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India (English)
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F370®CR Composite Printer

Application versatility enhanced by versatile materials.

SYSS Bullet The F370CR uses ABS-CF10 and FDM® Nylon-CF10 composite materials, both reinforced with chopped carbon fiber, 10% by weight, for strength and stiffness. 

SYSS Bullet Up to four layer resolutions give you flexibility on part quality and print speed. 

SYSS Bullet A fully heated build chamber enables higher strength between layers.

SYSS Bullet Job setup simply involves importing the part’s CAD file using GrabCAD Print™ software.

SYSS Bullet Accelerates throughput while avoiding the opportunity cost of using production resources or the lead time of outsourcing.

Supplement your fixture and part fabrication with FDM composite 3D printing to gain speed, throughput, and cost benefits.

Features

SYSS Bullet Soluable Support: Soluble support material lets you create intricate geometries with hidden cavities, a feature not found on entry-level systems.

SYSS Bullet Accessible Material Drawers: Material spools are housed in an easily accessible drawer in the front of the printer, making material changes quick and painless.

SYSS Bullet Intuitive Interface: The user interface screen on the front of the printer features an intuitive menu to control and process your print jobs.

SYSS Bullet Connectivity: GrabCAD Print and Insight software let you control the depth and breadth of control you have over your print operations.

Benefits

SYSS Bullet Carbon Fiber Versatility: Multiple composite materials enable more options than competitive systems with single-material capability.

SYSS Bullet Small Footprint: The compact size makes the F370CR printer easy to accommodate in your environment, whether the classroom, engineering office, or the shop floor.

SYSS Bullet Ease of Use: Easy to learn and not difficult to operate, saving you time to focus on resources on other more labor-intensive tasks.

SYSS Bullet Cost effective: F370CR printers offer ample materials options – composite and non-composite – to satisfy many applications.

SYSS Bullet Repeatable Results: With a proven record for uptime and dimensional repeatability, the F370CR printer offers reliable, set-and-forget operation.

Typical Applications

F370CR® FDM composite printers are designed for applications that demand parts with a higher degree of strength and rigidity. They cater to tooling applications where strong yet lightweight polymer jigs and fixtures can substitute for metal tools without the associated long lead times.  

3D Printed hand splint dyed purple made from MJF PA12-W

Rapid Prototyping

Realize your product vision in record time.

Create. Test. Refine. Repeat. Transform ideas into tangible creations faster than ever.

Stratasys Additive Manfucturing

Production Parts

Break free from typical production constraints.

Additive manufacturing is the ideal on-demand solution for cost-effective, low-volume, and bridge-to-production parts.

Toyota and Stratasys FDM marketing technology

Jigs and Fixtures

Save time, reduce cost and improve safety with 3D printing.

3D printed tooling can make your production floor more efficient and your tooling more ergonomic and worker-friendly.

3D Printed hand splint dyed purple made from MJF PA12-W

Rapid Prototyping

Realize your product vision in record time.

Create. Test. Refine. Repeat. Transform ideas into tangible creations faster than ever.

Stratasys Additive Manfucturing

Production Parts

Break free from typical production constraints.

Additive manufacturing is the ideal on-demand solution for cost-effective, low-volume, and bridge-to-production parts.

Toyota and Stratasys FDM marketing technology

Jigs and Fixtures

Save time, reduce cost and improve safety with 3D printing.

3D printed tooling can make your production floor more efficient and your tooling more ergonomic and worker-friendly.

Want to learn more about the F370CR and FDM Technology?

Contact us today for a sample part and demonstration.

Customer Success Stories

The fastest way to learn about the versatility of 3D printing with the F370CR composite printer is to see how our customers use them. The following case studies show how F370CR printer offers versatile 3D printing solutions for a variety of applications.   

3D Printed Leak Check Fixture. Produced with a F370CR 3D printer using Nylon CF-10.

J.W. Speaker Use Case on F370CR & FDM Nylon-CF10.

Find out how J.W. Speaker Corporation transformed the process of creating snowmobile light fixtures with 3D printers and FDM Nylon-CF10 filament.

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Graco Manufacturing

Graco Engineers 3D Printed Metal Forming Dies Using FDM Technology

Graco Inc. saw an 80% cost reduction with Metal Forming Die when they used an F370CR composite 3D printer using FDM Nylon-CF10. Learn more!

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The 3D printed part catcher (gray) is attached to the lathe’s lower turret.

Composite 3D Printing FDM Use Case | Gosiger Manufacturing

Gosiger Manufacturing 3D printed a high-performance turret-mounted catcher with Stratasys composite 3D printer and materials. Download the use case today!

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Mercury Marine Uses Composite 3D Printing

Mercury Marine Innovates with F370®CR Composite Printer & Materials to Create Custom Decal Application Fixture

Mercury Marine designers 3D printed their latest custom decal hat fixture using an F370®CR composite printer and high-strength carbon-fiber composite thermoplastics.

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3D Printed Leak Check Fixture. Produced with a F370CR 3D printer using Nylon CF-10.

J.W. Speaker Use Case on F370CR & FDM Nylon-CF10.

Find out how J.W. Speaker Corporation transformed the process of creating snowmobile light fixtures with 3D printers and FDM Nylon-CF10 filament.

View more
Graco Manufacturing

Graco Engineers 3D Printed Metal Forming Dies Using FDM Technology

Graco Inc. saw an 80% cost reduction with Metal Forming Die when they used an F370CR composite 3D printer using FDM Nylon-CF10. Learn more!

View more
The 3D printed part catcher (gray) is attached to the lathe’s lower turret.

Composite 3D Printing FDM Use Case | Gosiger Manufacturing

Gosiger Manufacturing 3D printed a high-performance turret-mounted catcher with Stratasys composite 3D printer and materials. Download the use case today!

View more
Mercury Marine Uses Composite 3D Printing

Mercury Marine Innovates with F370®CR Composite Printer & Materials to Create Custom Decal Application Fixture

Mercury Marine designers 3D printed their latest custom decal hat fixture using an F370®CR composite printer and high-strength carbon-fiber composite thermoplastics.

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Compare Printers

Download spec sheet

With industrial‑grade strength, precision, and repeatability, FDM 3D printers produce durable prototypes, manufacturing tools, and end‑use parts from real thermoplastics. Which one is right for you?

  • Description
  • Material Delivery
  • Build Size
  • Network Connectivity
  • System Size and Weight
  • Operating Conditions
  • Power Requirements
  • Regulatory Compliance
  • Software
  • Accuracy
  • Brochure
  • Description A professional, industrial-grade printer compatible with carbon fiber and engineering-grade thermoplastics to produce functional prototypes, strong workholding fixtures, tooling, and parts in the office or classroom.
  • Material Delivery 4 material spool bays, 2 for model, 2 for support located in a drawer on the front of the unit
  • Build Size 355 mm x 254 mm x 355 mm (14 x 10 x 14 in.)
  • Network Connectivity Wired: TCP/IPv6 protocols at 100 Mbps minimum 100 base T, Ethernet protocol, RJ45 connector
    Wireless-ready: IEEE 802.11n, g, or b; Authentication: WPA2-PSK, 802.1x EAP Encryption: CCMP, TKIP;
    MTConnect enabled
  • System Size and Weight 1626 x 864 x 711 mm (64 x 34 x 28 in.) 500 lbs (227 Kg)
  • Operating Conditions Operating: Temperature: 15 – 30 ºC (59 – 86 ºF), Humidity: 30 – 70% RH
    Storage: Temperature: 0 – 35 ºC (32 – 95 ºF), Humidity: 20 – 90% RH
  • Power Requirements 100-132V/15A or 200–240V/7A. 50/60 Hz
  • Regulatory Compliance CE (low-voltage and EMC directive), FCC, EAC, cTUVus, FCC, KC, RoHs, WEEE, Reach, RCM
  • Software GrabCAD Print, GrabCAD Print Pro and Insight software
  • Accuracy Parts are produced within an accuracy of +/- .200 mm (.008 in.), or +/- .002 mm/mm (.002 in./in.), whichever is greater
  • Brochure Download brochure
  • Description A compact printer compatible with carbon fiber and engineering-grade thermoplastics to produce strong prototypes, jigs and fixtures, tooling, and parts from the classroom to the office to the factory floor.
  • Material Delivery 2 material spool bays, 1 for model, 1 for support located in a drawer on the front of the unit
  • Build Size 305 mm x 254 mm x 305 mm (12 x 10 x 12 in.)
  • Network Connectivity Wired: TCP/IPv6 protocols at 100 Mbps minimum 100 base T, Ethernet protocol, RJ45 connector
    Wireless-ready: IEEE 802.11n, g, or b; Authentication: WPA2-PSK, 802.1x EAP Encryption: CCMP, TKIP
  • System Size and Weight 1,626 x 864 x 711 mm (64 x 34 x 28 in.) 227 kg (500 lbs)
  • Operating Conditions Operating: Temperature: 15 – 30 ºC (59 – 86 ºF), Humidity: 30 – 70% RH
    Storage: Temperature: 0 – 35 ºC (32 – 95 ºF), Humidity: 20 – 90% RH
  • Power Requirements 100–132V/15A or 200– 240V/7A. 50/60 Hz
  • Regulatory Compliance CE (low-voltage and EMC directive), FCC, EAC, cTUVus, FCC, KC, RoHs, WEEE, Reach, RCM
  • Software GrabCAD Print, GrabCAD Print Pro2, MTConnect enabled
  • Accuracy Parts are produced within an accuracy of +/- .200 mm (.008 in.), or +/- .002 mm/mm (.002 in./in.), whichever is greater
  • Brochure Download brochure

NOTE: Accuracy is geometry and material dependent. Achievable accuracy specification derived from statistical data at 95% dimensional yield.

FDM Compatible Materials

The beauty of F370CR composite printer is the material versatility, which includes two composites and a static-dissipative ABS. The materials shown below are several that are available. Refer to the printer’s specification sheet to see the full complement of materials available on that printer.

FDM ABS-CF10

FDM ABS-CF10

ABS-CF10 combines the benefits of ABS with the strength of carbon fiber for a durable, rigid material.

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FDM Nylon-CF10

FDM Nylon-CF10

FDM Nylon-CF10 is filled 10% by weight with chopped carbon, which produces a composite material 67% stronger and 190% stiffer than the nylon base material.

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Diran 410MF07

Diran 410MF07

Diran’s toughness and smooth, low-friction texture make it perfect for non-marring, factory-floor tooling.

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FDM® TPU 92A

FDM® TPU 92A

Create accurate elastomer parts and prototypes like flexible hoses and tubes with FDM TPU 92A.

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ABS-ESD7

ABS-ESD7

ABS-ESD7 (acrylonitrile butadiene styrene-electrostatic dissipative) thermoplastic with static dissipative properties for static discharge-sensitive applications.

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PC-ABS

PC-ABS

The PC-ABS 3D printing material is a high-impact engineering thermoplastic ideal for functional prototyping, tooling and low-volume manufacturing.

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ABS-M30

ABS-M30

ABS-M30 an FDM 3D printing material is stronger than standard ABS; ideal for concept modeling, functional prototyping, manufacturing tools and end use parts.

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ASA

ASA

Available in 10 colors, ASA has similar properties to ABS but is UV resistant and produces a smoother printed surface.

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FDM Support Materials

FDM Support Materials

Breakaway and soluble support materials for FDM printing making it possible to build 3D printed parts with intricate shapes and interior cavities.

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FDM ABS-CF10

FDM ABS-CF10

ABS-CF10 combines the benefits of ABS with the strength of carbon fiber for a durable, rigid material.

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FDM Nylon-CF10

FDM Nylon-CF10

FDM Nylon-CF10 is filled 10% by weight with chopped carbon, which produces a composite material 67% stronger and 190% stiffer than the nylon base material.

View more
Diran 410MF07

Diran 410MF07

Diran’s toughness and smooth, low-friction texture make it perfect for non-marring, factory-floor tooling.

View more
FDM® TPU 92A

FDM® TPU 92A

Create accurate elastomer parts and prototypes like flexible hoses and tubes with FDM TPU 92A.

View more
ABS-ESD7

ABS-ESD7

ABS-ESD7 (acrylonitrile butadiene styrene-electrostatic dissipative) thermoplastic with static dissipative properties for static discharge-sensitive applications.

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PC-ABS

PC-ABS

The PC-ABS 3D printing material is a high-impact engineering thermoplastic ideal for functional prototyping, tooling and low-volume manufacturing.

View more
ABS-M30

ABS-M30

ABS-M30 an FDM 3D printing material is stronger than standard ABS; ideal for concept modeling, functional prototyping, manufacturing tools and end use parts.

View more
ASA

ASA

Available in 10 colors, ASA has similar properties to ABS but is UV resistant and produces a smoother printed surface.

View more
FDM Support Materials

FDM Support Materials

Breakaway and soluble support materials for FDM printing making it possible to build 3D printed parts with intricate shapes and interior cavities.

View more
Polyjet print in GrabCAD

GrabCAD™ Print Software

Industry-leading 3D printing software to empower your creativity.

GrabCAD™ Print maximizes FDM's potential. Its user-friendly interface and advanced features empower designers and engineers for precise control from file prep to print settings, enabling experimentation with materials, colors, and textures for exceptional accuracy and detail.

With GrabCAD™ Print, users benefit from reduced print prep time and scrap, resulting in greater cost and time savings.


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Accelerate Drone Innovation with Additive Manufacturing
Whether you’re exploring 3D printable drones for commercial  or military use, this guide provides the important insights to help you produce faster and smarter.

 SYSS PDF Icon eBook:

Revolutionizing Product Development with 3D Printing
From concept creation all the way through to final product manufacturing, 3D printing is the answer.

How and Why 3D Printing with Carbon Fiber Improves Manufacturing Operations

Solve everyday problems encountered on the manufacturing floor with flagship carbon fiber compatible 3D printers and other advanced composite materials by Stratasys.

Customer Success Resources

Already have the F370CR? View additional documentation and resources on our Customer Success support website.

Frequently Asked Questions

The Stratasys F370CR produces parts with an accuracy of ±0.200 mm (0.008 in) or ±0.002 mm/mm (0.002 in/in), whichever is greater. Z-axis accuracy includes an additional tolerance of ±1 layer height. Actual accuracy depends on part geometry, material selection, and build orientation.

The main difference between the F370CR and F370 is composite material capability. The F370CR prints carbon fiber-reinforced materials such as Nylon-CF10 and ABS-CF10. The standard F370 prints general-purpose thermoplastics including ABS-M30, ASA, and PLA. The F370CR also includes hardened components designed for abrasive carbon fiber materials.

The F370CR is designed for manufacturers, engineers, and production teams that need durable composite parts for tooling, fixtures, jigs, prototypes, and low-volume production. It is especially well suited for industries such as aerospace, automotive, industrial manufacturing, transportation, and defense.

The Stratasys F370CR offers a build volume of (355 x 254 x 355 mm (14 x 10 x 14 inches), enabling users to produce tools, fixtures, and functional composite parts in a single build.

The F370CR supports a range of engineering-grade materials, including Nylon-CF10, ABS-CF10, ASA, ABS-M30™, FDM® TPU 92A, PC-ABS, Diran 410MF07, and ABS-ESD7.

This material versatility enables users to balance strength, stiffness, surface finish, and cost depending on the application.

The F370CR offers a larger build volume, expanded material compatibility, and greater production flexibility compared to the F190CR. While both systems support carbon fiber composite materials, the F370CR is designed for customers who need larger parts, higher throughput, and a broader range of engineering applications.

The F370CR is optimized for composite manufacturing with carbon fiber-reinforced materials, while the standard F370 focuses on general-purpose thermoplastic printing. The F370CR includes hardened extrusion components and validated composite workflows that enable reliable printing with abrasive carbon fiber materials.

Nylon-CF10 provides higher strength, stiffness, and durability, making it ideal for demanding tooling and functional applications. ABS-CF10 offers improved dimensional stability and easier post-processing while still delivering enhanced rigidity compared to standard ABS materials. The choice depends on the application’s mechanical and environmental requirements.

Yes. The F370CR is designed to print carbon fiber-reinforced nylon materials such as Nylon-CF10, which are well suited for automotive tooling applications including assembly fixtures, drill guides, check fixtures, and composite layup tools.

Yes. The F370CR can produce durable end-use parts and low-volume production components using carbon fiber composite materials. Its combination of strength, repeatability, and engineering-grade thermoplastics makes it suitable for functional production applications where lightweight, strong parts are required.

Yes. The F370CR uses Stratasys soluble support technology, allowing users to print complex geometries and internal features that can be cleaned easily after printing. Soluble supports help reduce manual finishing and improve part quality.

The F370CR is engineered with hardened extrusion components specifically designed to withstand the abrasive characteristics of carbon fiber-reinforced materials. This helps ensure reliable long-term operation, reduced maintenance, and consistent print quality when producing composite parts.