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產(chǎn)品詳情
簡(jiǎn)單介紹:
寬帶寬電壓放大器HVA-200M-40-B是德國(guó)FEMTO廠家生產(chǎn)的一款寬帶寬電壓放大器,價(jià)格優(yōu)惠,功能強(qiáng)大。
產(chǎn)品名稱(chēng):寬帶寬電壓放大器HVA-200M-40-B
產(chǎn)品型號(hào):HVA-200M-40-B
產(chǎn)品品牌:德國(guó)FEMTO
詳情介紹:
產(chǎn)品名稱(chēng):寬帶寬電壓放大器HVA-200M-40-B
產(chǎn)品型號(hào):HVA-200M-40-B
產(chǎn)品品牌:德國(guó)FEMTO
德國(guó)FEMTO寬帶寬電壓放大器HVA-200M-40-B
儀器簡(jiǎn)介:
Applications
Universal Low-Frequency Amplifier
Automated Measurements
Industrial Sensors
Detector Preamplifier
Integrated Measurement Systems
技術(shù)參數(shù):
Bandwidth DC to 10, 200 or 500 MHz
Fixed or Variable Gain up to 60 dB (x 1,000)
Noise down to 0.9 nV/√Hz
True DC Coupling, Switchable to AC
50 Ω Bipolar or 1 MΩ FET Input Stage
主要特點(diǎn):
Bandwidth
For optimum signal-to-noise performance choose an amplifier with sufficient bandwidth corresponding to the required signal bandwidth. However, keep in mind that unnecessary high bandwidth introduces more wideband noise. Therefore, FEMTO offers HVA Voltage Amplifiers with three different upper cut-off frequencies to match individual measurement requirements. And as with all FEMTO Adjustable-Gain Amplifiers the bandwidth remains constant when switching between the different gain settings which is very important for measuring fast signals and pulses.
True DC-Coupling with Zero Output Offset
True DC-Coupling is extremely important for accurate pulse amplification and analysis especially when different pulse lengths occur like in digital codes or transients with micro- to millisecond duration. If the amplifier is AC coupled or has a large output offset to be de-coupled by the AC setting of the oscilloscope there will be significant undershoots and baseline shifts in the measurements. Therefore, all HVA Amplifiers offer a true DC coupling and an adjustable output offset control even with the 500 MHz model.
Very Low Input Noise
Low input noise is very important for a good signal-to-noise ratio, especially when amplifying small signals. All HVA Amplifiers are optimized for minimum input noise reaching excellent values as low as 0.9 nV/√Hz.