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Integrated Components

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Hassle Free Integration Of All Components Inside Flex

A key feature of our Cri/oFlex® technology is the integration of microwave filtering components on the flex. This reduces the number of breakouts on the chain, limiting the number of components (mainly connector), simplifying installation and removing points of failure. Our current library of filtering components includes attenuators and low-pass- and infrared (IR) filtering.

Attenuator

Custom Attenuation

Integrated in flex

Ag platform

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Our integrated attenuators are based on impedance matched resistance networks. The attenuation can be specified in 5 dB increments allowing for custom attenuation. By attenuating both the signal and johnson noise at each thermal stage, optimal signal to noise ratios can be achieved at the quantum device. The thermal clamps provided with the attenuators ensure improved thermalization of the integrated resistors compared to other solutions and limit thermal (johnson) noise.

The data (shown in the figure below) is of a 20 dB attenuator integrated into a Cri/oFlex® 3, measured at 77 K. It shows the minimum, maximum and average of the 8 channels in the cable. Attenuators are currently available on Ag-based Cri/oFlex®.

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Attenuators shift the dynamic range and noise levels of the room temperature signal generators to the regime that is needed for the operation of the quantum devices.

The location of the attenuator in the cryostat needs to be carefully chosen as lower temperatures are better for limiting the extra Johnson noise generated in the resistors of the attenuator, but in most cryostat higher temperatures offer more cooling power. The usual solution is therefore a distribution of various attenuators thermalized to different temperature plates. With the integrated solution that is offered by Delft Circuits the optimal solution can be manufactured and installed without any limitation on the ease of installation or scalability of the system.

Given your requirements, Delft Circuits can calculate the optimal distribution of attenuators for you and the resulting expected noise levels.

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