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8.5 GHz Lock-in Amplifier

8.5 GHz Lock-in Amplifier

Quantum Control for Research Quantum Control for Research Overview Quantum Control for Research HDAWG 750 MHz Arbitrary Waveform Generator SHFQC+ 8.5 GHz Qubit Controller SHFSG+...

品牌: Zurich Instruments价格: 面议服务区域: 全国

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8.5 GHz Lock-in Amplifier
说明规格FAQ

说明

Quantum Control for Research Quantum Control for Research Overview Quantum Control for Research HDAWG 750 MHz Arbitrary Waveform Generator SHFQC+ 8.5 GHz Qubit Controller SHFSG+ 8.5 GHz Signal Generator SHFQA+ 8.5 GHz Quantum Analyzer SHFPPC Parametric Pump Controller QHub Quantum System Hub PQSC Programmable Quantum System Controller Overview Quantum Control for Research HDAWG 750 MHz Arbitrary Waveform Generator PQSC Programmable Quantum System Controller Lock-in Amplifiers Lock-in Amplifiers Overview Lock-in Amplifiers SHFLI 8.5 GHz GHFLI 1.8 GHz UHFLI 600 MHz VHFLI 50 MHz / 200 MHz HF2LI 50 MHz MFLI 500 kHz / 5 MHz Impedance Analyzers Impedance Analyzers Overview Impedance Analyzers MFIA 5 MHz MFIA 500 kHz Arbitrary Waveform Generators Arbitrary Waveform Generators Overview AWGs SHFQC 8.5 GHz SHFSG 8.5 GHz HDAWG 750 MHz Add-on Options Add-on Options Phase-Locked Loops PID Controllers Boxcar Averagers LabOne LabOne LabOne – Instrument Control Software Why Use LabOne? How LabOne Elevates Your Instrument Experience LabOne – Instrument Control Software How LabOne Elevates Your Instrument Experience Quantum Technologies Quantum Technologies Overview Quantum Research Quantum Computing with Superconducting Qubits Superconducting Fluxonium Qubits Superconducting Bosonic Qubits Spin-Based Quantum Computing Quantum Feedback Measurements Coherent Control of NV Centers Magnetometry with Ensembles of NV Centers Quantum Sensing Overview Quantum Computing with Superconducting Qubits Magnetometry with Ensembles of NV Centers Impedance Measurement Impedance Measurement Overview Deep Level Transient Spectroscopy Microfluidics/Single-Cell Detection Electrical Bioimpedance Dielectric Spectroscopy ESR and ESL of DC-Link Capacitors Measurement of High-Q Capacitors Measurement of Supercapacitors Impedance Measurement of Sensors Microfluidics/Single-Cell Detection Optics & Photonics Optics & Photonics Overview Raman Spectroscopy Pump-Probe Spectroscopy Time Domain Thermoreflectance (TDTR) Optical Phase-Locked Loops Cavity Optomechanics Photoluminescence THz Time-Domain Spectroscopy Quartz-Enhanced Photoacoustic Spectroscopy Optical Chopper Measurement Tunable Diode Laser Absorption Spectroscopy Time Domain Thermoreflectance (TDTR) Quartz-Enhanced Photoacoustic Spectroscopy Tunable Diode Laser Absorption Spectroscopy Scanning Probe Microscopy (SPM) Scanning Probe Microscopy (SPM) Overview Multi-Frequency Atomic Force Microscopy (MF-AFM) Non-Contact Atomic Force Microscopy (NC-AFM) Dual-Frequency Resonance Tracking (DFRT) Kelvin Probe Force Microscopy (KPFM) Scanning Near-Field Microscopy (SNOM) Time-Resolved SPM Scanning Microwave Microscopy Multi-Frequency Atomic Force Microscopy (MF-AFM) Non-Contact Atomic Force Microscopy (NC-AFM) Dual-Frequency Resonance Tracking (DFRT) Kelvin Probe Force Microscopy (KPFM) Scanning Near-Field Microscopy (SNOM) Nanotechnology & Materials Science Nanotechnology & Materials Science Hall Effect Measurements Electron Paramagnetic Resonance (EPR) Transport Measurements AC Susceptibility Measurements Molecular Transport with Break Junctions Opto-Electrical Measurements Failure Analysis & Laser Voltage Probing Electron Paramagnetic Resonance (EPR) Molecular Transport with Break Junctions Failure Analysis & Laser Voltage Probing Sensor Development Sensor Development MEMS-Based Sensors MEMS Gyroscopes Impedance Measurement of Sensors Optically Pumped Magnetometers Deep Level Transient Spectroscopy Magnetometry with Ensembles of NV Centers Cavity Optomechanics Quantum Sensing Overview Surface and Bulk Acoustic Wave Device Characterization Surface and Bulk Acoustic Wave Device Characterization White Papers White Papers White Papers Principles of Lock-in Detection Principles of Boxcar Averaging Phase-Locked Loops for Analog Signals Principles of PID Controllers Phase-Locked Loops for Analog Signals Tutorials Tutorials Lock-in Amplifier Tutorials Impedance Analyzer Tutorials PLL/PID Controller Tutorials Boxcar Averager Tutorials General LabOne Tutorials

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技术参数Quantum Control for Research Quantum Control for Research Overview Quantum Control for Research HDAWG 750 MHz Arbitrary Waveform Generator SHFQC+ 8.5 GHz Qubit Controller SHFSG+ 8.5 GHz Signal Generator SHFQA+ 8.5 GHz Quantum Analyzer SHFPPC Parametr
技术参数HDAWG 750 MHz Arbitrary Waveform Generator
技术参数Lock-in Amplifiers Lock-in Amplifiers Overview Lock-in Amplifiers SHFLI 8.5 GHz GHFLI 1.8 GHz UHFLI 600 MHz VHFLI 50 MHz / 200 MHz HF2LI 50 MHz MFLI 500 kHz / 5 MHz
技术参数Impedance Analyzers Impedance Analyzers Overview Impedance Analyzers MFIA 5 MHz MFIA 500 kHz
技术参数Arbitrary Waveform Generators Arbitrary Waveform Generators Overview AWGs SHFQC 8.5 GHz SHFSG 8.5 GHz HDAWG 750 MHz
技术参数Scanning Probe Microscopy (SPM) Scanning Probe Microscopy (SPM) Overview Multi-Frequency Atomic Force Microscopy (MF-AFM) Non-Contact Atomic Force Microscopy (NC-AFM) Dual-Frequency Resonance Tracking (DFRT) Kelvin Probe Force Microscopy (KPFM) Scann
技术参数Multi-Frequency Atomic Force Microscopy (MF-AFM)
技术参数Dual-Frequency Resonance Tracking (DFRT)
技术参数4 high-speed and 4 high-precision auxiliary outputs
技术参数The Zurich Instruments SHFLI Lock-in Amplifier brings the advantages of lock-in amplifiers – noise rejection, phase sensitivity, frequency tracking and more – to applications that operate at frequencies up to 8.5 GHz. The SHFLI contains two physical
技术参数The SHFLI’s low input noise, its wide measurement window and its very fast time constant make it the ideal measurement tool even for the most demanding microwave applications.
技术参数Arbitrary choice of frequency for all 8 demodulators within the measurement windows

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