Ufs 3.1 Pinout Jun 2026

Skip the grunt work, focus on the art.

With this 3d animation plugin, you simply rig a model and start “driving” cars, vehicles and aircraft through 3D environments. Adjust variables like suspension and add camera effects to achieve the exact look and feel you’re after.

Available for Autodesk® 3ds Max® and Maya® on Windows 64-bit or Linux 64-bit.

Including 1 week free professional subscription trial.

ufs 3.1 pinout
ufs 3.1 pinout

Natural animations automatically

The Craft Director Studio plugin was built to solve an old problem in animation: that hours and hours needed to be spent simply to make a vehicle roll forward and turn. Never mind animating all the subtle impacts of real-life driving, like a slight body shake over a bump.

Instead of endlessly keyframing, scripting, and creating custom animation rigs, animation teams and professionals can spend that time fine-tuning the realism of their scenes.

Striking camera effects

Give your scenes special impact with a wide array of camera effects to choose from and combine. “Humanize” cameras with subtle shakes, use SphereCam to simulate epic camera angles, get precise using Spline Speed Controller, and so on and so forth!

ufs 3.1 pinout

Key Benefits

A 3D animation tool sandbox that’s intuitive to use and eliminates weeks’ worth of rigging and keyframing. 

ufs 3.1 pinout

Amazing animations

Create natural, dynamic animations with that little extra.

ufs 3.1 pinout

Real-time feedback

Animations and keyframes are created in real-time which means you get instant results, providing better movement exactly as envisioned by a producer or director.

ufs 3.1 pinout

Quick productions

Animate cars, trucks, vehicles and cameras in a fraction of the time.

ufs 3.1 pinout

Endless possibilities

Combine the 41 tools in various ways to create the animation rig that fits your needs.

Ufs 3.1 Pinout Jun 2026

🔹 Unlike the parallel bus of eMMC, UFS relies on high-speed differential signaling.

The TX and RX differential pairs must be routed with a strict differential impedance matching requirement (typically 100 Ohms ).

The UFS 3.1 pinout reflects a paradigm shift from simple parallel buses to highly complex, low-power, high-speed differential serialization architectures. Mastering the configuration of its high-speed lanes, reference clocks, and split-voltage rails is essential for anyone pushing the boundaries of mobile hardware design, hardware debugging, or physical data recovery.

eMMC Architecture (Parallel, Shared Bus) [ Host ] <=====> [ Command / Data Lines (8-bit) ] <=====> [ eMMC Storage ] (Half-Duplex: Cannot read and write at the same time) UFS 3.1 Architecture (Serial, Dual-Lane Differential Pair) [ Host ] =====> [ TX Lane 0 / Lane 1 (Differential) ] =====> [ UFS 3.1 Storage ] <==== Rhine [ RX Lane 0 / Lane 1 (Differential) ] <===== (Full-Duplex: Simultaneous Read and Write via M-PHY Layer) ufs 3.1 pinout

Secondary transmit lane completing the 2x2 MIMO configuration. Clock Input

Technicians servicing mobile devices use specialized tools to interact with the UFS 3.1 chip directly, such as the EASY JTAG PLUS UFS Socket R17 .

| Lane | Receive (Host → Device) | Transmit (Device → Host) | |------|-------------------------|--------------------------| | Lane 0 | DIN0_P / DIN0_N | DOUT0_P / DOUT0_N | | Lane 1 | DIN1_P / DIN1_N | DOUT1_P / DOUT1_N | 🔹 Unlike the parallel bus of eMMC, UFS

In the context of hardware repair and data forensics, the most "helpful feature" of a UFS 3.1 pinout is its support for In-System Programming (ISP)

Different manufacturers (Samsung, Kioxia, SK Hynix) may rename these. Common alternatives:

A common pitfall is confusing a UFS device with an eMMC device, even though both may use a BGA153 package. The ball assignments are . Connecting an eMMC device to a UFS‑designed PCB (or vice versa) can result in improper power delivery, conflicting signal voltages, and permanent damage to the chip or the host. | Lane | Receive (Host → Device) |

UFS 3.1 replaces this with dual-lane, low-voltage differential signaling (LVDS) lanes. This architecture drastically reduces electromagnetic interference (EMI) and power consumption while increasing bandwidth up to 23.2 Gbps (2.9 GB/s) using MiPi M-PHY Gear 4. Standard UFS BGA form Factors

UFS 3.1 chips primarily use two Joint Electron Device Engineering Council (JEDEC) standard ball grid array form factors:

Customer Videos / Demos

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Advertising

Architectural

Demo Reel

Game

Military

Vehicle

VFX / CGI

Dig deeper

Learn more about how to use Craft Director Studio through our tutorials, user cases and customer support.

ufs 3.1 pinout

Tutorials

Watch the different tools at work and get going with your project. 

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ufs 3.1 pinout

Customer Stories

See how teams have used our animation plugin to achieve stunning finished products.

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ufs 3.1 pinout

Support

Get answers to common questions, and reach out to us if you need help. 

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System requirements

Windows 64-bit

Autodesk® 3ds Max® 2018 to 2026
Autodesk® Maya® 2018 to 2026
Microsoft Windows 7 (SP1) or higher operating system

Linux 64-bit

Autodesk® Maya® 2018 to 2023.
Fedora, Ubuntu, CentOS7 och Manjaro (can function on other versions as well)

Recommended hardware

64-bit system with 8Gb of RAM or better

Recommended input devices

Gamepad with dual analog sticks (i.e. Microsoft Xbox Controller)
Optional: Joystick with buttons for Helicopter, Airplane and Airplane Extended

Test it for free

Before you buy, we want you to feel confident that this is the plug-in for you.

When you download the Free version, you get a one-week trial of the (paid) professional tools.
If you have issues or need additional time to test these out, contact us!

View our prices

Pricing Plans

Plans for professionals, teams and casual animators.