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Lock In Amplifier - SR860

SR860

Low noise voltage & current inputs High bandwidth outputs 10 MHz timebase input & output GPIB, RS-232, Ethernet & USB Touchscreen data display

品牌: Stanford Research Systems价格: 面议服务区域: 全国

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Lock In Amplifier - SR860
说明规格FAQ

说明

Low noise voltage & current inputs High bandwidth outputs 10 MHz timebase input & output GPIB, RS-232, Ethernet & USB Touchscreen data display 1 µs to 30 ks time constants Low noise V & I inputs 10 MHz timebase input SR860 Lock-In Amplifier The new SR860 Lock-in Amplifier is the latest in a line of innovative lock-ins from SRS. With unparalleled analog performance, sophisticated new digital signal processing features, a thoroughly modern, intuitive user interface, and a wide range of computer connectivity options, the SR860 is the ideal choice for any synchronous detection application. ... click for SR860 Tech Support Lock-In Basics Signal Enhancement Python Driver How-To Videos (Python Driver) Rack Mount Kit Drawing 3D Step File SR860 Volatility Statement SR865A Lock-In Amplifier SR830 Lock-In Amplifier SR542 Precision Chopper SR540 Chopper CS580 Current Source DC205 Voltage Source DC215 Voltage/Current Src. SRS Preamplifiers Lock-In Basics Signal Enhancement Python Driver How-To Videos (Python Driver) Rack Mount Kit Dwg. 3D Step File SR860 Volatility Statement SR865A Lock-In Amp. SR830 Lock-In Amp. SR542 Chopper SR540 Chopper CS580 Current Source DC205 Voltage Source DC215 Voltage/Current Src. SRS Preamplifiers SR860 500 kHz DSP Lock-In Amplifier Click here for SR860 Programs Superb performance. Outstanding value. They're what you've come to expect from a Stanford Research Systems lock-in amplifier . And they're delivered by the new SR860 Lock-in Amplifier , the latest in a line of innovative lock-ins from SRS. With unparalleled analog performance, sophisticated new digital signal processing features, a thoroughly modern, intuitive user interface, and a wide range of computer connectivity options, the SR860 is the ideal choice for any synchronous detection application. With over 30 years of lock-in design experience SRS has made every effort to optimize each detail of the SR860. From a hefty toroidal transformer that eliminates switch-mode noise to iOS connectivity that brings the lock-in to your cell phone to advanced DSP filters that eliminate more noise while speeding up your experiment, the SR860 is truly the ultimate lock-in amplifier . Trend Graph X SR860 Trend Graph SR860 Lock-in performance starts at the front end. The SR860 front end offers both state-of-the art voltage and current input amplifiers. The voltage input is a switchable single-ended/differential JFET-pair amplifier with 2.5 nV/√Hz of noise at 1 kHz and under 10 nV/√Hz of noise at 10 Hz. The voltage input has a 10 MΩ input impedance and can be AC or DC coupled. Input connector shields can be connected to the instrument ground through a user selectable 10 Ω (Ground) or 10 kΩ (Float) resistor. The SR860's built-in current amplifier represents a significant improvement over previous designs. The current input range is selectable from 1 μA or 10 nA. The 1 μA range has 400 kHz of bandwidth and 130 fA/√Hz of noise, while the 10 nA range offers 2 kHz of bandwidth and 13 fA/√Hz of noise. While the built in voltage and current amplifiers are suitable for most applications, the SR860 is also compatible with the complete range of specialized pre-amplifiers offered by SRS. The SR550 (FET input), SR552 (BJT input), SR554 (transformer input), SR555 (120 kHz current amp) and SR556 (low noise current amp) can all be powered directly from the SR860's rear-panel preamp power port. Sensitivity & Input Range Strip Chart Recording X SR860 Strip Chart Recording SR860 Strip Chart Recording SR860 Strip Chart Recording As with previous instruments, the Sensitivity setting of the SR860 is the voltage (or current) which produces a full scale output. But unlike previous designs, the input range of the SR860 can be explicitly set from the front panel without having to consult a confusing “dynamic reserve” equation. Simply choose the sensitivity required by your experiment and then select the smallest input range that doesn't overload. That's it. The SR860’s effective dynamic reserve is simply the ratio of these two settings. For instance with a 10 nV sensitivity setting and a 300 mV input range the effective dynamic reserve of the SR860 is 3 × 10 7 , or nearly 150 dB. Output Time Constants The SR860 offers traditional RC-response output time constants from 1 µs to 30 ks with rolloffs of 6, 12, 18, and 24 dB/oct. But in addition, the SR860 also offers advanced digital filters which can significantly reduce measurement time while increasing signal to noise. Below 3 s, the advanced filters are Gaussian FIR filters which at the same noise bandwidth as an RC filter have significantly better rise-time and stopband attenuation. These filters also have symmetric rise and fall profiles which preserves feature shapes while scanning in frequency. At time constants longer than 3 s, the advanced filters are linear phase IIR filters which settle nearly twice as fast as their RC counterparts for equivalent stopband attenuation. Synchronous filtering may also be selected at reference frequencies below 4 kHz. The synchronous filter notches out multiples of the reference frequency and is extremely useful in making low frequency measurement where multiples of the reference frequency would otherwise show up in the lock-in output . Unlike previous designs the synchronous filter in the SR860 can be selected with no loss of output resolution. The SR860 has a specified reference frequency range of 1 mHz to 500 kHz. Detection can be done at the fundamental of the reference frequency, or at up to the 99th harmonic. Several reference modes are available: Internal mode uses the SR860's precision internal oscillator as the reference. External mode locks to an external sine or TTL signal. In Dual Mode, the lock-in detects at the difference frequency between the internally set reference frequency and an externally applied sync signal allowing direct recovery of a double-modulated signal . Finally, in Chop mode, the SR860 provides a digital PID (Proportional-Integral-Derivative) controller signal to synchronize an SR540 Optical Chopper to the internal oscillator of the lock-in . By having the lock-in directly control the chopper, frequency drift can be virtually eliminated. The SR860 offers a precision sine wave output which can be set with 6 digits of frequency resolution and an amplitude range from 1 nV to 2 V. The SR860 output is unique in that it can be configured as a single-ended or as a differential (balanced) signal. A DC offset of up to ±5 V can be applied to the sine output. A rear-panel logic-level sync signal synchronized to the sine output is also provided. Rear-panel 10 MHz inputs and outputs are provided allowing the SR860 to be locked to an external frequency reference (such as the FS725 10 MHz Rubidium Frequency Standard ). Alternatively, the 10 MHz output from the SR860 can be used to synchronize several lock-ins or other test equipment with a 10 MHz timebase input.

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规格

技术参数Low noise voltage & current inputs
技术参数High bandwidth outputs
技术参数10 MHz timebase input & output
技术参数Touchscreen data display
技术参数Low noise V & I inputs
技术参数10 MHz timebase input
技术参数The new SR860 Lock-in Amplifier is the latest in a line of innovative lock-ins from SRS. With unparalleled analog performance, sophisticated new digital signal processing features, a thoroughly modern, intuitive user interface, and a wide range of co
技术参数SR865A Lock-In Amplifier SR830 Lock-In Amplifier SR542 Precision Chopper SR540 Chopper CS580 Current Source DC205 Voltage Source DC215 Voltage/Current Src. SRS Preamplifiers
技术参数SR865A Lock-In Amp. SR830 Lock-In Amp. SR542 Chopper SR540 Chopper CS580 Current Source DC205 Voltage Source DC215 Voltage/Current Src. SRS Preamplifiers
技术参数Superb performance. Outstanding value. They're what you've come to expect from a Stanford Research Systems lock-in amplifier . And they're delivered by the new SR860 Lock-in Amplifier , the latest in a line of innovative lock-ins from SRS. With unpar
技术参数Lock-in performance starts at the front end. The SR860 front end offers both state-of-the art voltage and current input amplifiers. The voltage input is a switchable single-ended/differential JFET-pair amplifier with 2.5 nV/√Hz of noise at 1 kHz and
技术参数The SR860's built-in current amplifier represents a significant improvement over previous designs. The current input range is selectable from 1 μA or 10 nA. The 1 μA range has 400 kHz of bandwidth and 130 fA/√Hz of noise, while the 10 nA range offers

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