# Announcing the first fully operational Quantum Utlity Block at Elevate Quantum Commercialization Lab

# Build superior quantum computers

Move faster with the most powerful control design and hardware automation solution for the quantum era.

## Explore how Boulder Opal supports all stages of your quantum journey

### The problem

## Demand for quantum computing is growing. Can you keep up?

Discover how Boulder Opal supports every stage of your quantum journey, from early exploration to large-scale deployment.

### Untamed gate errors suppress hardware performance

Overcoming fickle hardware to achieve higher gate fidelities is key to building the next generation of quantum devices.

### Process inefficiencies limit the pace of innovation and productization

Onerous, manual tuning tasks slow progress and increase development costs, holding you back from quantum advantage.

### Research systems fail to meet customer expectations

Whether on the cloud, or on-prem, the industry needs utility-scale systems that work at the push of a button, every time.

## The solution

## AI-powered quantum control software to accelerate your hardware to quantum advantage

Boulder Opal delivers the best in “AI-for-Quantum” to help uncover true hardware performance at all stages of the quantum computing journey:

- Researchers can **Design** control strategies using a toolset that covers theoretical and experimental gate optimization workflows.
- Hardware teams can **Automate** control routines with complete solutions for consistent device and calibration data delivery.
- Quantum product teams and users can **Deploy** solutions that allow anyone to use this game-changing technology.

### Choose the path for your quantum workflows

Explore how Boulder Opal supports all stages of your quantum journey - from early exploration to large-scale deployment. See what solution is right for you:

## Solve fundamental quantum hardware and control problems

Researchers at the cutting-edge of quantum computing innovation need to evaluate new hardware concepts with effective quantum control processes. Boulder Opal provides the connected theoretical and experimental building blocks to accelerate these design workflows with a comprehensive control toolkit.

- Model large, complex system states with speed and accuracy.
- Uncover critical system parameters that impact performance.
- Push hardware to the limit with optimized control strategies.

### Learn more:

#### Automate and deploy

### Streamline control activities on stable quantum devices

Enterprise hardware teams need to move fast and deliver on quantum device goals, but manual, mundane control tasks are sapping progress.

Boulder Opal provides complete packages that automate repetitive control tasks to turbocharge team effectiveness and efficiency.

### Scale Up

## Autonomous quantum computer calibration and tuneup, tailored to your hardware

Boulder Opal Scale Up combines AI and quantum control to deliver fast, repeatable calibration and characterization, ensuring high-performance quantum systems every time.

#### Intelligent autonomy

A central control engine keeps systems calibrated and maintained to meet defined performance metrics, removing the need for specialized expertise.

#### Control functional library

Built for specific hardware architectures, users can access prebuilt workflows for full device calibration or single-qubit experiments.

## Comprehensive quantum control tools to help you build the best performing quantum hardware

The Boulder Opal Toolkit is built for power and convenience. It includes a complete set of enterprise-grade tools enabling researchers to solve their hardest problems in the quest for better qubits and utility scale quantum devices.

### Validated by hardware teams to transform their experimental capabilities

Boulder Opal enables cutting-edge research and product development to push the boundaries of what's possible with quantum hardware.

## Frequently asked questions

Is a local installation available?
A locally installed version of Boulder Opal can be provided upon request for circumstances mandating ultra-low latency in hardware communications. We recommend the cloud instance for general computations, as cloud services can provide performance far exceeding the specifications of the local machine.

What are the cloud machine hours?
Number of hours of running a single cloud-hosted CPU machine in a year. You can buy additional machine time to supplement your Essentials, Performance or Professional plan.

Are there resources to help my learning curve?
You can access a comprehensive documentation suite to help you on your journey, starting with [Get started guide](https://docs.q-ctrl.com/boulder-opal/get-started), and [Tutorials](https://docs.q-ctrl.com/boulder-opal/tutorials).
