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Standa 2008

Standa 2008
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Standa 2008

Product catalog summary

1. Vibration Isolation Systems

This section covers isolators (Model 1VIS95) and honeycomb table tops (Model 1HT08-20-20) used for precision equipment vibration control. Frequency response curves demonstrate isolation performance from 1 Hz to 210 Hz, highlighting resonance peaks and attenuation effectiveness. Vertical transmissibility data for honeycomb table tops shows reduced vibration transmission. Air reservoir design parameters, including dimensions and volume, are detailed to optimize isolation tuning.

Key Points:

  • Isolators provide significant vibration attenuation above resonance frequencies.
  • Honeycomb structures reduce vertical vibration transmission.
  • Air pressure in reservoirs influences isolation efficiency.

2. Mechanical Fasteners and Assembly Components

The document specifies screw sizes (primarily M6 and M4), hole diameters (e.g., Ø4.5 mm, Ø10 mm), and hole counts for mounting and assembly. It details clearance holes, slots, and lever mechanisms for spring-loaded clips, emphasizing precise dimensions and positioning for secure fastening.

Key Points:

  • Clearance holes are sized to accommodate screw tolerances and ease assembly.
  • Spring-loaded clip levers require accurate hole alignment.
  • Multiple hole patterns ensure mechanical stability.

3. Optical and Mechanical Component Specifications

Includes detailed dimensions for optical mounts and rotation devices, such as diameters (Ø23 mm, Ø25.4 mm), thread sizes (M27x1), and rotation ranges (0° to 340° or 360°). Assembly instructions cover use of M4 and M6 screws, retaining rings, and removable rods for precise adjustment. Emphasis is placed on alignment, locking mechanisms, and torque specifications.

Key Points:

  • Precise mechanical tolerances critical for optical performance.
  • Rotation mounts include scales and locking screws for stability.
  • Use of specified fasteners ensures assembly integrity.

4. Electrical and Motor Integration

Details a DC motor with encoder, including mounting hole sizes (M4, M6), hole spacing, and connector pinouts. Assembly instructions emphasize correct orientation, secure fixing, and wiring practices to maintain motor and encoder functionality.

Key Points:

  • Mounting holes and spacing must be strictly followed.
  • Connector wiring critical for electrical performance.
  • Use appropriate screw sizes to avoid damage.

5. Hardware Connectors and Power Interfaces

Describes PCI connectors, power supply interfaces, motor connectors, and reset functions within PC or embedded systems. Voltage levels (5V, 40V) and grounding practices are noted. Pass-through connectors enable modular device chaining.

Key Points:

  • Proper wiring and grounding essential for safety and function.
  • Pass-through connectors require careful handling to maintain signal integrity.
  • Reset and motor connectors must be correctly configured.

6. Mechanical Component Standards and Testing

Provides dimensional data for fasteners and connectors, including diameters (1.0 mm to 12 mm), lengths, thread sizes (M6, M10, M12), and tolerances. Testing procedures ensure thread integrity and dimensional accuracy, adhering to ISO or DIN standards.

Key Points:

  • Strict adherence to dimensional tolerances is mandatory.
  • Testing protocols maintain product reliability.
  • Compliance with international standards ensures interoperability.

7. Optical Component Specifications

Focuses on optical parts such as pinhole adapters, microscope objectives, and fixing rings. Dimensions and tolerances are critical for optical alignment. Assembly instructions emphasize proper installation to maintain optical axis integrity.

Key Points:

  • Dimensional precision is vital for optical performance.
  • Use of adapters and alignment tools recommended.
  • Handling procedures to preserve component integrity.

8. Optical Transmission Filters

Details transmission coefficients and attenuation (dB) for filters arranged in wheels. Filter types include short wave pass and long wave pass with specified cut-on/off wavelengths. Mechanical mounting details support integration into optical systems.

Key Points:

  • Transmission decreases with higher filter numbers, increasing attenuation.
  • Cut-on/off wavelengths define spectral filtering ranges.
  • Mechanical mounting holes (e.g., M6) critical for installation.

9. Mechanical and Optical Assembly with Magnetic Drive Pumps

Describes components such as magnetic drive pumps, reservoirs, rubber sealing rings, and optical lenses (expander and collimating). Assembly procedures include alignment, sealing, and tightening sequences. Material compatibility and dimensional tolerances are emphasized.

Key Points:

  • Rubber rings used for sealing to prevent leaks.
  • Precise alignment of optical lenses required.
  • Assembly sequences critical to avoid damage.

Critical Notes and Limitations

  • Several sections of the document are corrupted or contain fragmented text, limiting full extraction of procedural details.
  • Some data tables and diagrams are referenced but not fully accessible.
  • Users should consult original or clean versions for complete technical information.

Overall Summary

This comprehensive technical document encompasses multiple domains including vibration isolation, mechanical fastening, optical component assembly, electrical motor integration, and hardware interfacing. It provides detailed specifications, dimensional data, assembly instructions, and best practice recommendations essential for precision engineering applications. Despite some corrupted content, the extracted information supports informed engineering decisions in mechanical, optical, and electromechanical system design and assembly.

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.