Civic Data
FDA RecallsUSDA RecallsAbout

FDA Recalls

  • Food recalls
  • Drug recalls
  • Device recalls

USDA Recalls

  • All USDA recalls
  • Poultry recalls
  • Meat recalls
  • Egg recalls

About

  • About us
  • FDA guides
  • USDA guides
  • Data sources
  • Privacy policy

Data

  • OpenFDA API
  • USDA FSIS

© 2026Civic Data · Data sourced from OpenFDA and USDA FSIS · Not affiliated with the U.S. Food and Drug Administration or the U.S. Department of Agriculture · Always verify against official sources before acting

  1. FDA Recalls
  2. ›Device Recalls

FDA Device Recalls

Recalls of medical devices, diagnostic equipment, implants, and surgical instruments.

Classification
AllClass IClass IIClass III
Status
AllOngoingCompletedTerminated
Date
All timePast 30 daysPast 12 months

Showing 561–580 of 1,000 recalls

Class IOngoing

GE Heathcare Giraffe OmniBed; neo natal incubator

DATEX--OHMEDA, INC.

GE HealthCare has become aware that for certain Giraffe OmniBed and Giraffe OmniBed Carestation devices, the screw that secures the doors that cover the warmer heaters may not have been torqued to specification. This may lead to the doors becoming loose.

September 3, 2024 · DeviceView details →
Class IOngoing

GE Heathcare Giraffe OmniBed Carestation, Model Number 2082844-001-XXX; neo natal incubator

DATEX--OHMEDA, INC.

GE HealthCare has become aware that for certain Giraffe OmniBed and Giraffe OmniBed Carestation devices, the screw that secures the doors that cover the warmer heaters may not have been torqued to specification. This may lead to the doors becoming loose.

September 3, 2024 · DeviceView details →
Class IOngoing

Ivenix Infusion System (IIS), LVP Software; LVP-SW-0004, Software Version 5.9.1 and prior. Infusion pump software for infusion management system.

Fresenius Kabi USA, LLC

The software has anomalies that have the potential to cause alarms, nonfunctioning pump, or unresponsive screen while continuing therapy. These could cause serious patient harm or death.

August 30, 2024 · DeviceView details →
Class IOngoing

Neo-Tee T-Piece Resuscitator. Part Numbers 1050805, 1050832. For pediatric emergency respiratory support.

Mercury Enterprises, Inc. dba Mercury Medical

Manual resuscitator circuit flow controller may come apart due to a missing manufacturing step.

August 30, 2024 · DeviceView details →
Class IOngoing

KINOVA Jaco assistive robot. Model Numbers: PJ 0000 0001, PJ 0000 0012, PJ 0090 0001, PJ 0090 0006, KR MJ2 0001. Jaco replaces the function of the upper limb on one side of the body.

Kinova Inc

Potential installation issue that could result in a fire hazard in the event of an interaction between a damaged Jaco arm and a wheelchair exhibiting electrical leakage.

August 22, 2024 · DeviceView details →
Class IOngoing

Percussionaire, Inc., REF: P5-TEE-20, Qty: 20, Rx Only. IPV (Intrapulmonary Percussive Ventilation) therapy In-Line Valve

Percussionaire Corporation

Updated labeling to ensure that blue cap on in-line valve is removed, prior to delivery of (Intrapulmonary percussive ventilation) IPV therapy.

August 21, 2024 · DeviceView details →
Class IOngoing

Percussionaire, Inc., REF: P5-TEE, Qty: 1, Rx Only. IPV (Intrapulmonary Percussive Ventilation) therapy In-Line Valve

Percussionaire Corporation

Updated labeling to ensure that blue cap on in-line valve is removed, prior to delivery of (Intrapulmonary percussive ventilation) IPV therapy.

August 21, 2024 · DeviceView details →
Class IOngoing

Baxter EXACTAMIX Inlet, Vented, Syringe Inlet, REF H938176, for use in a pharmaceutical compounding device

Baxter Healthcare Corporation

Baxter Healthcare Corporation has received increased customer reports of particulate matter in the Automated Compounding Device Inlets (disposable inlet), Product Codes H938173, H938174, H938175, H938176, used with the ExactaMix and ExactaMix Pro compounders. Particulate matter has been observed within the inlet primary packaging inlet components, including within the sterile fluid path tubing, before use.

August 20, 2024 · DeviceView details →
Class IOngoing

Baxter EXACTAMIX Inlet, Vented, High Volume Inlet, REF H938174, for use in a pharmaceutical compounding device

Baxter Healthcare Corporation

Baxter Healthcare Corporation has received increased customer reports of particulate matter in the Automated Compounding Device Inlets (disposable inlet), Product Codes H938173, H938174, H938175, H938176, used with the ExactaMix and ExactaMix Pro compounders. Particulate matter has been observed within the inlet primary packaging inlet components, including within the sterile fluid path tubing, before use.

August 20, 2024 · DeviceView details →
Class IOngoing

Baxter EXACTAMIX Inlet, Vented, Micro-Volume Inlet, REF H938175, for use in a pharmaceutical compounding device

Baxter Healthcare Corporation

Baxter Healthcare Corporation has received increased customer reports of particulate matter in the Automated Compounding Device Inlets (disposable inlet), Product Codes H938173, H938174, H938175, H938176, used with the ExactaMix and ExactaMix Pro compounders. Particulate matter has been observed within the inlet primary packaging inlet components, including within the sterile fluid path tubing, before use.

August 20, 2024 · DeviceView details →
Class IOngoing

Baxter EXACTAMIX Inlet, Non-Vented, High Volume Inlet, REF H938173, for use in a pharmaceutical compounding device

Baxter Healthcare Corporation

Baxter Healthcare Corporation has received increased customer reports of particulate matter in the Automated Compounding Device Inlets (disposable inlet), Product Codes H938173, H938174, H938175, H938176, used with the ExactaMix and ExactaMix Pro compounders. Particulate matter has been observed within the inlet primary packaging inlet components, including within the sterile fluid path tubing, before use.

August 20, 2024 · DeviceView details →
Class IOngoing

CARDIOSAVE HYBRID INTRA-AORTIC BALLOON PUMP (IABP). Electromechanical system used to inflate and deflate intra-aortic balloons.

Datascope Corp.

Firm has developed a software correction (Revision D.00) outside the US to mitigate product problems that pose a risk of hemodynamic instability and failure of transmission of clinical data in Cardiosave Hybrid and Cardiosave Rescue Intra-Aortic Balloon Pump devices.

August 8, 2024 · DeviceView details →
Class IOngoing

CARDIOSAVE RESCUE INTRA-AORTIC BALLOON PUMP (IABP). Electromechanical system used to inflate and deflate intra-aortic balloons.

Datascope Corp.

Firm has developed a software correction (Revision D.00) outside the US to mitigate product problems that pose a risk of hemodynamic instability and failure of transmission of clinical data in Cardiosave Hybrid and Cardiosave Rescue Intra-Aortic Balloon Pump devices.

August 8, 2024 · DeviceView details →
Class IOngoing

CARDIOSAVE RESCUE INTRA-AORTIC BALLOON PUMP (IABP). Electromechanical system used to inflate and deflate intra-aortic balloons.

Datascope Corp.

Firm has developed a software correction (Revision D.01) for outside the US to mitigate product problems that pose a risk of hemodynamic instability and failure of transmission of clinical data in Cardiosave Hybrid and Cardiosave Rescue Intra-Aortic Balloon Pump devices.

August 8, 2024 · DeviceView details →
Class IOngoing

CARDIOSAVE HYBRID INTRA-AORTIC BALLOON PUMP (IABP). Electromechanical system used to inflate and deflate intra-aortic balloons.

Datascope Corp.

Firm has developed a software correction (Revision D.01) for outside the US to mitigate product problems that pose a risk of hemodynamic instability and failure of transmission of clinical data in Cardiosave Hybrid and Cardiosave Rescue Intra-Aortic Balloon Pump devices.

August 8, 2024 · DeviceView details →
Class IOngoing

Infusomat Space Infusion System/ Large Volume Pump, Product Code 8713050U

B Braun Medical Inc

Extension of previous recall RES 92978. Pumps have the potential for upstream occlusion sensor to cease proper function due to buildup of electrostatic charge during operation triggering false downstream and upstream occlusion alarms. Additional devices have been affected.

August 7, 2024 · DeviceView details →
Class IOngoing

LVP Primary Administration Set, Dual-Inlet, Low-Sorbing, Needle-Free Port, Y-Site (Qty 25), Product Code: SET-0013-25. for intravenous infusion.

Fresenius Kabi USA, LLC

A defect may cause an uncontrolled medication flow condition which may result in a dose greater than prescribed for the patient (i.e., medication overdose).

August 1, 2024 · DeviceView details →
Class IOngoing

MiniMed 620G Insulin Pump, REF: MMT-1510, MMT-1710, MMT-1750; MiniMed 630G Insulin Pump, REF: MMT-1515, MMT-1714, MMT-1715, MMT-1754, MMT-1755; MiniMed 640G Insulin Pump, REF: MMT-1511, MMT-1711, MMT-1512, MMT-1712, MMT-1751, MMT-1752; MiniMed 720G Insulin Pump, REF: MMT-1809, MMT-1810, MMT-1817, MMT-1818, MMT-1859, MMT-1860, MMT-1867, MMT-1868 MiniMed 740G Insulin Pump, REF: MMT-1811, MMT-1812, MMT-1861, MMT-1862

Medtronic MiniMed, Inc.

Insulin pumps that have been dropped, bumped, or experienced physical impact may have damage to internal electrical components, which may cause reduced pump battery life. Since the defect reduces the battery life overall, it shortens the time between low battery alarms and increases the frequency with which the user must insert a new battery. Further, the defect may also deliver the low battery alarm when there is significantly less time before the battery completely runs out, from the expected up to 10-hour buffer the low alert is supposed to signal, leading to device powering down and stopping insulin delivery unexpectedly. Per the firm, a subset of pumps with the defect showed the low alert alarm was delivered ~2.5 hours before the device shut off, however, patient reports indicate the time could be even shorter. Replacing the battery will not resolve this issue and the short battery life and the truncated low battery alert lead time will continue to occur. Early battery depletion could result in power loss and insulin delivery could be interrupted, resulting in under delivery of insulin potentially leading to hyperglycemia and/or DKA.

July 31, 2024 · DeviceView details →
Class IOngoing

MiniMed Insulin Pump Device. MiniMed 670G, REF: MMT-1580, MMT-1581, MMT-1582, MMT-1780, MMT-1781, MMT-1782, MMT-1740, MMT-1741, MMT-1742, MMT-1760, MMT-1761, MMT-1762; MiniMed 770G, REF: MMT-1880, MMT-1881, MMT-1882, MMT-1890, MMT-1891, MMT-1892; MiniMed 780G, REF: MMT-1884, MMT-1885, MMT-1886, MMT-1894, MMT-1895, MMT-1896

Medtronic MiniMed, Inc.

Insulin pumps that have been dropped, bumped, or experienced physical impact may have damage to internal electrical components, which may cause reduced pump battery life. Since the defect reduces the battery life overall, it shortens the time between low battery alarms and increases the frequency with which the user must insert a new battery. Further, the defect may also deliver the low battery alarm when there is significantly less time before the battery completely runs out, from the expected up to 10-hour buffer the low alert is supposed to signal, leading to device powering down and stopping insulin delivery unexpectedly. Per the firm, a subset of pumps with the defect showed the low alert alarm was delivered ~2.5 hours before the device shut off, however, patient reports indicate the time could be even shorter. Replacing the battery will not resolve this issue and the short battery life and the truncated low battery alert lead time will continue to occur. Early battery depletion could result in power loss and insulin delivery could be interrupted, resulting in under delivery of insulin potentially leading to hyperglycemia and/or DKA.

July 31, 2024 · DeviceView details →
Class IOngoing

MiniMed 630G Insulin Pump, REF: MMT-1515, MMT-1714, MMT-1715, MMT-1754, MMT-1755; MiniMed 700G Insulin Pump, REF: MMT-1800, MMT-1801, MMT-1805, MMT-1850, MMT-1851

Medtronic MiniMed, Inc.

Insulin pumps that have been dropped, bumped, or experienced physical impact may have damage to internal electrical components, which may cause reduced pump battery life. Since the defect reduces the battery life overall, it shortens the time between low battery alarms and increases the frequency with which the user must insert a new battery. Further, the defect may also deliver the low battery alarm when there is significantly less time before the battery completely runs out, from the expected up to 10-hour buffer the low alert is supposed to signal, leading to device powering down and stopping insulin delivery unexpectedly. Per the firm, a subset of pumps with the defect showed the low alert alarm was delivered ~2.5 hours before the device shut off, however, patient reports indicate the time could be even shorter. Replacing the battery will not resolve this issue and the short battery life and the truncated low battery alert lead time will continue to occur. Early battery depletion could result in power loss and insulin delivery could be interrupted, resulting in under delivery of insulin potentially leading to hyperglycemia and/or DKA.

July 31, 2024 · DeviceView details →
← PreviousPage 29 of 50Next →