classified

In prior SmartSync application versions, the Abort button stopped the test that was selected. During an induction test, there was a limited window of time for the user to abort a therapy, thereby limiting the user's ability to cancel a high voltage therapy delivery.

Jun 18, 2025Z-2168-2025—open, classified

In prior SmartSync application versions, the Abort button stopped the test that was selected. During an induction test, there was a limited window of time for the user to abort a therapy, thereby limiting the user's ability to cancel a high voltage therapy delivery.

Jun 17, 2025Z-2128-2025—open, classified

A software update for Medtronic CareLink SmartSync Device Manager (SmartSync) is now available. The update eliminates the potential display of an erroneous electrical reset (pop-up) message upon interrogation with a SmartSync Device Manager. The erroneous message indicates an electrical reset has occurred. However, no reset has actually occurred and there are no parameter changes or loss of diagnostics. Prior to this software update, if an erroneous SmartSync message was displayed, confusion regarding the message could have caused a clinician to consider an unnecessary system revision. Medtronic has received 39 reports of this display error with two instances of unnecessary device explant through 30 April 2025.

Jun 17, 2025Z-2127-2025—open, classified

A software update for Medtronic CareLink SmartSync Device Manager (SmartSync) is now available. The update eliminates the potential display of an erroneous electrical reset (pop-up) message upon interrogation with a SmartSync Device Manager. The erroneous message indicates an electrical reset has occurred. However, no reset has actually occurred and there are no parameter changes or loss of diagnostics. Prior to this software update, if an erroneous SmartSync message was displayed, confusion regarding the message could have caused a clinician to consider an unnecessary system revision. Medtronic has received 39 reports of this display error with two instances of unnecessary device explant through 30 April 2025.

Apr 29, 2025Z-1924-2025—open, classified

Identified devices may experience sudden battery power failure without alarm, power supply power-on-resets, and interruption of therapy. Potential patient harms include insufficient pacing support leading to cardiac arrest, syncope, or hospitalization; or system revision (explant/replacement) leading to infection, hematoma, or temporary impairment.

Jul 11, 2024Z-3152-2024—open, classified

Medtronic CareLink 2090 programmers with serial number prefixes PKK0 and PKK1 have the potential for autonomous cursor motion when Finger Touchscreen capability is enabled by software version 3.2 or higher.

Apr 16, 2024Z-2200-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2201-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2205-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2195-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2202-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2209-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2207-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2199-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2198-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2190-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2204-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2191-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2197-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2193-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2211-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2203-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2212-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2194-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2196-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2210-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2192-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2208-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Apr 16, 2024Z-2206-2024—open, classified

Potential for manufacturing defect. Weld crack led to devices failing at the leak check step in manufacturing.

Feb 16, 2024Z-1317-2024—open, classified

There is a potential for sterile package breach.

Dec 7, 2023Z-0779-2024—open, classified

During internal review of Polaris battery assembly data from the HiPot operation, a test systems engineer noticed that some batteries had gone through the High Potential test twice. This was able to occur because the test screen did not prevent retesting after a failure. Some batteries were therefore retested and passed.

Nov 20, 2023Z-0623-2024—completed

Seal defects could compromise the ability of the product packaging to maintain sterility.

Nov 3, 2023Z-0421-2024—open, classified

It may create the potential for amplified noise and/or overall signal reduction of the ICM, which may interfere with intended recordings of heart rhythms. This noise pattern is different from occasional noise due to device position/migration, patient activity, or external electromagnetic interference.

Oct 12, 2023Z-0320-2024—open, classified

The Mo.Ma Ultra device manifold is labelled with 2 stickers, an inferior and superior sticker, one on each side of the manifold. These stickers label the common carotid artery (CCA) proximal balloon and external carotid artery (ECA) distal balloon inflation and deflation ports. Both sides of the complaint units manifold were labelled with the superior label leading to an incorrect identification of the proximal and distal inflation /deflation ports when viewing the devices from the inferior side.

Oct 12, 2023Z-0322-2024—open, classified

The Mo.Ma Ultra device manifold is labelled with 2 stickers, an inferior and superior sticker, one on each side of the manifold. These stickers label the common carotid artery (CCA) proximal balloon and external carotid artery (ECA) distal balloon inflation and deflation ports. Both sides of the complaint units manifold were labelled with the superior label leading to an incorrect identification of the proximal and distal inflation /deflation ports when viewing the devices from the inferior side.

Oct 12, 2023Z-0321-2024—open, classified

The Mo.Ma Ultra device manifold is labelled with 2 stickers, an inferior and superior sticker, one on each side of the manifold. These stickers label the common carotid artery (CCA) proximal balloon and external carotid artery (ECA) distal balloon inflation and deflation ports. Both sides of the complaint units manifold were labelled with the superior label leading to an incorrect identification of the proximal and distal inflation /deflation ports when viewing the devices from the inferior side.

Jul 14, 2022Z-1644-2022—open, classified

Update to IFU provides a manual deployment workaround method to help mitigate potential harms related to partial stent deployment.

Jun 24, 2022Z-1483-2022—open, classified

Luer has balloon diameter printed as "2.25mmx12mm" instead of the correct diameter, "2.5mmx12mm" as reflected on the product outer packaging.

May 5, 2022Z-1266-2022—open, classified

Batteries for the HVAD system have a weld defect affecting internal components within the HVAD battery, resulting in the battery to malfunction and no longer provide power or prevent the battery from holding a complete charge or properly recharging.

Apr 14, 2022Z-1207-2022—open, classified

The pump may have a welding defect that can lead the pump to malfunction. The issue is under investigation by the firm. It is suspected that a weld defect on the center post cap may allow moisture into the center post and corrode the magnets that keep the impeller rotating concentrically, leading to unintended contact between the center post and impeller. If this occurs, it may affect blood flow through the pump. The issue may present clinical signs and symptoms that resemble pump thrombosis.

Mar 30, 2022Z-1110-2022—open, classified

Errors and inconsistencies that were identified in the Instruction for Use (IFU), Emergency Responder Guide (ERG), and Patient Manual (PM) for the HeartWare Ventricular Assist Device (HVAD) system.

Mar 2, 2022Z-0927-2022—open, classified

There is potential for the capsule bond to break during the procedure.

Mar 23, 2021Z-1564-2021—open, classified

Firm received increased number of reports that VenaSeal dispensing systems are not effectively advancing the adhesive forward through the delivery catheter.

Mar 16, 2021Z-1532-2021—terminated

Incorrect size printed on the device; packaging is labeled correctly.

Feb 26, 2021Z-1607-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1618-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1612-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1610-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1611-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1602-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1604-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1616-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1601-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1615-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1603-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1599-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1613-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1608-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1605-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1600-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1609-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1614-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1606-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Feb 26, 2021Z-1617-2021—open, classified

Use of the continuous glucose monitoring system while actively taking hydroxyurea, an anti-neoplastic drug could result in inaccurate elevated sensor glucose readings.

Nov 12, 2020Z-0843-2021—open, classified

Incomplete basal rate information may be transmitted leading to a potential for inappropriate change in therapy. During data upload, radio frequency (RF) interference can occur at any point from surrounding devices or equipment that may affect the data transfer between the insulin pump and the CareLink Personal or CareLink System Software.

Jul 15, 2020Z-2980-2020—terminated

As a result of the release of new software version to CareLink Personal website, the IOS app for the Continuous Monitoring Glucose system stopped automatically uploading data to the website.

Jul 13, 2020Z-0522-2024—completed

The previous software application version (1.1.300) is missing a decimal separator (a comma) for parameter range guidance values displayed on some of the programming screens: Catheter, Reservoir, Infusion, Bolus, myPTM, and Alarm.

Apr 30, 2020Z-0516-2021—open, classified

Missing solder battery connection, which could interrupt power of insulin pump.

Apr 30, 2020Z-0517-2021—open, classified

Missing solder battery connection, which could interrupt power of insulin pump.

Apr 30, 2020Z-0518-2021—open, classified

Missing solder battery connection, which could interrupt power of insulin pump.

Apr 10, 2020Z-2206-2020—terminated

Internal testing results showed endotoxin-related test result did not meet specifications for implantable insulin pump. If pumps have higher than allowed endotoxin levels, patients may have an effect of fever, hypotension, anaphylactic shock, hyperglycemia, or diabetic ketoacidosis (DKA), potentially followed by secondary multi-organ failure (primarily renal and hepatic) and/or death.

Nov 21, 2019Z-0958-2020—open, classified

There have been reported incidents of a loose reservoir that can no longer be locked into the pump. The reservoir can become loose due to a broken or missing retainer ring that prevents a proper lock. If the reservoir is not properly locked into the pump, it could lead to over or under delivery of insulin, which could then result in hypoglycemia or hyperglycemia.

Nov 21, 2019Z-0955-2020—open, classified

There have been reported incidents of a loose reservoir that can no longer be locked into the pump. The reservoir can become loose due to a broken or missing retainer ring that prevents a proper lock. If the reservoir is not properly locked into the pump, it could lead to over or under delivery of insulin, which could then result in hypoglycemia or hyperglycemia.

Nov 21, 2019Z-0957-2020—open, classified

There have been reported incidents of a loose reservoir that can no longer be locked into the pump. The reservoir can become loose due to a broken or missing retainer ring that prevents a proper lock. If the reservoir is not properly locked into the pump, it could lead to over or under delivery of insulin, which could then result in hypoglycemia or hyperglycemia.

Nov 21, 2019Z-0956-2020—open, classified

There have been reported incidents of a loose reservoir that can no longer be locked into the pump. The reservoir can become loose due to a broken or missing retainer ring that prevents a proper lock. If the reservoir is not properly locked into the pump, it could lead to over or under delivery of insulin, which could then result in hypoglycemia or hyperglycemia.

May 21, 2019Z-1881-2019—terminated

Fifteen affected devices were distributed worldwide, which were mislabeled with an incorrect size. In all cases, the actual surgical heart valves are larger than what was indicated on the boxes and jar labels.

May 21, 2019Z-1883-2019—terminated

Fifteen affected devices were distributed worldwide, which were mislabeled with an incorrect size. In all cases, the actual surgical heart valves are larger than what was indicated on the boxes and jar labels.

May 21, 2019Z-1882-2019—terminated

Fifteen affected devices were distributed worldwide, which were mislabeled with an incorrect size. In all cases, the actual surgical heart valves are larger than what was indicated on the boxes and jar labels.

May 21, 2019Z-1880-2019—terminated

Fifteen affected devices were distributed worldwide, which were mislabeled with an incorrect size. In all cases, the actual surgical heart valves are larger than what was indicated on the boxes and jar labels.

May 21, 2019Z-1884-2019—terminated

Fifteen affected devices were distributed worldwide, which were mislabeled with an incorrect size. In all cases, the actual surgical heart valves are larger than what was indicated on the boxes and jar labels.

May 20, 2019Z-2106-2020—open, classified

Customers using the firm's continuous glucose monitoring system application on an iPhone, iPad or iPod Touch with ios software version 12, 12.1, or 12,2 are likely to experience a shortened transmitter battery life (approximately 4-5 days instead of the normal 7 days or more) after a full charge.

Oct 3, 2018Z-0683-2019—open, classified

Reports of occurrences in which insulin pumps with version 4.10 software have failed to make expected audio sounds during alerts, alarms or sirens. This could cause a user to miss system notifications, alarms or sirens associated with how the pump is working, and with high and low glucose alerts.

Aug 7, 2018Z-0177-2020—terminated

There is a potential security vulnerability related to the use of the remote controller accessories with the insulin pumps.

Aug 7, 2018Z-0178-2020—terminated

There is a potential security vulnerability related to the use of the remote controller accessories with the insulin pumps.

Jul 4, 2018Z-1282-2019—terminated

The application may be closed by the operating system without alerting the user the app is no longer running or communicating with the transmitter resulting in the user not receiving alerts that could be associated with hypoglycemic or hyperglycemic events.

May 16, 2018Z-3201-2018—terminated

CONTOUR PLUS LINK 2.4 meter with an incorrect unit of measure was included into meter kits and distributed. This meter contains the incorrect unit of measure mg/dL instead of mmol/L.

Apr 24, 2018Z-2377-2018—terminated

The MiniMed Paradigm Veo insulin pump has an error that impacts the Arabic language translation.This translation error occurs in the Predictive Alerts setting screen, which allows user to program alerts that will sound if users are predicted to reach their pre-set low or high sensor glucose values.

Nov 3, 2017Z-0188-2018—terminated

Stent length on the label may not match the length of the stent itself.

Oct 10, 2017Z-0670-2018—terminated

Due to a time conversion error, data uploaded from the iPro(TM)2 recorder to the CareLink iPro software using the new CareLink iPro Uploader feature may result in incorrect reports. This pertains only to reports generated between September 23, 2017 and September 27, 2017 that used the new CareLink iPro Uploader feature.

Sep 26, 2017Z-1207-2018—terminated

Complaints regarding 6F Taiga guide catheter tip detachment and/or tip splitting.

Sep 10, 2017Z-0108-2018—open, classified

Medtronic MiniMed(TM) Infusion Sets have the potential for over-delivery of Insulin.

Sep 10, 2017Z-0110-2018—open, classified

Medtronic MiniMed(TM) Infusion Sets have the potential for over-delivery of Insulin.

Sep 10, 2017Z-0111-2018—open, classified

Medtronic MiniMed(TM) Infusion Sets have the potential for over-delivery of Insulin.

Sep 10, 2017Z-0107-2018—open, classified

Medtronic MiniMed(TM) Infusion Sets have the potential for over-delivery of Insulin.

Sep 10, 2017Z-0109-2018—open, classified

Medtronic MiniMed(TM) Infusion Sets have the potential for over-delivery of Insulin.

May 8, 2017Z-2603-2017—terminated

Medtronic MiniMed is recalling the MiniMed 600 series insulin pump because it may become temporarily stuck, and the keypad becomes unresponsive.

May 8, 2017Z-2605-2017—terminated

Medtronic MiniMed is recalling the MiniMed 600 series insulin pump because it may become temporarily stuck, and the keypad becomes unresponsive.