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Maquet Cardiovascular LLC

United States·US-MF-000011693

Last updated September 17, 2026

Information

Country
United States
Address
45, Barbour Pond Drive, Wayne, United States
LinkedIn
—
Facebook
—
Phone
+1 201-675-2846
PRRC Contact
Francisco Vicenty
EUDAMED SRN
US-MF-000011693
FDA FEI Number
2242352
DUNS Number
—

Catalogue (231)

Page 1 of 5
DeviceModel / ReferenceRegistriesClassStatus
Exxcel Soft ePTFE Vascular Graft M002004830580
FDA UDI
Class IIActive
HemoPro 2 Adaptor C-VH-4020
EUDAMEDFDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004810470
FDA UDI
Class IIActive
Vasoview 7 XB, OUS VH-3200-W
FDA UDI
Class IIUnknown
Fusion Supported Vascular Grafts M002015030480
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004830780
FDA UDI
Class IIActive
Fusion Bioline Supported Vascular Grafts M00201503045B0
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004810240
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004810760
FDA UDI
Class IIActive
Axius Coronary Shunt OF-2000
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004847560
FDA UDI
Class IIActive
Axius Coronary Shunt OF-1500L
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004824560
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004910380
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004894470
FDA UDI
Class IIActive
Fusion Bioline Supported Vascular Grafts M00201503085B0
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004944260
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004930770
FDA UDI
Class IIActive
Axius Coronary Shunt OF-2250
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004810850
FDA UDI
Class IIActive
Fusion Bioline Supported Vascular Grafts M00201503088B0
FDA UDI
Class IIActive
Active Return Cord non-sterile C-1838
FDA UDI
Class IIActive
Fusion Vascular Grafts M002015010680
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004944380
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004910760
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004947550
FDA UDI
Class IIActive
Hemopro, power cord, Italy C-VH-3013
EUDAMEDFDA UDI
Class IIActive
Fusion Vascular Grafts M002015010850
FDA UDI
Class IIActive
Hemopro, power cord, UK C-VH-3012
EUDAMEDFDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004810560
FDA UDI
Class IIActive
Fusion Bioline Supported Vascular Grafts M00201503048B0
FDA UDI
Class IIActive
Fusion Supported Vascular Grafts M002015030460
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004869400
FDA UDI
Class IIActive
Acrobat SUV Stabilizer OM-9000S
FDA UDI
Class IActive
Exxcel Soft ePTFE Vascular Graft M002004910710
FDA UDI
Class IIActive
HemoPro Power Supply C-VH-3010
FDA UDI
Class IIActive
Fusion Bioline Vascular Grafts M00201501086B0
FDA UDI
Class IIActive
Bipolar Cord C-18.37
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004910850
FDA UDI
Class IIActive
Axius Coronary Shunt OF-1500
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004894570
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004844060
FDA UDI
Class IIActive
Acrobat-I Stabilizer OM-10000Z
FDA UDI
Class IActive
Exxcel Soft ePTFE Vascular Graft M002004947660
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004947260
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004848360
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004910660
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004810750
FDA UDI
Class IIActive
Axius Coronary Shunt OF-1250
FDA UDI
Class IIActive
Exxcel Soft ePTFE Vascular Graft M002004910780
FDA UDI
Class IIActive

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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.

DateRecall No.ClassStatusReason
Aug 15, 2025Z-2588-2025—open, classified

Three failure modes have been identified: failure of the Heartstring Seal to load, failure of the Heartstring Seal to deploy into the aortotomy, and failure of the deployed Heartstring Seal to provide adequate hemostasis.

Aug 15, 2025Z-2586-2025—open, classified

Three failure modes have been identified: failure of the Heartstring Seal to load, failure of the Heartstring Seal to deploy into the aortotomy, and failure of the deployed Heartstring Seal to provide adequate hemostasis.

Aug 15, 2025Z-2587-2025—open, classified

Three failure modes have been identified: failure of the Heartstring Seal to load, failure of the Heartstring Seal to deploy into the aortotomy, and failure of the deployed Heartstring Seal to provide adequate hemostasis.

Aug 6, 2025Z-2636-2025—open, classified

Reports of out-of-box failures discovered during the limited launch phase. Failure modes included angled deformity at the attachment site of the Harvesting Tool Jaws and the distal end of the Harvesting Tool Shaft, jaws not fully closed out of box, and heater wire lifted/flexed away from jaws.

Mar 20, 2025Z-1622-2025—open, classified

There have been at least 12 complaints from users as of March 3, 2025, reporting that they identified the ceramic C-Ring to be broken in half during use of the device. The ceramic C-Ring has a potential to break while in use. Maquet/Getinge determined that the issue was limited to the units of VH-4000 and VH-4001 manufactured with ceramic C-Ring, and the ceramic C-Ring was implemented in the Hemopro 2 devices from November 5, 2024, through February 14, 2025.

Mar 10, 2025Z-1577-2025—open, classified

Incorrect resistor utilized in the VH-3010 Power Supply, which may cause the jaws of the HemoPro 2 to not adequately heat up.

Dec 9, 2024Z-0711-2025—open, classified

Potential for two issues: 1. Bent or detached heater wire; 2. Silicone peeling or detaching from the Jaws of the Harvesting Tool

Dec 9, 2024Z-0712-2025—open, classified

Potential for two issues: 1. Bent or detached heater wire; 2. Silicone peeling or detaching from the Jaws of the Harvesting Tool

Oct 16, 2024Z-0485-2025—open, classified

Deviations in the manufacturing process created a compromise in the sterile barrier, in which sterility cannot be assured during the duration of the product's 2-year shelf life.

Oct 16, 2024Z-0486-2025—open, classified

Deviations in the manufacturing process created a compromise in the sterile barrier, in which sterility cannot be assured during the duration of the product's 2-year shelf life.

Oct 16, 2024Z-0484-2025—open, classified

Deviations in the manufacturing process created a compromise in the sterile barrier, in which sterility cannot be assured during the duration of the product's 2-year shelf life.

Sep 20, 2024Z-0092-2025—open, classified

There were reports of the silicone detaching from the Jaws of the Harvesting Tool during use.

May 31, 2024Z-2337-2024—open, classified

There were 27 complaints between March 22, 2024, and April 30, 2024, related to VH-3500 and VH-4000, reporting that the C-Ring wire was straightened (due to insufficient bend radius) and that the distance between C-Ring and Harvesting Tool was closer than normal. No adverse events have been reported to date in direct association with this issue.

May 31, 2024Z-2338-2024—open, classified

There were 27 complaints between March 22, 2024, and April 30, 2024, related to VH-3500 and VH-4000, reporting that the C-Ring wire was straightened (due to insufficient bend radius) and that the distance between C-Ring and Harvesting Tool was closer than normal. No adverse events have been reported to date in direct association with this issue.

May 17, 2024Z-2176-2024—open, classified

Potential for there to be a fluid ingress into the handle of the harvesting tool, which may lead to the device not providing cautery or providing cautery when not intended.

May 17, 2024Z-2175-2024—open, classified

Potential for there to be a fluid ingress into the handle of the harvesting tool, which may lead to the device not providing cautery or providing cautery when not intended.

Dec 13, 2023Z-0709-2024—open, classified

Express chest drains are pre-packaged with sterile water syringes which have bene recalled. If the device is not kept in an upright position, the patient may be exposed to infectious material. Subsequent hazards include but are not limited to infection, abscess, sepsis, and death.

Dec 13, 2023Z-0710-2024—open, classified

Express chest drains are pre-packaged with sterile water syringes which have bene recalled. If the device is not kept in an upright position, the patient may be exposed to infectious material. Subsequent hazards include but are not limited to infection, abscess, sepsis, and death.

Dec 1, 2023Z-0723-2024—open, classified

Risk of polyimide particulate matter being present on the endoscopic harvesting vessel system. This issue may result in polyimide particulate matter being introduced into the arterial conduit for patients undergoing a coronary artery bypass graft (CABG) or peripheral bypass graft surgery.

Dec 1, 2023Z-0724-2024—open, classified

Risk of polyimide particulate matter being present on the endoscopic harvesting vessel system. This issue may result in polyimide particulate matter being introduced into the arterial conduit for patients undergoing a coronary artery bypass graft (CABG) or peripheral bypass graft surgery.

Oct 31, 2023Z-0589-2024—open, classified

The Positioner Arm may not tighten or lock during normal use.

Sep 19, 2023Z-0210-2024—open, classified

Device packaged inside an incorrect outer box; displaying artwork & illustrations for a different device.

Sep 13, 2023Z-0137-2024—open, classified

Housing Mount Jaw of these devices breaking during normal use and may result in injury to the epicardial tissue or vasculature, or a coronary artery or previously placed bypass graft, or could result in procedural delay and/or conversion.

Jun 28, 2023Z-2272-2023—open, classified

The Standard Blade may not securely latch onto the Activator Drive. This may result in the inability to stabilize and position or may result in the loss of stabilization and positioning of heart, release of device component into the patient, and/or a procedural delay and/or conversion.

Jun 28, 2023Z-2274-2023—open, classified

The Standard Blade may not securely latch onto the Activator Drive. This may result in the inability to stabilize and position or may result in the loss of stabilization and positioning of heart, release of device component into the patient, and/or a procedural delay and/or conversion.

Jun 28, 2023Z-2273-2023—open, classified

The Standard Blade may not securely latch onto the Activator Drive. This may result in the inability to stabilize and position or may result in the loss of stabilization and positioning of heart, release of device component into the patient, and/or a procedural delay and/or conversion.

Jun 28, 2023Z-2271-2023—open, classified

The Standard Blade may not securely latch onto the Activator Drive. This may result in the inability to stabilize and position or may result in the loss of stabilization and positioning of heart, release of device component into the patient, and/or a procedural delay and/or conversion.

Mar 6, 2023Z-1336-2023—open, classified

Some batches of product were not sterilized to their minimum sterilization specification.

Mar 6, 2023Z-1337-2023—open, classified

Some batches of product were not sterilized to their minimum sterilization specification.

Mar 6, 2023Z-1335-2023—open, classified

Some batches of product were not sterilized to their minimum sterilization specification.

Jan 30, 2023Z-1245-2023—open, classified

One (1) Fusion Bioline Vascular graft from lot 25162546, which failed guideline straightness testing, was intermingled with lot 25162549 and distributed to customers. Use of the affected graft may result in reduction of blood flow or unwanted tension causing bleeding and the formation of a pseudo-aneurysm.

Dec 22, 2022Z-0996-2023—open, classified

Ink on the Vasoshield syringe Maquet logo may chip resulting in an unreasonable risk of harm to the patient. Potential harms may include foreign body reaction, coronary embolic event, and peripheral embolic event.

Dec 22, 2022Z-0995-2023—open, classified

Ink on the Vasoshield syringe Maquet logo may chip resulting in an unreasonable risk of harm to the patient. Potential harms may include foreign body reaction, coronary embolic event, and peripheral embolic event.

Apr 29, 2022Z-1282-2022—terminated

Mislabeled: Product labeled as Intergard Woven Straight graft REF IGW0032-30, D: 8 mm, L: 30 cm, contained an Intergard Woven Straight graft of D: 32 mm and L: 30 cm

Feb 9, 2022Z-0887-2022—open, classified

Potential for corrosion on the pins of the Ultima Activator II Reusable Drive Mechanism. Harms may include allergic reaction, metal toxicity, and other delayed responses.

Jan 14, 2022Z-0729-2022—terminated

Outer labelling (HEMASHIELD GOLD Knitted Microvel Double Velour Bifurcated Vascular Graft, D: 16 x 8 mm; L: 40 cm) does not correspond to the (inner) sterile packaging labelling (HEMASHIELD GOLD Knitted Microvel Double Velour Straight Vascular Graft, D: 7 mm L: 60 cm). Mislabeled product could cause a disruption of the vascular anastomosis in the long term, creating a pseudo-aneurysm

Dec 1, 2021Z-0403-2022—terminated

There is a probable mislabeling of product. A Hemashield Platinum Woven Double Velour Bifurcated Vasuclar Graft, SN 1259735369, 24 mm x 12 mm, REF Number M00202166241P0 is likely packaged inside of the carton instead of a Hemashield Gold Knitted Microvel Double Velour Bifurcated Vascular Graft; SN 1260004700; 18 mm x 9 mm; REF Number M002020851890 or a Hemashield Gold Knitted Microvel Double Velour Bifurcated Vascular Graft; SN 1259882880; 18 mm x 9 mm; Ref Number M002020851890.

Apr 7, 2020Z-1859-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1881-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1862-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1866-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1875-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1871-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1870-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1874-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1873-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1878-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1860-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1872-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1865-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1869-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1880-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1861-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1864-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1877-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1867-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1863-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1882-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1876-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1879-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 7, 2020Z-1868-2020—terminated

Potential small holes at the seam lines of Hemashield branches causing intra-operative bleeding at the seam lines of the branches of Hemashield grafts

Apr 18, 2019Z-1607-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1633-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1585-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1591-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1511-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1613-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1545-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1564-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1621-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1514-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1622-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1575-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1625-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1589-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1510-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1517-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1543-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1568-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1638-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1612-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1529-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1508-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1537-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1604-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1614-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1657-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1556-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1673-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1596-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1601-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1656-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1648-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1624-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1554-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1598-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1677-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1523-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1639-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured

Apr 18, 2019Z-1649-2019—terminated

Custom Tubing Sets for Extracorporeal Circulation (ECC)-During sterilization, the closed stopcock/non-vented cap configuration may prevent the flow of humidity/ethylene oxide gas into the fluid-path between the closed port and the non-vented cap therefore the Sterility Assurance Level (SAL) of the stopcock ports cannot be assured