Medical Device
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Landauer

Glenwood, IL, US

Landauer appears in FDA device records in Glenwood, IL. FDA records list one 510(k) clearance, no PMA records and no registered establishments. As of , FDA records show 40 recalls for this company.

FDA records held for this company

510(k) clearances
1
PMA records
0
Recall records
40
Registered establishments
0

510(k) clearance history

FDA records hold 1 510(k) clearance for Landauer in 2019.

Clearances by year, as a table
510(k) clearance decisions for Landauer, by decision year
YearClearances
20191
510(k) clearances on record, most recent first
K numberDeviceProduct codeDecisionDecision date
K192196Medical Radiation Dosimetry System microSTARiiIYESubstantially Equivalent

Registered establishments

No FDA establishment registrations recorded against this company.

FDA product codes

Recall records

Showing 25 of 40
Device recall records naming this company, most recent first
RecallProductReasonClassificationInitiatedStatus
Z-1349-2024microStar Reader, Model Numbers: 10015-000 (marketed in EMEA as 100, 102, 110, and 201), 10016-000 (marketed in EMEA as 101), 10036-000, 10044-000, 10055-000, BC30058, and BC30059Permanent discontinuance of the microSTARii medical dosimetry system. Landauer has initiated this action to remove all reference to use of the microStar readers with the nanoDot or any otherbdosimeter for medical applications from the product s user manual and software and to remove microStar readers from customers who use them only for medical applications.Class IICompleted
Z-0616-2024Landauer microSTARii reader, Medical Dosimetry System, Model Numbers: 18000-000/18001-000/18007-000MicroSTARii readers may be contributing to the nanodot dosimeter measurement inaccuracy in two possible ways. The first is related to the interaction of the reader s LED beam profile with the nanoDot dosimeter. The second is debris formation due to drawer actuation, resulting in a change of reader response that may not be detectable unless known dose QCs are being run regularly.Class IICompleted
Z-2575-2023Reader, nanoDot adapter, EU Model Number VINLADA003; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2574-2023NanoDots, Model Number 04297-000; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2573-2023NanoDots, Model Numbers: a) BC30023, description: QC Set For Microstar Dots; b) BC30083, description: nanoDot QC Set - 80kVp - Sale; c) BC30084, description: nanoDot QC Set - 80kVp - No Charge; d) BC30088, description: nanoDot Calibration Set - 80kVp - No Charge; e) BC30095, description: Dot, D1DNN, in carrier sealed in bag; f) BC30110, description: Calibration set, nanoDot; g) BC30141, description: nanoDot QC Set - Cs137 - Sale; h) BC30142, description: nanoDot Calibration set - Cs137 - Sale; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2572-2023Constancy (Cs-137) nanoDot D2DNN, Model Numbers: a) 18155-000 (EMEA number VKITCON001); b) 18155-KIT; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2571-2023Constancy (80 kVp) nanoDot D2DNN, Model Numbers: a) 18150-000 (EMEA number VKITCON002); b) 18150-KIT; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2570-2023Calibrate (unexposed) nanoDot D2DNS, Model Numbers: a) 18140-000; b) 18140-KIT; c) 18140-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2569-2023QC (Cs-137) nanoDot D2DNS, Model Numbers: a) 18135-000; b) 18135-KIT; c) 18135-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2568-2023QC (80 kVp) nanoDot D2DNS, Model Numbers: a) 18131-000; b) 18131-KIT; c) 18131-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2567-2023QC (80 kVp) nanoDot D2DNS, Model Numbers: a) 18130-000; b) 18130-KIT; c) 18130-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2566-2023Calibrate (Cs-137) nanoDot D2DNS, Model Numbers: a) 18125-000; b) 18125-KIT; c) 18125-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2565-2023Calibrate (80 kVp) nanoDot D2DNS, Model Numbers: a) 18121-000; b)18121-KIT; c) 18121-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2564-2023Calibrate (80 kVp) nanoDot D2DNS, Model Numbers: a) 18120-000; b) 18120-KIT; c) 18120-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2563-2023nanoDot D2DNN, Model Numbers: a) 18105-000; b) 18105-KIT; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2562-2023nanoDot D2DNS, Model Numbers: a) 18100-000; b) 18100-1MO; c) 18100-2MO; d) 18100-KIT; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2561-2023nanoDot D2DNN , Model Numbers: a) 04293-000; b) 04293-KIT; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2560-2023QC (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 readersLANDAUER 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.Class IICompleted
Z-2559-2023Calibrate (Cs-137) nanoDot D2DNS, Model Numbers: a) 04224-000 (EMEA number VINLNAN006); b) 04224-KIT; c) 04224-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2558-2023QC (80 kVp) nanoDot D2DNS, Model Numbers: a) 04218-000 (EMEA number VINLNAN004); b) 04218-KIT; c) 04218-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2557-2023Calibrate (80 kVp) nanoDot D2DNS, Model Numbers: a) 04217-000 (EMEA number VINLNAN003); b) 04217-KIT; c) 04217-SET; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2556-2023nanoDot C - item 3 of 3 for 03500-000, Model Number 03503-000; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2555-2023nanoDot B - item 2 of 3 for 03500-000, Model Number 03502-000; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2554-2023nanoDot A - item 1 of 3 for 03500-000, Model Number 03501-000; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted
Z-2553-2023nanoDot kit (contains nanoDot A, B, C), Model Number 03500-000; radiation monitoring dosimeter used with the microSTAR readersLANDAUER 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.Class IICompleted

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Data as of , FDA export datePage updated Source: openFDA, public domain