Civic Data
FDA RecallsAbout

FDA Recalls

  • Food recalls
  • Drug recalls
  • Device recalls

Browse

  • All recalls

About

  • About us
  • Guides
  • Data sources
  • Privacy policy

Data

  • OpenFDA API

© 2026Civic Data · Data sourced from OpenFDA, updated weekly · Not affiliated with the U.S. Food and Drug Administration · Always verify against official FDA 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 61–80 of 392 recalls

Class IICompleted

COOLIEF RF Generator is an 80-watt Radio-Frequency (RF) Generator with four independent RF channels, allowing all RF channels to be activated individually or altogether. The system is controlled via a touch screen interface display that includes user controls, alarm messages, and on-screen selection of lesioning modalities.

Avanos Medical, Inc.

Avanos has received an increase in complaints from customers for COOLIEF RF Generators producing F100 and F101 faults.

August 1, 2023 · DeviceView details →
Class IICompleted

nanoDot D2DNS, Model Numbers: a) 18100-000; b) 18100-1MO; c) 18100-2MO; d) 18100-KIT; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

nanoDot D2DNS, Model Numbers: a) 03057-1MO; b) 03057-3MO; c) 03057-OTO; d) 03057-SMO; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

Constancy (80 kVp) nanoDot D2DNN, Model Numbers: a) 18150-000 (EMEA number VKITCON002); b) 18150-KIT; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

QC (80 kVp) screened nanoDot D2DNS, Model Number 03066-OTO; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

nanoDot A - item 1 of 3 for 03500-000, Model Number 03501-000; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

Reader, nanoDot adapter, EU Model Number VINLADA003; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

Calibrate (80 kVp) nanoDot D2DNS, Model Numbers: a) 18120-000; b) 18120-KIT; c) 18120-SET; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

nanoDot D2DNS, for custom calibrate, OTO, Model Numbers 03034-OTO; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

nanoDot kit (contains nanoDot A, B, C), Model Number 03500-000; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

nanoDot D2DNS, for custom calibrate, OTO, Model Number 03033-OTO; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

QC (Cs-137) nanoDot D2DNS, Model Numbers: a) 04225-000 (EMEA number VINLNAN005); b) 04225-KIT; c) 04225-SET; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

nanoDot D2DNN, Model Numbers: a) 03053-1MO; b) 03053-1WK ; c) 03053-3MO; d) 03053-OTO; e) 03053-SMO; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

nanoDot D2DNN, Model Numbers: a) 18105-000; b) 18105-KIT; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

QC (80 kVp) nanoDot D2DNS, Model Numbers: a) 18130-000; b) 18130-KIT; c) 18130-SET; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

nanoDot D2DNS, Model Numbers: a) 03056-000 (EMEA number VINLNAN002); b) 03056-1MO; c) 03056-3MO; d) 03056-KIT; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

QC (Cs-137) screened nanoDot D2DNS, Model Number 03067-OTO; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

NanoDots, Model Number 04297-000; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

Constancy (Cs-137) nanoDot D2DNN, Model Numbers: a) 18155-000 (EMEA number VKITCON001); b) 18155-KIT; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
Class IICompleted

Calibrate (Cs-137) screened nanoDot D2DNS, Model Number 03065-OTO; radiation monitoring dosimeter used with the microSTAR readers

Landauer

LANDAUER received reports indicating that some nanoDots may potentially be outside of the specified range of +/-5.5% accuracy. Investigation of nanoDots indicated the presence of a potential non-conformance in the Optical Stimulated Luminescence (OSL) material that is beamed after exposure and emits fluorescence proportional to radiation exposure.

July 12, 2023 · DeviceView details →
← PreviousPage 4 of 20Next →