Philip Harris Vibration Generator

Philip Harris Vibration Generator

B8H30701

Product code: B8H30701

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The Vibration Generator gives mechanical oscillations when fed by signals from an oscillator/A.F. amplifier (e.g. a Power Signal Generator - B8G85793).

The frequency response encompasses the whole of the audio spectrum and beyond. Electrical input is made via two 4mm sockets and the mechanical output is provided by a shaft terminating in a pair of clamping nuts. The locking slider feature allows the generator arm to be fixed to prevent damage. The Vibration Generator can be used in any position, free standing or clamped.

Technical Specifications:

  • Peak-to-peak displacement: Maximum 8mm at 1Hz, diminishes as frequency increases.
  • Frequency range: From D.C. to 10kHz.
  • Coil impedance: 3.5Ω at 50Hz.
  • Maximum carrying load: 150g.
  • Dimensions: Width 100mm x Depth 90mm x Height 95mm.

This generator is ideal for the demonstration of transverse and longitudinal waves, essential topics within GCSE and Key Stage 4 Physics. Encourage deeper student engagement by exploring wave behaviour firsthand.

Required Equipment:

  • Power Signal Generator - B8G85793 (or equivalent).
  • 4mm Leads (two required) - B8R05705.
  • A length of string.

In the absence of the Power Signal Generator, a Bench Signal Generator (PP00057620) together with a Power Amplifier (B8R07696) can alternatively drive this device.

For expanded capabilities, consider the Vibration Generator Accessory Kit (B8H30920) available separately. This includes a variety of accessories designed to broaden your demonstrations to encompass transverse, longitudinal, standing, and 2-Dimensional waves. Alternatively, opt for the comprehensive Vibration Generator Kit (B8R06826), which includes both the generator and accessories.

  • Key Stage 4 Physics - Waves: Understand and explain amplitude, wavelength, and frequency. Relate velocity to frequency and wavelength. Distinguish between transverse and longitudinal waves.
  • GCSE Required Practical: Investigate standing waves, allowing students to observe wave characteristics necessary for GCSE physics curriculum.
  • Ensure the Vibration Generator is powered by an appropriate Power Signal Generator. Alternatively, use a Bench Signal Generator with a Power Amplifier to enhance the signal.
  • For visual guidance on effective utilisation, refer to our dedicated instructional YouTube videos showcasing the Vibration Generator in action.
  • Keep operations smooth by having our spare/replacement armatures set available, ensuring continuous use without disruptions.

Further Information

Age Recommended from
11 Years
Brand
Philip Harris
Coil Impedance
3.5 ohms at 50Hz
Dimensions
(W)100mm x (D)90mm x (H)95mm
Maximum Carrying Weight / Load
150g
Maximum Peak to Peak Displacement
8mm at 1Hz
decreasing with increase in frequency
Product Type
Vibration Generator
Total Frequency Range
D.C. to 10kHz

Documents

-
+

The Vibration Generator gives mechanical oscillations when fed by signals from an oscillator/A.F. amplifier (e.g. a Power Signal Generator - B8G85793).

The frequency response encompasses the whole of the audio spectrum and beyond. Electrical input is made via two 4mm sockets and the mechanical output is provided by a shaft terminating in a pair of clamping nuts. The locking slider feature allows the generator arm to be fixed to prevent damage. The Vibration Generator can be used in any position, free standing or clamped.

Technical Specifications:

  • Peak-to-peak displacement: Maximum 8mm at 1Hz, diminishes as frequency increases.
  • Frequency range: From D.C. to 10kHz.
  • Coil impedance: 3.5Ω at 50Hz.
  • Maximum carrying load: 150g.
  • Dimensions: Width 100mm x Depth 90mm x Height 95mm.

This generator is ideal for the demonstration of transverse and longitudinal waves, essential topics within GCSE and Key Stage 4 Physics. Encourage deeper student engagement by exploring wave behaviour firsthand.

Required Equipment:

  • Power Signal Generator - B8G85793 (or equivalent).
  • 4mm Leads (two required) - B8R05705.
  • A length of string.

In the absence of the Power Signal Generator, a Bench Signal Generator (PP00057620) together with a Power Amplifier (B8R07696) can alternatively drive this device.

For expanded capabilities, consider the Vibration Generator Accessory Kit (B8H30920) available separately. This includes a variety of accessories designed to broaden your demonstrations to encompass transverse, longitudinal, standing, and 2-Dimensional waves. Alternatively, opt for the comprehensive Vibration Generator Kit (B8R06826), which includes both the generator and accessories.

  • Key Stage 4 Physics - Waves: Understand and explain amplitude, wavelength, and frequency. Relate velocity to frequency and wavelength. Distinguish between transverse and longitudinal waves.
  • GCSE Required Practical: Investigate standing waves, allowing students to observe wave characteristics necessary for GCSE physics curriculum.
  • Ensure the Vibration Generator is powered by an appropriate Power Signal Generator. Alternatively, use a Bench Signal Generator with a Power Amplifier to enhance the signal.
  • For visual guidance on effective utilisation, refer to our dedicated instructional YouTube videos showcasing the Vibration Generator in action.
  • Keep operations smooth by having our spare/replacement armatures set available, ensuring continuous use without disruptions.

Further Information

Age Recommended from
11 Years
Brand
Philip Harris
Coil Impedance
3.5 ohms at 50Hz
Dimensions
(W)100mm x (D)90mm x (H)95mm
Maximum Carrying Weight / Load
150g
Maximum Peak to Peak Displacement
8mm at 1Hz
decreasing with increase in frequency
Product Type
Vibration Generator
Total Frequency Range
D.C. to 10kHz

Documents

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