qualcomm / Mobile_Vit

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Model's Last Updated: June 06 2025
image-classification

Introduction of Mobile_Vit

Model Details of Mobile_Vit

Mobile_Vit: Optimized for Mobile Deployment

Imagenet classifier and general purpose backbone

MobileVit is a machine learning model that can classify images from the Imagenet dataset. It can also be used as a backbone in building more complex models for specific use cases.

This model is an implementation of Mobile_Vit found here .

This repository provides scripts to run Mobile_Vit on Qualcomm® devices. More details on model performance across various devices, can be found here .

Model Details
  • Model Type: Image classification
  • Model Stats:
    • Model checkpoint: Imagenet
    • Input resolution: 224x224
    • Number of parameters: None
    • Model size: None
Model Device Chipset Target Runtime Inference Time (ms) Peak Memory Range (MB) Precision Primary Compute Unit Target Model
Mobile_Vit Samsung Galaxy S23 Snapdragon® 8 Gen 2 TFLITE 5.2 ms 0 - 18 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit Samsung Galaxy S23 Snapdragon® 8 Gen 2 QNN 5.061 ms 0 - 12 MB FP16 NPU Mobile_Vit.so
Mobile_Vit Samsung Galaxy S23 Snapdragon® 8 Gen 2 ONNX 6.022 ms 0 - 16 MB FP16 NPU Mobile_Vit.onnx
Mobile_Vit Samsung Galaxy S24 Snapdragon® 8 Gen 3 TFLITE 3.588 ms 0 - 36 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit Samsung Galaxy S24 Snapdragon® 8 Gen 3 QNN 3.518 ms 1 - 39 MB FP16 NPU Mobile_Vit.so
Mobile_Vit Samsung Galaxy S24 Snapdragon® 8 Gen 3 ONNX 4.232 ms 1 - 115 MB FP16 NPU Mobile_Vit.onnx
Mobile_Vit Snapdragon 8 Elite QRD Snapdragon® 8 Elite TFLITE 2.892 ms 0 - 32 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit Snapdragon 8 Elite QRD Snapdragon® 8 Elite QNN 3.514 ms 0 - 37 MB FP16 NPU Use Export Script
Mobile_Vit Snapdragon 8 Elite QRD Snapdragon® 8 Elite ONNX 3.288 ms 0 - 63 MB FP16 NPU Mobile_Vit.onnx
Mobile_Vit QCS8550 (Proxy) QCS8550 Proxy TFLITE 5.194 ms 0 - 17 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit QCS8550 (Proxy) QCS8550 Proxy QNN 4.613 ms 1 - 2 MB FP16 NPU Use Export Script
Mobile_Vit SA7255P ADP SA7255P TFLITE 43.281 ms 0 - 30 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit SA7255P ADP SA7255P QNN 43.413 ms 1 - 11 MB FP16 NPU Use Export Script
Mobile_Vit SA8255 (Proxy) SA8255P Proxy TFLITE 5.213 ms 0 - 18 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit SA8255 (Proxy) SA8255P Proxy QNN 4.649 ms 1 - 2 MB FP16 NPU Use Export Script
Mobile_Vit SA8295P ADP SA8295P TFLITE 8.342 ms 0 - 30 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit SA8295P ADP SA8295P QNN 8.407 ms 1 - 7 MB FP16 NPU Use Export Script
Mobile_Vit SA8650 (Proxy) SA8650P Proxy TFLITE 5.203 ms 0 - 17 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit SA8650 (Proxy) SA8650P Proxy QNN 4.636 ms 1 - 2 MB FP16 NPU Use Export Script
Mobile_Vit SA8775P ADP SA8775P TFLITE 7.393 ms 0 - 29 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit SA8775P ADP SA8775P QNN 7.716 ms 1 - 6 MB FP16 NPU Use Export Script
Mobile_Vit QCS8450 (Proxy) QCS8450 Proxy TFLITE 7.175 ms 0 - 38 MB FP16 NPU Mobile_Vit.tflite
Mobile_Vit QCS8450 (Proxy) QCS8450 Proxy QNN 7.098 ms 1 - 40 MB FP16 NPU Use Export Script
Mobile_Vit Snapdragon X Elite CRD Snapdragon® X Elite QNN 5.043 ms 1 - 1 MB FP16 NPU Use Export Script
Mobile_Vit Snapdragon X Elite CRD Snapdragon® X Elite ONNX 6.442 ms 15 - 15 MB FP16 NPU Mobile_Vit.onnx
Installation

This model can be installed as a Python package via pip.

pip install "qai-hub-models[mobile_vit]"
Configure Qualcomm® AI Hub to run this model on a cloud-hosted device

Sign-in to Qualcomm® AI Hub with your Qualcomm® ID. Once signed in navigate to Account -> Settings -> API Token .

With this API token, you can configure your client to run models on the cloud hosted devices.

qai-hub configure --api_token API_TOKEN

Navigate to docs for more information.

Demo off target

The package contains a simple end-to-end demo that downloads pre-trained weights and runs this model on a sample input.

python -m qai_hub_models.models.mobile_vit.demo

The above demo runs a reference implementation of pre-processing, model inference, and post processing.

NOTE : If you want running in a Jupyter Notebook or Google Colab like environment, please add the following to your cell (instead of the above).

%run -m qai_hub_models.models.mobile_vit.demo
Run model on a cloud-hosted device

In addition to the demo, you can also run the model on a cloud-hosted Qualcomm® device. This script does the following:

  • Performance check on-device on a cloud-hosted device
  • Downloads compiled assets that can be deployed on-device for Android.
  • Accuracy check between PyTorch and on-device outputs.
python -m qai_hub_models.models.mobile_vit.export
Profiling Results
------------------------------------------------------------
Mobile_Vit
Device                          : Samsung Galaxy S23 (13)
Runtime                         : TFLITE                 
Estimated inference time (ms)   : 5.2                    
Estimated peak memory usage (MB): [0, 18]                
Total # Ops                     : 577                    
Compute Unit(s)                 : NPU (577 ops)          
How does this work?

This export script leverages Qualcomm® AI Hub to optimize, validate, and deploy this model on-device. Lets go through each step below in detail:

Step 1: Compile model for on-device deployment

To compile a PyTorch model for on-device deployment, we first trace the model in memory using the jit.trace and then call the submit_compile_job API.

import torch

import qai_hub as hub
from qai_hub_models.models.mobile_vit import Model

# Load the model
torch_model = Model.from_pretrained()

# Device
device = hub.Device("Samsung Galaxy S23")

# Trace model
input_shape = torch_model.get_input_spec()
sample_inputs = torch_model.sample_inputs()

pt_model = torch.jit.trace(torch_model, [torch.tensor(data[0]) for _, data in sample_inputs.items()])

# Compile model on a specific device
compile_job = hub.submit_compile_job(
    model=pt_model,
    device=device,
    input_specs=torch_model.get_input_spec(),
)

# Get target model to run on-device
target_model = compile_job.get_target_model()

Step 2: Performance profiling on cloud-hosted device

After compiling models from step 1. Models can be profiled model on-device using the target_model . Note that this scripts runs the model on a device automatically provisioned in the cloud. Once the job is submitted, you can navigate to a provided job URL to view a variety of on-device performance metrics.

profile_job = hub.submit_profile_job(
    model=target_model,
    device=device,
)
        

Step 3: Verify on-device accuracy

To verify the accuracy of the model on-device, you can run on-device inference on sample input data on the same cloud hosted device.

input_data = torch_model.sample_inputs()
inference_job = hub.submit_inference_job(
    model=target_model,
    device=device,
    inputs=input_data,
)
    on_device_output = inference_job.download_output_data()

With the output of the model, you can compute like PSNR, relative errors or spot check the output with expected output.

Note : This on-device profiling and inference requires access to Qualcomm® AI Hub. Sign up for access .

Run demo on a cloud-hosted device

You can also run the demo on-device.

python -m qai_hub_models.models.mobile_vit.demo --on-device

NOTE : If you want running in a Jupyter Notebook or Google Colab like environment, please add the following to your cell (instead of the above).

%run -m qai_hub_models.models.mobile_vit.demo -- --on-device
Deploying compiled model to Android

The models can be deployed using multiple runtimes:

  • TensorFlow Lite ( .tflite export): This tutorial provides a guide to deploy the .tflite model in an Android application.

  • QNN ( .so export ): This sample app provides instructions on how to use the .so shared library in an Android application.

View on Qualcomm® AI Hub

Get more details on Mobile_Vit's performance across various devices here . Explore all available models on Qualcomm® AI Hub

License
  • The license for the original implementation of Mobile_Vit can be found here .
  • The license for the compiled assets for on-device deployment can be found here
References
Community

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More Information About Mobile_Vit huggingface.co Model

More Mobile_Vit license Visit here:

https://choosealicense.com/licenses/other

Mobile_Vit huggingface.co

Mobile_Vit huggingface.co is an AI model on huggingface.co that provides Mobile_Vit's model effect (), which can be used instantly with this qualcomm Mobile_Vit model. huggingface.co supports a free trial of the Mobile_Vit model, and also provides paid use of the Mobile_Vit. Support call Mobile_Vit model through api, including Node.js, Python, http.

qualcomm Mobile_Vit online free

Mobile_Vit huggingface.co is an online trial and call api platform, which integrates Mobile_Vit's modeling effects, including api services, and provides a free online trial of Mobile_Vit, you can try Mobile_Vit online for free by clicking the link below.

qualcomm Mobile_Vit online free url in huggingface.co:

https://huggingface.co/qualcomm/Mobile_Vit

Mobile_Vit install

Mobile_Vit is an open source model from GitHub that offers a free installation service, and any user can find Mobile_Vit on GitHub to install. At the same time, huggingface.co provides the effect of Mobile_Vit install, users can directly use Mobile_Vit installed effect in huggingface.co for debugging and trial. It also supports api for free installation.

Mobile_Vit install url in huggingface.co:

https://huggingface.co/qualcomm/Mobile_Vit

Url of Mobile_Vit

Mobile_Vit huggingface.co Url

Provider of Mobile_Vit huggingface.co

qualcomm
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