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Sign in to claim this brandSIEMENS MEDICAL SOLUTIONS USA, INC.
United States·US-MF-000012284
Last updated September 17, 2026
What SIEMENS MEDICAL SOLUTIONS USA, INC. makes
Siemens Medical Solutions USA, Inc. manufactures ultrasound imaging transducers, including hand-held, rectal/vaginal, and general-purpose models such as the 3.5C40S, L13-5, P10, 4V2C, 8L5T, PX4-1, and AcuNav Volume Ultrasound Catheter. It also produces nuclear medicine systems and components, including PET/CT systems like the Biograph mCT 20 Excel and Biograph Trinion EP CT64, SPECT systems such as the Symbia Pro.specta Q3, nuclear medicine phantoms, test objects, and multi-hole low-energy collimators, along with associated application software for PET and SPECT systems and syngo.MM Oncology.
The company's devices are classified as Class I, Class II, and Class IIb and are listed in regulatory registries including Eudamed, FDA 510(k), and FDA UDI. Siemens Medical Solutions USA, Inc. 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 does Siemens Medical Solutions USA, Inc. manufacture?
Siemens Medical Solutions USA, Inc. manufactures ultrasound imaging transducers (hand-held, rectal/vaginal, and general-purpose), nuclear medicine systems and components (PET/CT, SPECT, phantoms, collimators), and associated application software for medical imaging.
Where is Siemens Medical Solutions USA, Inc. based?
Siemens Medical Solutions USA, Inc. is based in the United States, as indicated by its country designation in regulatory data.
Which regulatory registries list Siemens Medical Solutions USA, Inc.'s devices?
The company's devices are listed in regulatory registries including Eudamed, FDA 510(k), and FDA UDI, as shown in its registry information.
How are Siemens Medical Solutions USA, Inc.'s devices classified?
The company's devices are classified as Class I, Class II, and Class IIb, which reflects their varying levels of regulatory control based on potential risk to patients.
AI-generated from registry data and not verified by a human reviewer.
Information
- Country
- United States
- Address
- 2501, North Barrington Rd., Hoffman Estates, United States
- Website
- www.siemens-healthineers.com
- —
- —
- [email protected]
- Phone
- +1(800)888-7436
- PRRC Contact
- —
- EUDAMED SRN
- US-MF-000012284
- FDA FEI Number
- 3003304172
- DUNS Number
- 111494907
Catalogue (1340)
Page 1 of 27| Device | Model / Reference | Registries | Class | Status |
|---|---|---|---|---|
| Biograph mCT 20 Excel combination | 11521491 | EUDAMED | Class IIb | Active |
| Symbia Pro.specta Q3 (11364751) | K261315 | FDA 510(k) | Class II | Active |
| 3.5C40S Transducer | 05726625 | FDA UDI | Class II | Active |
| syngo.MM Oncology | 11431567 | FDA UDI | Class II | Active |
| Biograph Trinion EP CT64 | 10756474 | FDA UDI | Class II | Active |
| L13-5 Transducer | 11001402 | FDA UDI | Class II | Active |
| P10 Handheld Ultrasound System | 10036446 | FDA UDI | Class II | Active |
| ACUSON P500 Diagnostic Ultrasound System | 10785577 | FDA UDI | Class II | Active |
| 4V2C Transducer | 08260627 | FDA UDI | Class II | Active |
| 8L5T Transducer | 08262933 | FDA UDI | Class II | Active |
| AcuNav Volume Ultrasound Catheter | 10855958 | FDA UDI | Class II | Active |
| PX4-1 Transducer | 07854149 | FDA UDI | Class II | Active |
| 6.5EV13S CONVEX ARRAY ENDO-V Transducer | 05726658 | FDA UDI | Class II | Active |
| Top Level Biograph 6-4r W/0 Ct | 10245859 | FDA UDI | Class II | Active |
| 15L8w Transducer | 08252596 | FDA UDI | Class II | Active |
| 8C4 Transducer | 08241118 | FDA UDI | Class II | Active |
| Advanced Workflow (MIWP) - mCT non-Flow | 10531288 | FDA UDI | Class II | Active |
| L9-5 Transducer | 08648102 | FDA UDI | Class II | Active |
| P4-2 Litho Transducer | 10031504 | FDA UDI | Class II | Active |
| PAIN TH. MICROSECTOR Transducer | 05727151 | FDA UDI | Class II | Active |
| 8L5 Transducer | 08247447 | FDA UDI | Class II | Active |
| Z6Ms Transducer | 10436113 | FDA UDI | Class II | Active |
| P4-2 Transducer | 11015393 | FDA UDI | Class II | Active |
| Symbia S Series | 08717741 | FDA UDI | Class II | Active |
| EV9F4 Transducer | 10349026 | FDA UDI | Class II | Active |
| Ge68 HCl | 10182108 | FDA UDI | Class I | Active |
| LA523 Transducer | 11147258 | FDA UDI | Class II | Unknown |
| syngo MBF | 10764036 | FDA UDI | Class II | Active |
| VFX9-4 Transducer | 11014031 | FDA UDI | Class II | Active |
| 18L6 Transducer | 11657384 | FDA UDI | Class II | Active |
| PA230E Transducer | 10852686 | FDA UDI | Class II | Unknown |
| Z6T Transducer | 11151267 | FDA UDI | Class II | Active |
| EC1123 Transducer | 11147254 | FDA UDI | Class II | Unknown |
| CA123 Transducer | 10852683 | FDA UDI | Class II | Unknown |
| Pinhole with 4 mm aperture | 04380585 | FDA UDI | Class II | Active |
| 4V1 Transducer | 11014576 | FDA UDI | Class II | Active |
| 17L5HD Transducer | 10035724 | FDA UDI | Class II | Active |
| 9VE3 Transducer | 11284922 | FDA UDI | Class II | Active |
| c.cam Imaging System | 08419009 | FDA UDI | Class II | Active |
| 4Z1c Transducer | 10033682 | FDA UDI | Class II | Active |
| CH6-2 Transducer | 07465672 | FDA UDI | Class II | Active |
| 18L6HD Transducer | 10041227 | FDA UDI | Class II | Active |
| Symbia_Intevo_2 | 10764802 | FDA UDI | Class II | Active |
| Biograph Trinion EP2 CT64 | 10756476 | FDA UDI | Class II | Active |
| 14L5 Transducer | 11286571 | FDA UDI | Class II | Active |
| ACUSON Freestyle Diagnostic Ultrasound System | 11002300 | FDA UDI | Class II | Active |
| C5-2 Transducer | 11001403 | FDA UDI | Class II | Active |
| 10MC3 Transducer | 11268679 | FDA UDI | Class II | Active |
| syngo.MI General | 11589500 | FDA UDI | Class II | Active |
| PH4-1 Transducer | 07466910 | FDA UDI | Class II | Active |
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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 1241 recall records for Siemens Medical Solutions USA, Inc., with the earliest initiated on 0013-03-05 and the most recent on 2026-03-12. The statuses of these recalls include open, classified, and terminated. The reasons given for the recalls include potential malfunctions in safety catches, power supply tolerance issues, ultrasound intensity limits being exceeded, software errors affecting volume calculation and image orientation, risks of lost order transactions during system restarts, mechanical cracks in patient tables leading to detachment hazards, missing protective covers over electronics, instability due to inadequately tightened bolts, electrical contact resistance in Multi Display Manager units, incorrect printout sizing from printer-software mismatches, and mismatches between indicated and actual patient orientation.
AI-generated summary of the recall records listed below. It describes what the records state and is not an assessment of this manufacturer.
| Date | Recall No. | Class | Status | Reason |
|---|---|---|---|---|
| Mar 12, 2026 | Z-1814-2026 | — | open, classified | During 3D acquisitions, lighter and darker patient images may be captured, which may result in less accurate 3D reconstruction. The variation of brightness is a result of a constant unregulated medium dose and the angular change of patient diameter caused by rotational acquisition. This may result in unintentional low-dose radiation exposure to a patient. |
| Mar 10, 2026 | Z-1653-2026 | — | open, classified | During patient examinations, the system may sporadically display a major increase of the x-ray dose applied to the patient. Despite the reported dose showing significantly higher, the actual applied x-ray dose levels are in accordance with the system settings and imaging conditions, as well as the applicable regulatory requirements. |
| Mar 9, 2026 | Z-2205-2026 | — | open, classified | During patient examinations, the system may sporadically display a 0 x-ray dose administered to the patient. This behavior has only been observed during fluoroscopy and/or single-frame acquisitions. Despite the reported x-ray dose showing 0, an actual x-ray dose is applied to the patient. |
| Mar 9, 2026 | Z-2206-2026 | — | open, classified | During patient examinations, the system may sporadically display a 0 x-ray dose administered to the patient. This behavior has only been observed during fluoroscopy and/or single-frame acquisitions. Despite the reported x-ray dose showing 0, an actual x-ray dose is applied to the patient. |
| Dec 29, 2025 | Z-1175-2026 | — | open, classified | Ortho images acquired with preset automatic horizontal flip are not flipped and when acquiring single images, there is the possibility that an image of a previous patient may be processed. |
| Dec 29, 2025 | Z-1174-2026 | — | open, classified | Ortho images acquired with preset automatic horizontal flip are not flipped and when acquiring single images, there is the possibility that an image of a previous patient may be processed. |
| Dec 19, 2025 | Z-1242-2026 | — | open, classified | To remove the software applications from certain CT systems as the applications have not received FDA 510(k) clearance. |
| Dec 19, 2025 | Z-1241-2026 | — | open, classified | To remove the software applications from certain CT systems as the applications have not received FDA 510(k) clearance. |
| Dec 19, 2025 | Z-1240-2026 | — | open, classified | To remove the software applications from certain CT systems as the applications have not received FDA 510(k) clearance. |
| Dec 19, 2025 | Z-1239-2026 | — | open, classified | To remove the software applications from certain CT systems as the applications have not received FDA 510(k) clearance. |
| Dec 5, 2025 | Z-0999-2026 | — | open, classified | A potential issue associated with LUMINOS Lotus Max and Luminos dRF Max systems with software version VF11 with bucky wall stand for mobile detectors and without ceiling stand .When switching quickly between organ programs (OGPs) the collimation may be incorrect. |
| Oct 24, 2025 | Z-0877-2026 | — | open, classified | There were instances where the operator table was sold together with a bus-installation kit. The operator table is not intended and not released for bus installations as it was designed for stationary operation only. |
| Oct 24, 2025 | Z-0878-2026 | — | open, classified | There were instances where the operator table was sold together with a bus-installation kit. The operator table is not intended and not released for bus installations as it was designed for stationary operation only. |
| Oct 24, 2025 | Z-0879-2026 | — | open, classified | There were instances where the operator table was sold together with a bus-installation kit. The operator table is not intended and not released for bus installations as it was designed for stationary operation only. |
| Oct 1, 2025 | Z-0431-2026 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the primary and/or the auxiliary venting paths of the magnet helium containment venting system. In the event of a quench when both venting paths are blocked, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2656-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2654-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2658-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2663-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2664-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2662-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2665-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2655-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2667-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2657-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2661-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2668-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2666-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2659-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 28, 2025 | Z-2660-2025 | — | open, classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room. |
| Aug 12, 2025 | Z-2529-2025 | — | open, classified | Limited system movements after startup . |
| Jun 4, 2025 | Z-1981-2025 | — | open, classified | A resistor in the frequency inverter may strongly overheat potentially igniting the plastic housing of the frequency inverter on fire. |
| Jun 4, 2025 | Z-1982-2025 | — | open, classified | A resistor in the frequency inverter may strongly overheat potentially igniting the plastic housing of the frequency inverter on fire. |
| May 15, 2025 | Z-2022-2025 | — | open, classified | In very rare situations, communication between the sensor measuring dose applied to the area and the corresponding software fails. As a result of the failure, the system may incorrectly report an application of a high dose. |
| May 15, 2025 | Z-2021-2025 | — | open, classified | In very rare situations, communication between the sensor measuring dose applied to the area and the corresponding software fails. As a result of the failure, the system may incorrectly report an application of a high dose. |
| May 15, 2025 | Z-2019-2025 | — | open, classified | In very rare situations, communication between the sensor measuring dose applied to the area and the corresponding software fails. As a result of the failure, the system may incorrectly report an application of a high dose. |
| May 15, 2025 | Z-2020-2025 | — | open, classified | In very rare situations, communication between the sensor measuring dose applied to the area and the corresponding software fails. As a result of the failure, the system may incorrectly report an application of a high dose. |
| Jan 2, 2025 | Z-0922-2025 | — | open, classified | A potential issue with ARTIS One systems was identified. In very rare situations, the first x-ray release following patient registration may be performed with incorrect copper prefiltration. If the described issue occurs, the applied radiation dose-rate may be higher than intended by the user. |
| Aug 15, 2024 | Z-3216-2024 | — | open, classified | If ultrasound systems with software, are changed from factory default to : 1) Milliliters per second (ml/sec, mL/sec) or 2) Milliliters per minute (ml/min, mL/min); then systems will perform incorrect unit conversion of liters to milliliters using multiplier 100 instead of 1000, resulting values 10x smaller than actual, which could contribute misdiagnosis or negatively influence patient management |
| Aug 15, 2024 | Z-3215-2024 | — | open, classified | If ultrasound systems with software, are changed from factory default to : 1) Milliliters per second (ml/sec, mL/sec) or 2) Milliliters per minute (ml/min, mL/min); then systems will perform incorrect unit conversion of liters to milliliters using multiplier 100 instead of 1000, resulting values 10x smaller than actual, which could contribute misdiagnosis or negatively influence patient management |
| Aug 15, 2024 | Z-3217-2024 | — | open, classified | If ultrasound systems with software, are changed from factory default to : 1) Milliliters per second (ml/sec, mL/sec) or 2) Milliliters per minute (ml/min, mL/min); then systems will perform incorrect unit conversion of liters to milliliters using multiplier 100 instead of 1000, resulting values 10x smaller than actual, which could contribute misdiagnosis or negatively influence patient management |
| Jul 3, 2024 | Z-2441-2024 | — | open, classified | If the Sensis documentation functionality is used during adding of once-per-study reporting events (e.g., Type 1 events, as further defined in the administrator manual), the possibility exists that the application could crash. |
| Jul 3, 2024 | Z-2438-2024 | — | open, classified | If the Sensis documentation functionality is used during adding of once-per-study reporting events (e.g., Type 1 events, as further defined in the administrator manual), the possibility exists that the application could crash. |
| Jul 3, 2024 | Z-2440-2024 | — | open, classified | If the Sensis documentation functionality is used during adding of once-per-study reporting events (e.g., Type 1 events, as further defined in the administrator manual), the possibility exists that the application could crash. |
| Jul 3, 2024 | Z-2439-2024 | — | open, classified | If the Sensis documentation functionality is used during adding of once-per-study reporting events (e.g., Type 1 events, as further defined in the administrator manual), the possibility exists that the application could crash. |
| Jul 2, 2024 | Z-2528-2024 | — | open, classified | The support arm may unintentionally lower resulting in injury to persons when they are under the display ceiling/wall suspension when positioning the displays |
| Jul 2, 2024 | Z-2525-2024 | — | open, classified | The support arm may unintentionally lower resulting in injury to persons when they are under the display ceiling/wall suspension when positioning the displays |
| Jul 2, 2024 | Z-2527-2024 | — | open, classified | The support arm may unintentionally lower resulting in injury to persons when they are under the display ceiling/wall suspension when positioning the displays |
| Jul 2, 2024 | Z-2526-2024 | — | open, classified | The support arm may unintentionally lower resulting in injury to persons when they are under the display ceiling/wall suspension when positioning the displays |
| May 31, 2024 | Z-2186-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| May 31, 2024 | Z-2183-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| May 31, 2024 | Z-2185-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| May 31, 2024 | Z-2188-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| May 31, 2024 | Z-2182-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| May 31, 2024 | Z-2187-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| May 31, 2024 | Z-2181-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| May 31, 2024 | Z-2180-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| May 31, 2024 | Z-2184-2024 | — | open, classified | Short circuit in the power supply unit (PSU) of the Touch Display may lead to overheating and fire |
| Mar 21, 2024 | Z-1598-2024 | — | open, classified | Coolant level in the cooling circuit drops below a certain level, this may result in a situation in which the X-ray tube is no longer sufficiently cooled and the system will display the message TUBE HOT, have a break . the system cannot be operated normally, may result in a situation where it is necessary to cancel clinical treatment or to continue treatment on an alternative system |
| Feb 23, 2024 | Z-1601-2024 | — | open, classified | On ultrasound systems, when Cardiac DICOM SR feature is configured to display either minimum or maximum measured value, and multiple cardiac region measurements are made, and results are exported into the SR feature, then The SR viewer will display the LAST measured value, not min or max, which could contribute to patient condition misdiagnosis or negatively influence patient management decisions. |
| Feb 23, 2024 | Z-1599-2024 | — | open, classified | On ultrasound systems, when Cardiac DICOM SR feature is configured to display either minimum or maximum measured value, and multiple cardiac region measurements are made, and results are exported into the SR feature, then The SR viewer will display the LAST measured value, not min or max, which could contribute to patient condition misdiagnosis or negatively influence patient management decisions. |
| Feb 23, 2024 | Z-1600-2024 | — | open, classified | On ultrasound systems, when Cardiac DICOM SR feature is configured to display either minimum or maximum measured value, and multiple cardiac region measurements are made, and results are exported into the SR feature, then The SR viewer will display the LAST measured value, not min or max, which could contribute to patient condition misdiagnosis or negatively influence patient management decisions. |
| Nov 29, 2023 | Z-0683-2024 | — | open, classified | The possibility of the Sensis documentation functionality application to crash. |
| Oct 17, 2023 | Z-0523-2024 | — | open, classified | Potential hardware issue for ARTIS icono ceiling system: collision sensor may falsely signal non-existing collisions for up to half an hour when the system is switched off for a longer time (e.g., overnight) and switched on. During this time, system movement is only possible with the "override" function with very slow speed and without further collision protection. This may lead to temporary unavailability of the system for diagnostic and therapeutic usage. |
| Oct 5, 2023 | Z-0223-2024 | — | open, classified | Due to the incorrect mounting of the buzzer component, there is no acoustic signal during x ray activation. Otherwise, the system is fully functional, and x ray is applied correctly. By means of the additional visual indicator (exposure LED light) the operator can monitor the x ray release. Also, after a successful x ray exposure, the clinical image is displayed on the monitor. |
| Sep 12, 2023 | Z-0196-2024 | — | open, classified | Software issue for Cios Alpha, Cios Flow, and Cios Spin VA30 systems, fulfillment of new requirements from DIN and IEC standards for Cios VA30 systems required may result in patient misdiagnosis/repeat exposure |
| Sep 12, 2023 | Z-0195-2024 | — | open, classified | Software issue for Cios Alpha, Cios Flow, and Cios Spin VA30 systems, fulfillment of new requirements from DIN and IEC standards for Cios VA30 systems required may result in patient misdiagnosis/repeat exposure |
| Sep 1, 2023 | Z-2648-2023 | — | open, classified | In some cases, when lubricating grease is present within the headband of the over-ear headphones, it may cause visible, dot- or lineshaped, fat-isointense artifacts during head examinations only. These potential artifacts depend on the position of the headband, the amount of lubricating grease, as well as the sequence parameters used |
| Jul 13, 2023 | Z-2582-2023 | — | open, classified | If a user-generated preset for an 18L6 transducer created on a 1.0 ultrasound system is used with a 2.0 ultrasound system, the 2.0 ultrasound system will display underestimated measurement results when using an 18L6 transducer and viewing in the Dual format visualization function, which may lead to misdiagnosis of a patient's condition or influence patient management decisions in a negative way. |
| Jul 12, 2023 | Z-2256-2023 | — | open, classified | During a whole-body planar scan with auto-contour, there is a possibility the short-linear drive (SLD) look-ahead sensors may trigger earlier than expected and may result in detector 1 positioning further from the patient than needed leading to a reduction in image resolution. |
| Jun 19, 2023 | Z-2361-2023 | — | open, classified | Due to a hardware issue in the cable connectors of the system generator, a thermal overload in the cable connections may occur when performing excessive fluoroscopy/acquisitions, a burning smell may be detectable coming from the generator cabinet and the system may lose the imaging functionality of the corresponding plane and result in a situation where it is necessary to cancel clinical treatment or to continue treatment on an alternative system |
| Jun 19, 2023 | Z-2360-2023 | — | open, classified | Due to a hardware issue in the cable connectors of the system generator, a thermal overload in the cable connections may occur when performing excessive fluoroscopy/acquisitions, a burning smell may be detectable coming from the generator cabinet and the system may lose the imaging functionality of the corresponding plane and result in a situation where it is necessary to cancel clinical treatment or to continue treatment on an alternative system |
| Jun 19, 2023 | Z-2359-2023 | — | open, classified | Due to a hardware issue in the cable connectors of the system generator, a thermal overload in the cable connections may occur when performing excessive fluoroscopy/acquisitions, a burning smell may be detectable coming from the generator cabinet and the system may lose the imaging functionality of the corresponding plane and result in a situation where it is necessary to cancel clinical treatment or to continue treatment on an alternative system |
| Jun 5, 2023 | Z-2240-2023 | — | open, classified | Incorrect glue was applied on the plexiglass sheet on the single tank cover assembly could potentially fall off and the ingress of liquid may occur, the risk of electric shock exists (e.g., ingress of a large amount of liquid following the plexiglass dropping off, at the same time the user or operator happens to touch the liquid on the cover which is connected to the internal live parts). |
| Mar 21, 2023 | Z-1469-2023 | — | open, classified | Examination room monitor connected with the hybrid cable may have a display issue and no image function is available |
| Feb 2, 2023 | Z-1311-2023 | — | open, classified | In the event of any unintended table movement, the system may not detect the incorrect direction, could lead to the injury of a patient, staff member, operator, or equipment. |
| Feb 2, 2023 | Z-1498-2023 | — | open, classified | If, during the procedure, X-ray has been released and a reference image has been stored, the following issue may occur: If "Adjust C-arm to Ref" is activated when the C-Arm is positioned outside of the working range the C-Arm will reach the target position with an inaccuracy of 5-10 mm. As a result, the message Endposition reached will be displayed .Leading to unintended direction of the movement causing crushing of a patient, staff member, operator, or equipmen Live images may not match the previously stored reference images. Overlay images may be shown inaccurate on anatomy (e.g., DSA Roadmap workflow does not match real anatomy). This may cause e.g., a vessel perforation in DSA roadmap. |
| Jan 16, 2023 | Z-1135-2023 | — | open, classified | This is a potential problem with the locking mechanism that is used to secure the PET gantry in either its scanning or service position. |
| Jan 16, 2023 | Z-1134-2023 | — | open, classified | This is a potential problem with the locking mechanism that is used to secure the PET gantry in either its scanning or service position. |
| Jan 16, 2023 | Z-1136-2023 | — | open, classified | This is a potential problem with the locking mechanism that is used to secure the PET gantry in either its scanning or service position. |
| Dec 22, 2022 | Z-1003-2023 | — | open, classified | In the syngo.CT VA40 and syngo.CT VA50 myNeedle Guide application, the order of the orientation labels head , center, and feet in the axial thick slice segments are erroneously swapped |
| Dec 21, 2022 | Z-1164-2023 | — | open, classified | Potential risk of collision with the ceiling, wall, or objects which may result in serious injury to staff or patients due to room configuration parameters of the system being set to default values |
| Dec 21, 2022 | Z-1167-2023 | — | open, classified | Potential risk of collision with the ceiling, wall, or objects which may result in serious injury to staff or patients due to room configuration parameters of the system being set to default values |
| Dec 21, 2022 | Z-1166-2023 | — | open, classified | Potential risk of collision with the ceiling, wall, or objects which may result in serious injury to staff or patients due to room configuration parameters of the system being set to default values |
| Dec 21, 2022 | Z-1165-2023 | — | open, classified | Potential risk of collision with the ceiling, wall, or objects which may result in serious injury to staff or patients due to room configuration parameters of the system being set to default values |
| Dec 21, 2022 | Z-1168-2023 | — | open, classified | Potential risk of collision with the ceiling, wall, or objects which may result in serious injury to staff or patients due to room configuration parameters of the system being set to default values |
| Dec 16, 2022 | Z-1040-2023 | — | open, classified | In rare cases, the system may only boot into backup mode after an abrupt shutdown and not reach full operating mode. This may result in a situation where it is necessary to cancel clinical treatment or to continue treatment on an alternative system. |
| Dec 16, 2022 | Z-0956-2023 | — | open, classified | Mechanical connection between the tabletop and table base may be lost. |
| Dec 9, 2022 | Z-1001-2023 | — | open, classified | There is potential for the footrest to detach from the patient table during use. |
| Dec 9, 2022 | Z-1002-2023 | — | open, classified | There is potential for the footrest to detach from the patient table during use. Device intended to visualize anatomical structures by converting an Xray pattern into a visible image. The system has medical applications ranging from gastrointestinal examinations to cranial, skeletal, thoracic and lung exposures as well as examinations of the urogenital tract. The unit may also be used in emergency applications, lymphography, endoscopy, myelography, venography, arthrography, interventional radiology, digital angiography, and digital subtraction angiography (DSA). The system may be used on pediatric, adult, and bariatric patients. These devices are not for mammography examinations. |
| Dec 9, 2022 | Z-1000-2023 | — | open, classified | There is potential for the footrest to detach from the patient table during use. |
| Nov 23, 2022 | Z-1481-2023 | — | open, classified | Under certain unlikely circumstances during a fluoroscopic examination, the imaging system Fluorospot Compact might sporadically display an incorrect air kerma/air kerma rate related to the patient reference point, according to IEC 60601-2-43. There is no impact on workflow or diagnosis. The error can occur only in fluoroscopy systems with a second (overhead) X-ray tube. |
| Nov 23, 2022 | Z-1480-2023 | — | open, classified | Under certain unlikely circumstances during a fluoroscopic examination, the imaging system Fluorospot Compact might sporadically display an incorrect air kerma/air kerma rate related to the patient reference point, according to IEC 60601-2-43. There is no impact on workflow or diagnosis. The error can occur only in fluoroscopy systems with a second (overhead) X-ray tube. |
| Nov 23, 2022 | Z-1479-2023 | — | open, classified | Under certain unlikely circumstances during a fluoroscopic examination, the imaging system Fluorospot Compact might sporadically display an incorrect air kerma/air kerma rate related to the patient reference point, according to IEC 60601-2-43. There is no impact on workflow or diagnosis. The error can occur only in fluoroscopy systems with a second (overhead) X-ray tube. Siemens Healthineers became aware of one customer site where this issue was identified during clinical operation. |
| Nov 16, 2022 | Z-0775-2023 | — | open, classified | The firm will be performing a software update to address a software error which affects the listed products. This correction addresses four potential software issues: 1) "PASSWORD STORE CORRUPTED" error message during system boot; 2) Subsystem crash during examination; 3) Dialog Monitor Computer (DMC) application crash while loading a study; and 4) Software crash due to system internal timeout. Issue 1 may lead to a delay or interruption of procedure. Issues 2, 3, and 4 may result in delay in starting or continuing the examination, and may also prevent the operator from starting or continuing a study; |
| Nov 9, 2022 | Z-0472-2023 | — | open, classified | When selecting the site fraction group for treatment, the User may select the wrong site for treatment, and potentially deliver the dose to wrong isocenter |
| Sep 20, 2022 | Z-0119-2023 | — | open, classified | Siemens has become aware of three potential software issues with ARTIS pheno systems with software version VE10B. This may lead to a hazardous situation for patients if treatment cannot be continued on the system and treatment needs to be continued on an alternate system. |
| Aug 10, 2022 | Z-1646-2022 | — | open, classified | Siemens has become aware of a potential hardware issue with Artis Q, Artis Q.zen, Artis pheno and Artis icono systems with a specific lot of X-ray tubes. In rare cases, if the error detection mechanism fails, it will not be possible to release X-ray any longer until system shutdown. |
| Aug 10, 2022 | Z-1647-2022 | — | open, classified | Siemens has become aware of a potential hardware issue with Artis Q, Artis Q.zen, Artis pheno and Artis icono systems with a specific lot of X-ray tubes. In rare cases, if the error detection mechanism fails, it will not be possible to release X-ray any longer until system shutdown. |
| Aug 10, 2022 | Z-1645-2022 | — | open, classified | Siemens has become aware of a potential hardware issue with Artis Q, Artis Q.zen, Artis pheno and Artis icono systems with a specific lot of X-ray tubes. In rare cases, if the error detection mechanism fails, it will not be possible to release X-ray any longer until system shutdown. |