Reference schematic

XLD Setup Q2 2023

aorgazf-quantum_kicad-quantum_kicad-schematic

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aorgazf-quantum_kicad-quantum_kicad-schematic

Take the project archive: a schematic is a root sheet plus every sub-sheet beside it, and the root alone opens with its hierarchy missing. The archive is zstd-compressed (tar.zst).

1Sheets
105Placed parts
151Net labels
KiCad 7File format

Bill of materials

105 distinct parts

None of these names match a library the catalog carries.

RefValueSymbolQty
BT1Bias TeeQuantum Computing:Bias Tee
BT10Bias TeeQuantum Computing:Bias Tee
BT11Bias TeeQuantum Computing:Bias Tee
BT12Bias TeeQuantum Computing:Bias Tee
BT13Bias TeeQuantum Computing:Bias Tee
BT14Bias TeeQuantum Computing:Bias Tee
BT15Bias TeeQuantum Computing:Bias Tee
BT16Bias TeeQuantum Computing:Bias Tee
BT2Bias TeeQuantum Computing:Bias Tee
BT3Bias TeeQuantum Computing:Bias Tee
BT4Bias TeeQuantum Computing:Bias Tee
BT5Bias TeeQuantum Computing:Bias Tee
BT6Bias TeeQuantum Computing:Bias Tee
BT7Bias TeeQuantum Computing:Bias Tee
BT8Bias TeeQuantum Computing:Bias Tee
BT9Bias TeeQuantum Computing:Bias Tee
LO10LO_R&SQuantum Computing:LO_R&S
LO11LO_R&SQuantum Computing:LO_R&S
LO12LO_R&SQuantum Computing:LO_R&S
LO13LO_R&SQuantum Computing:LO_R&S
LO14LO_R&SQuantum Computing:LO_R&S
LO15LO_R&SQuantum Computing:LO_R&S
LO16LO_R&SQuantum Computing:LO_R&S
LO2LO_ERAQuantum Computing:LO_ERA
LO3LO_ERAQuantum Computing:LO_ERA
LO4LO_ERAQuantum Computing:LO_ERA
LO5LO_ERAQuantum Computing:LO_ERA
LO6LO_ERAQuantum Computing:LO_ERA
LO7LO_ERAQuantum Computing:LO_ERA
LO8LO_ERAQuantum Computing:LO_ERA
LO9LO_ERAQuantum Computing:LO_ERA
MX1SpinQQuantum Computing:Mixer IQ SpinQ
MX10MarkiQuantum Computing:Mixer IQ Marki
MX11MarkiQuantum Computing:Mixer IQ Marki
MX12SpinQQuantum Computing:Mixer IQ SpinQ
MX13MarkiQuantum Computing:Mixer IQ Marki
MX14MarkiQuantum Computing:Mixer IQ Marki
MX15SpinQQuantum Computing:Mixer IQ SpinQ
MX16MarkiQuantum Computing:Mixer IQ Marki
MX17MarkiQuantum Computing:Mixer IQ Marki
Show the other 65
MX18SpinQQuantum Computing:Mixer IQ SpinQ
MX19SpinQQuantum Computing:Mixer IQ SpinQ
MX2SpinQQuantum Computing:Mixer IQ SpinQ
MX20MarkiQuantum Computing:Mixer IQ Marki
MX21SpinQQuantum Computing:Mixer IQ SpinQ
MX22SpinQQuantum Computing:Mixer IQ SpinQ
MX23MarkiQuantum Computing:Mixer IQ Marki
MX24MarkiQuantum Computing:Mixer IQ Marki
MX25MarkiQuantum Computing:Mixer IQ Marki
MX26MarkiQuantum Computing:Mixer IQ Marki
MX27MarkiQuantum Computing:Mixer IQ Marki
MX28MarkiQuantum Computing:Mixer IQ Marki
MX29MarkiQuantum Computing:Mixer IQ Marki
MX3SpinQQuantum Computing:Mixer IQ SpinQ
MX30MarkiQuantum Computing:Mixer IQ Marki
MX31MarkiQuantum Computing:Mixer IQ Marki
MX32MarkiQuantum Computing:Mixer IQ Marki
MX33MarkiQuantum Computing:Mixer IQ Marki
MX34MarkiQuantum Computing:Mixer IQ Marki
MX35MarkiQuantum Computing:Mixer IQ Marki
MX4SpinQQuantum Computing:Mixer IQ SpinQ
MX5SpinQQuantum Computing:Mixer IQ SpinQ
MX6SpinQQuantum Computing:Mixer IQ SpinQ
MX7SpinQQuantum Computing:Mixer IQ SpinQ
MX8SpinQQuantum Computing:Mixer IQ SpinQ
MX9SpinQQuantum Computing:Mixer IQ SpinQ
OPX1QM_OPXQuantum Computing:QM_OPX
OPX2QM_OPXQuantum Computing:QM_OPX
OPX3QM_OPXQuantum Computing:QM_OPX
OPX4QM_OPXQuantum Computing:QM_OPX
OPX5QM_OPXQuantum Computing:QM_OPX
OPX6QM_OPXQuantum Computing:QM_OPX
OPX7QM_OPXQuantum Computing:QM_OPX
OPX8QM_OPXQuantum Computing:QM_OPX
OPX9QM_OPXQuantum Computing:QM_OPX
Splitter1ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter19ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter2ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter20ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter21ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter22ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter23ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter24ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter26ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter27ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter28ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter29ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter3ZFRSC_183_S+Quantum Computing:Splitter ZFRSC_183_S+
Splitter4ZFSC-2-10G+Quantum Computing:Splitter ZFSC-2-10G+
T1TerminatorQuantum Computing:Terminator 50ohms
T10TerminatorQuantum Computing:Terminator 50ohms
T11TerminatorQuantum Computing:Terminator 50ohms
T12TerminatorQuantum Computing:Terminator 50ohms
T13TerminatorQuantum Computing:Terminator 50ohms
T14TerminatorQuantum Computing:Terminator 50ohms
T15TerminatorQuantum Computing:Terminator 50ohms
T16TerminatorQuantum Computing:Terminator 50ohms
T2TerminatorQuantum Computing:Terminator 50ohms
T3TerminatorQuantum Computing:Terminator 50ohms
T4TerminatorQuantum Computing:Terminator 50ohms
T5TerminatorQuantum Computing:Terminator 50ohms
T6TerminatorQuantum Computing:Terminator 50ohms
T7TerminatorQuantum Computing:Terminator 50ohms
T8TerminatorQuantum Computing:Terminator 50ohms
T9TerminatorQuantum Computing:Terminator 50ohms

Provenance

Commit
unknown
Licence
CC-BY-4.0

How it is used

Trace's agent reads this design as context — what parts a board like this carries, how they are grouped across sheets, what a plausible layer stack and board size look like for the job. It is not copied. The licence above is permissive, and it, the repository and the commit are recorded so the origin of anything derived from it is always answerable.