search.noResults

search.searching

saml.title
dataCollection.invalidEmail
note.createNoteMessage

search.noResults

search.searching

orderForm.title

orderForm.productCode
orderForm.description
orderForm.quantity
orderForm.itemPrice
orderForm.price
orderForm.totalPrice
orderForm.deliveryDetails.billingAddress
orderForm.deliveryDetails.deliveryAddress
orderForm.noItems
Product showcase


Shift from rapid prototyping to rapid production


access, and remote management. In addition, 3DGence expert engineered profiles ensure quality print results from the start. 3DGence provides rapid prototyping and rapid production services to support its clients from concept to end, with the most advanced materials on the market.


Autoclavable end-use venturi valves made from ULTEM.


3DGence is a manufacturer of high-performance, high- temperature FFF 3D printers, with headquarters in the US and Europe. 3DGence provides a total solution of printers, materials, software and services, and is setting the standard in performance/ features to price ratio. Focused on versatility, speed and cost-optimisation, 3DGence FFF 3D printers can print the widest range of materials in one machine. From initial concept prototypes in ABS plastics to end-use parts and implants in advanced metal replacement materials, such as PEEK or ULTEM, clients have the flexibility to scale their research and development efforts. The printers have solid build-quality, high-dimensional accuracy, speed and reliability.


3DGence also partners with open-market material suppliers to bring flexibility and options supporting rapid product development processes. Beyond having a robust 3D printer and excellent materials, the printing profiles must be engineered to work together seamlessly for successful prints. 3DGence provides deep expertise in print profile development without the need for users to learn or change print parameters. 3DGence provides industrial- grade software and cloud management to provide advanced features in print optimisation, administrative


3DGence www.3dgence.com


Custom-


manufactured radiopaque clad wires


they are offered in sizes between 0.05mm and 1.52mm (outside diameter) for use with stents, guide wires and related devices. Featuring platinum-iridium, tantalum and tantalum-tungsten alloys, as well as similar alloys metallurgically bonded to high-strength wires, such as 316LVM stainless steel, nitinol and MP35N with cladding thickness of 2% or higher, Anomet radiopaque clad wires have a smooth, consistent finish. They are supplied on spools and manufactured to precise OEM specifications.


Anomet’s clad composite wires offer an alternative to typical medical wires.


Anomet Products has introduced custom-manufactured clad composite wires − an effective alternative to solid precious- metal wires with marker bands − to improve the visibility of implantable devices. This clad wire is a proven alternative to wires typically used in medical disciplines, such as: ■ cardiac rhythm management (pacing and defibrillation)


■ neurostimulation ■ vascular therapy (stents, catheters and guidewires)


■ biosensors ■ monitors.


Anomet radiopaque clad wires allow original equipment manufacturers (OEMs) to specify the degree of visibility they desire under fluoroscopy, by selecting the radiopaque alloys and cladding thickness best suited to their products. Easier to see than solid wires with marker bands,


Medical Device Developments / www.nsmedicaldevices.com


Anomet is well known as a leader in innovative composite metal products. Founded in 1976, it specialises in the manufacture of custom-clad metal composites featuring a true metallurgical bond. The company is dedicated to developing new products using advanced metallurgical technology, resulting in long- lasting, reliable and cost-effective materials. With material costs today representing 90% of the overall cost of products, Anomet specialises in helping reduce costs, while improving material properties and quality. Producing clad wire, rod, bars, ribbons and plates, Anomet offers a wide range of metal alloy compositions that are available with virtually any ratio or thickness. The major industries the company serves include aerospace, automotive, appliance, corrosion protection, defence, electrochemical, electronic, industrial, medical, and oil and gas.


Anomet Products www.anometproducts.com


Expert medical seals for life- saving devices With 50 years of expertise, Apple Rubber has the experience, creativity and capabilities to design and manufacture medical seals for


Apple Rubber provides expert engineering to deliver medical seals for critical applications.


life saving applications. From the most exotic sealing devices to micro-miniature shapes, Apple Rubber can custom design medical seals to match any shape or size. It provides sealing solutions for a wide variety of applications, including ventilators, medical pumps, IV components, medical testing consumables and implant materials. Effective medical seals require the right material to handle the task. Apple Rubber’s medical grade elastomers are tested to FDA USP Class VI or ISO 10993 protocols to meet regulated standards. As an extra precaution, the company’s polymer chemists will review the material selected to assure it meets full biocompatibility for the application. Its most common medical grade elastomers include Liquid Silicone Rubber (LSR), Viton Fluoroelastomer (FKM) and Ethylene Propylene (EPDM). Every medical seal is


designed to meet strict quality standards. Apple Rubber’s Class 10000, ISO 7, certified cleanroom is equipped to manufacture and package medical seals in a sterilised, controlled environment. If required, Apple Rubber engineers can provide specific quality documentation from First Article to full IQ OQ PQ. Apple Rubber design


engineers work with customers from prototype to production to ensure every product meets exact specifications. The advanced 3D CAD and CAM


115


Page 1  |  Page 2  |  Page 3  |  Page 4  |  Page 5  |  Page 6  |  Page 7  |  Page 8  |  Page 9  |  Page 10  |  Page 11  |  Page 12  |  Page 13  |  Page 14  |  Page 15  |  Page 16  |  Page 17  |  Page 18  |  Page 19  |  Page 20  |  Page 21  |  Page 22  |  Page 23  |  Page 24  |  Page 25  |  Page 26  |  Page 27  |  Page 28  |  Page 29  |  Page 30  |  Page 31  |  Page 32  |  Page 33  |  Page 34  |  Page 35  |  Page 36  |  Page 37  |  Page 38  |  Page 39  |  Page 40  |  Page 41  |  Page 42  |  Page 43  |  Page 44  |  Page 45  |  Page 46  |  Page 47  |  Page 48  |  Page 49  |  Page 50  |  Page 51  |  Page 52  |  Page 53  |  Page 54  |  Page 55  |  Page 56  |  Page 57  |  Page 58  |  Page 59  |  Page 60  |  Page 61  |  Page 62  |  Page 63  |  Page 64  |  Page 65  |  Page 66  |  Page 67  |  Page 68  |  Page 69  |  Page 70  |  Page 71  |  Page 72  |  Page 73  |  Page 74  |  Page 75  |  Page 76  |  Page 77  |  Page 78  |  Page 79  |  Page 80  |  Page 81  |  Page 82  |  Page 83  |  Page 84  |  Page 85  |  Page 86  |  Page 87  |  Page 88  |  Page 89  |  Page 90  |  Page 91  |  Page 92  |  Page 93  |  Page 94  |  Page 95  |  Page 96  |  Page 97  |  Page 98  |  Page 99  |  Page 100  |  Page 101  |  Page 102  |  Page 103  |  Page 104  |  Page 105  |  Page 106  |  Page 107  |  Page 108  |  Page 109  |  Page 110  |  Page 111  |  Page 112  |  Page 113  |  Page 114  |  Page 115  |  Page 116  |  Page 117  |  Page 118  |  Page 119  |  Page 120  |  Page 121  |  Page 122  |  Page 123  |  Page 124  |  Page 125  |  Page 126  |  Page 127  |  Page 128