Signal Conditioning

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Showing 25-36 of 50 item(s)
Showing 25-36 of 50 item(s)

Active filters

PCB-480C02

  • Battery-powered 1-channel power supply unit,
  • Input: ICP®,
  • Gain 1 x,
  • BNC input and output

    PCB-482A21

  • 1-channel power supply unit,
  • Input: ICP®,
  • Gain 1 x,
  • BNC-input and output,
  • Including power supply
    • PCB-422E06

    • Inline charge amplifier,
    • Input range of ±10. 000 pC,
    • Output range ±2, 5 V,
    • Transcription factor: 0.25 mV / pC,
    • Frequency range 0.5 … 100,000 Hz (depends on the constant current)
      • PCB-422E55

      • Inline charge amplifier,
      • Input range of ±10. 000 pC,
      • Output range ±5 V,
      • Transcription factor: 0.5 mV / pC,
      • Frequency range 5 … 100,000 Hz (depends on the constant current)
        • PCB-480E09

          • Battery-powered 1-channel power supply unit,
          • Input: ICP®,
          • Amplification factors 1 x, 10 x and 100 x,
          • BNC input and output

            PCB-422E11

          • Inline charge amplifier,
          • Input range ±25 pC,
          • Output range ±2, 5 V,
          • Transcription factor≥ 100 MΩ / pC,
          • Frequency range 5 … 110,000 Hz (depends on the constant current)
            • PCB-422E12

            • Inline charge amplifier,
            • Entrance ±250 pC,
            • Output range ±2, 5 V,
            • Transcription factor: 10 mV / pC,
            • Frequency range 5 … 100,000 Hz (depends on the constant current)
              • PCB-422E13

              • Inline charge amplifier,
              • Input range ±2. 500 pC,
              • Output range ±2, 5 V,
              • Transcription factor: 1 mV / pC,
              • Frequency range 5 … 100,000 Hz (depends on the constant current)
                • PCB-422E14

                • Inline charge amplifier,
                • Input range ±25. 000 pC,
                • Output range ±2, 5 V,
                • Transcription factor: 0.1 mV / pC,
                • Frequency range 5 … 100,000 Hz (depends on the constant current)