페이지 정보
본문
제품명
Potentiostat / Galvanostat
제조사
SOLARTRON
모델
SI1287A
가격
문의요(재고유)
렌탈
문의요
첨부파일
상세내용
The model 1287 Electrochemical Interface is a high accuracy, wide bandwidth potentiostat/galvanostat which offers a full range of AC/DC test capabilities; when coupled with one of our frequency response analyzers it delivers outstanding AC impedance capabilities.
Measurement Integrity
Central to the measurement capability of the 1287 are two high resolution digital voltmeters which provide simultaneous voltage and current measurements. Using Solartron Analytical’s patented pulse width conversion technique, they have high accuracy, stability and linearity throughout the entire range of the instrument. The 1287 has excellent measurement resolution and accuracy down to 1 µV for the reference electrodes and 1pA for the working electrode, which makes it an ideal choice for electrochemical noise applications or measurements where signal levels are extremely low. The 1287 uses floating measurements on all connections: it is equally at home measuring corrosion rates on grounded oil pipelines as it is in the laboratory. For safety reasons, it is often necessary to ground laboratory equipment such as autoclaves, a major problem if the instrument is not capable of floating measurements. The 1287 offers complete flexibility for cell connection: 2-, 3- or 4-terminal measurements can be made with equal ease.
- 2-terminal techniques for general materials/electrochemical testing
- 3-terminal techniques for corrosion/coating applications
- 4-terminal techniques for accurate characterization of batteries/fuel cells, enabling lead resistance and impedance effects to be minimized
Impedance
Electrochemical Impedance Spectroscopy (EIS) is widely used to enhance the information about reaction mechanisms available from DC techniques. Designed with impedance testing very much in mind, the1287’s performance is unsurpassed; no other electrochemical interface matches the flatness and linearity of its frequency response. Solartron Analytical FRAs use a single sine correlation algorithm which offers excellent noise and harmonic rejection. The technique is particularly powerful for electrochemical applications since signal levels are usually very low (of the order of millivolts), and are inevitably buried in noise. With the1287/1260 combination it is possible to characterize cells with a very wide range of impedances. When making high frequency impedance measurements, Solartron Analytical’s driven shield technology minimizes the unwanted effects of cable impedance enabling the 1287 to be used over a full 10 µHz to 1 MHz frequency range. The 1287 was designed to carry out both DC tests and AC impedance tests: an externally generated waveform from a frequency response analyzer or spectrum analyzer can be added to the polarization signal.
Electrochemistry Software
The CorrWare and ZPlot packages are specifically designed to run a wide range of electrochemical tests using the 1287A including:
- Impedance
- Potentiostatic/galvanostatic techniques
- Cyclic voltammetry
- Electrochemical noise
CorrWare and ZPlot are an ideal tools for corrosion analysis, battery/fuel cell research, and general electrochemistry. The software provides real-time analysis, multiple display formats and curve fitting routines.
Impedance Contour Plot
Limits of error (for a unity gain cell Zc=Rs, measured with LO grounded) and no error due to reference electrode bandwidth. RE1and RE2 input capacitance must be corrected to obtain accuracy at high frequency and impedance.
| Measurement Configurations | |||
| Cell connections | 2-, 3- or 4-terminal, all floating | ||
| Working Electrode | |||
| Current measurement resistor (Rs) range: | 0.1 Ω to 1 MΩ | ||
| Full scale current ranges | 2 A to 200 nA | ||
| Limit of error: | 0.1% ±0.05% of range | ||
| Counter Electrode | |||
| Output voltage | >±30 V w.r.t. LO | ||
| Output current | 2 A, subject to thermal protection limits | ||
| Slew rate | >10 V/µs (potentiostatic control) | ||
| Reference Electrodes | |||
| Input impedance: | >10 GΩ | ||
| Input capacitance: | 50 pF | ||
| Input current: | <1 nA | ||
| Limit of error: | 0.1%±100 µV | ||
| Rejection: | f<10 kHz: 75dB, f<1 MHz: 40 dB | ||
| Reference Electrodes | |||
| Full scale voltage range | ±14.5 V, 2 V, 200 mV | ||
| Input impedance: | >10 GΩ | ||
| Input capacitance: | 50 pF | ||
| Input current: | <1 nA | ||
| Limit of error: | 0.5%rdg ± 0.0025% f.s. | ||
| Rejection: | f<10 kHz: 75dB, f<1 MHz: 40dB | ||
| Max. resolution: | 100 µV | ||
| Current range: | ±2 A | ||
| Limit of error: | 0.2% ±0.1% of range | ||
| Max. resolution: | 100 pA | ||
| DC Sweep Capability | |||
| Type | analog ramp ramp rate (voltage): 6mV/min to 6000V/min | ||
| Segment duration: | 10 ms to 105 s | ||
| Stepped ramp step height: | 5 µV/5 pA to 29 V/4 A | ||
| Step duration: | 10 ms to 105 s | ||
| AC Input Capability | |||
| AC input voltage range: | ±10 V, gain: x1. x0.01, impedance: 10kΩ | ||
| Control loop Bandwidth: | 100 Ω resistive load, unity gain | ||
| potentistatic mode, type C stability: >1 MHz | |||
| galvanostatic mode, type B stability: >100 kHz | |||
| Digital meters | |||
| Resolution | 3½, 4½, 5½ digits | ||
| Maximum resolution | 1 µV/1 pA | ||
| Bias Rejection | |||
| Voltage | |||
| Range: | ±14.5 V | ||
| Limit of error: | 0.2%±10 mV | ||
| Resolution: | 5 mV | ||
| Current | |||
| Ranges (full scale): | 200 nA to 2 A | ||
| Limit of error: | 0.2%±1% of range | ||
| Resolution: | 1% of range | ||
| Interfaces | |||
| RS232 & GPIB (IEEE-488) | For instrument control or for directly driving attached plotter using HPGL language | ||
| Power Requirements | |||
| Voltage | 90 to 110V, 108 to 132V, 198 to 242V, 216 to 264VAC | ||
| Frequency | 48 to 65 Hz | ||
| Power | < 150 VA | ||
| Dimensions | |||
| Width | 432 mm (17") | ||
| Depth | 472 mm (18.5 ") | ||
| Height | 108 mm (4.25") | ||
| Weight | 11 kg (24 lbs) | ||
| Operating Temperature Range | 0 to 50ºC (32 to 122ºF) | ||
- 이전글Parametric Measurement Solutions 25.03.21
- 다음글TEC SourceMeter 25.03.21
댓글목록
등록된 댓글이 없습니다.

