
24 Channel Cryostat Breakout Box
[CryoConnect]

Product Overview
The CryoNano Breakout Box is a fully shielded, high-performance breakout box tailored for low-temperature and quantum transport experiments.
Designed to work seamlessly with cryostats and quantum measurement systems, the CryoNano Breakout Box provides an efficient and easy-to-use interface for connecting and measuring multiple low-temperature devices simultaneously. It extends the cryostat Faraday cage, ensuring high-quality data collection by minimizing noise and electrostatic discharge (ESD) risks.
The CryoNano Breakout Box is the perfect solution for simplifying your quantum transport experiments while providing reliable protection and optimal performance in cryogenic environments. It makes connecting, testing, and measuring low-temperature devices easier, allowing you to focus on your research with minimal setup time.

Key Features
-
24-Channel Capability:
Supports multi-terminal cryogenic measurements with 24 high-frequency channels, each equipped with low-pass filtering to minimize noise and maintain signal integrity.
-
Shielded Design
Fully shielded to extend the cryostat’s Faraday cage to the breakout box, reducing external RF interference and maintaining signal quality in cryogenic experiments.
-
Noise immunity
Employs twisted-pair wiring for all channels to reduce electromagnetic interference and improve measurement precision. Integrated filters on each channel further attenuate high-frequency noise and mitigate ESD effects.
-
Switching Functionality
Technical Specifications
Channels
24 (11) channels
Connectors
BNC connectors for easy connection to laboratory equipment
Filters
Each channel equipped with integrated low-pass filters to blocknoise above the cutoff frequency
Nolse Immunity
Twisted-pair wiring for each channel to minimize electromagneticinterference (EMI).
Voltage Isolation
Isolation betwaen channels to prevent cross-talk and signaldegredation
Temperature Range
Designed for operation in cryogenic environments (down to 2 K)
Cable Length
Standard cable lengins up to 3 meters teustom lengths available)
Weight
Compact and lightweight design for easy handling and integrationinto lab setups.
Each channel has dedicated switches to enable quick connection to ground or a common bus. This provides an easy way to set up ESD-sensitive measurements, ensuring safe operation without complex wiring.

Simplifying the Measurement Process:
-
The CryoNano Breakout Box simplifies the process of connecting and measuring low-temperature devices.
-
Common Bus: A shared bus channel allows you to quickly and easily connect devices like sensors or fixed resistors to multiple channels simultaneously, saving time and effort in your experimental setup.
-
With the included twisted-pair cable assembly, the breakout box ensures that the shielding from the cryostat extends seamlessly, maintaining the integrity of your measurements.
-
Easy to set up:
-
Flexible Cable Assembly: The CryoNano Breakout Box comes with a flexible, low-noise cable assembly that connects the cryostat’s shield to the breakout box, providing a clean and reliable signal path.
-
Effortless Integration: The 24-channel configuration makes it easy to integrate multiple devices for multi-terminal measurements, enhancing the flexibility of your setup. The common bus simplifies the connection of multiple devices across several channels, allowing you to connect quantum devices and other sensitive components quickly.

Applications
-
Quantum Transport Measurements
-
Nanoelectronics Research
-
ESD-Sensitive Device Testing
-
Low-Temperature Experimentation
-
Cryogenic Electronics Testing
Benefits
-
Enhanced Signal Integrity:
Fully shielded design and integrated filtering ensure high-quality data for sensitive low-temperature experiments.
-
Easy Integration:
Quick setup with common bus functionality, ideal for multi-terminal device testing.
-
High Flexibility:
Suitable for a wide range of applications in quantum computing, nanoelectronics, and other low-temperature research areas.
-
Safe and Efficient:
Protects devices from ESD and noise interference, ensuring reliable and accurate measurements.