
静电计
用于精密电荷、电流与高压偏置读出的皮安表
Pyramid electrometers measure picoamp-to-milliamp charge and current with high channel density and fast readback, many with built-in high-voltage bias for detectors and sensors.
电流测量
跨阻放大读出,覆盖纳安至毫安高速信号。
电荷测量
电容积分读出,用于低噪声超小脉冲电流。
IX256
256 通道电荷积分静电计,配高压电源
I128-MICRO
128 通道积分静电计
I128
128 通道电荷积分数字静电计
I400
4 通道偏置输入电荷积分静电计
IC101
精密数字电荷积分静电计,配高压
I3200
32 通道电荷积分数字静电计
I404
4 通道电荷积分数字静电计
常见问题
What's the difference between measuring charge and measuring current?
Both types of instruments can technically measure charge and current, since charge is just current integrated over time. In practice, though, each is built and optimized for one measurement over the other.
When should I choose a charge-measurement instrument instead of a current-measurement instrument?
Charge-measurement instruments have less intrinsic noise than current-measurement instruments, so they're the better choice when you need to resolve ultra-low currents or charges as precisely as possible. If data speed is the priority instead, a current-measurement instrument is usually the better fit, since current-measurement instruments are intrinsically faster.
When should I choose a current-measurement instrument instead of a charge-measurement instrument?
Current-measurement instruments are intrinsically faster, so they're the better choice when data speed is the priority. If instead you need to resolve ultra-low currents or charges as precisely as possible, a charge-measurement instrument is usually the better fit, since charge-measurement instruments have less intrinsic noise.
What kinds of detectors can Pyramid's charge-measurement instruments work with?
They're designed to read out charge-producing detectors such as ionization chambers and other radiation and particle detectors that generate a small electrical charge in response to a signal.
What types of detectors typically pair with current-measurement instruments?
Detectors that produce a continuous or pulsed current in response to radiation, particles, or light, such as ionization chambers, photodiodes, and similar sensors.
How small a charge can these instruments detect?
Sensitivity varies by specific model and configuration. Pyramid's electrometers are built for precision picoamp-to-milliamp-range work, but for an exact sensitivity spec for your application, contact us or check the datasheet for the specific instrument you're considering.
What range of currents can these instruments measure?
They're built for low-current measurement from detectors, typically down into the picoamp range. Exact ranges vary by model; see the specific product's datasheet or contact us for your application's requirements.
What applications typically require precision charge measurement?
Common uses include dosimetry in radiotherapy and beam diagnostics, scientific instrumentation reading out ionization or semiconductor detectors, and any application where you need to know the total charge delivered by a pulsed or transient signal.
Do these instruments support both continuous and pulsed signals?
Many are designed to handle both, but the right configuration depends on your signal characteristics and timing requirements. Reach out and we can help match an instrument to your application.
延伸阅读
- Choosing F or I Devices for Current Measurement Learn when to choose Pyramid F-type or I-type devices for low current and charge measurement: noise, bandwidth, deadtime, and pulsed signals.
- Calibration of Current and Charge Measuring Devices Built-in and external calibration for Pyramid F- and I-series electrometers, including HV supplies and recommended check intervals.
- High Voltage Module Options for Pyramid Products External and signal HV bias for Pyramid electrometers, including FX4 and IX256 options plus the classic voltage suffix matrix.
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