
( Brand: Cps ), ( Model: 130N/1314 ), ( Part Type: Supply )
Experience the pinnacle of electron microscopy with our High-Voltage Power Supply Chassis (Model 130n-1314 CPS). This robust and sophisticated power supply chassis is specifically designed for electron microscopes, offering a stable and reliable power source for your explorations in the microscopic realm.
Equipped with a high voltage of 30kV, this power supply chassis allows for detailed examination of a wide range of samples, from organic materials to inorganic compounds. With a current handling capacity of 500 A, it ensures precise and clear images, even for samples with high current demands.
The 130n-1314 CPS power supply chassis operates at a frequency of 130nC/pulse and a pulse repetition rate of 1314 pulses per second, providing a consistent and stable power output for your microscope. This ensures that your electron microscope performs consistently, delivering high-quality images, even during prolonged use.
This power supply chassis is built with high-quality components, ensuring durability and longevity. It is designed to withstand the demands of heavy-duty electron microscopy, providing you with a reliable partner for your scientific endeavors.
In summary, the 130n-1314 CPS power supply chassis is a high-performance, robust, and reliable solution for your electron microscope. Whether you're a seasoned professional or a curious enthusiast, this power supply chassis will help unlock the secrets of the microscopic world, one image at a time.
1. High Voltage (30kV): This power supply offers a high voltage, which is suitable for imaging a wide range of samples, including thicker specimens.
2. Current Capacity (500uA): The current capacity of 500uA ensures adequate power for detailed imaging, especially for low-contrast samples.
3. Counts per Second (cps): The power supply's high count rate (130n-1314 cps) indicates a fast data acquisition rate, reducing the time required for imaging.
4. Potential for Advanced Applications: The high voltage and current capacity make this power supply suitable for more advanced electron microscopy techniques such as Electron Energy Loss Spectroscopy (EELS) and Electron Diffraction.
Cons:1. Cost: Given the high-performance features, the power supply may be expensive compared to lower-specification models.
2. Power Consumption: Due to the high voltage and current, this power supply may consume more power, leading to increased operational costs.
3. Complexity: High-performance electron microscopy equipment often requires a degree of technical expertise to operate and maintain, which may be a barrier for some users.
Conclusion:The 30kV Electron Microscope Power Supply Chassis (130n-1314 cps) offers several advantages, including a high voltage, significant current capacity, and fast data acquisition rate, making it suitable for a wide range of electron microscopy applications. However, its cost, power consumption, and complexity may be potential drawbacks for some users.
Recommendation:If you require a high-performance electron microscope for advanced applications and have the necessary budget and technical expertise, this power supply could be a valuable investment. For those with more limited budgets or less experience, it might be more practical to consider lower-specification power supplies that offer a more manageable cost and complexity. Always ensure to research and compare different models to find the best fit for your specific needs.
Also see Cps' model 130Nf for applications in which the grounding wire must be separated from case. It is being offered with the electron optics. It is a Cps brand 0-30kv ua. Model 130N is ideal for system component or laboratory use in applications requiring a highly stable, regulated, low-noise source of high voltage power.
Typical applications include focused ion beam machines, electron microscopes, and electron-beam lithography. Cps also removes from the 130Nf 1314 built-in metering capabilities of 130N. Offer is for a electron gun power supply pulled from working microscope. Many years of experience in encapsulation high voltage components have resulted compact packaging without compromising performance or reliability.
Power chassis that it is mounted in. All designs incorporate short-circuit and arc protection. Features include remote programming, ripple under 200 MTV, and a wide range of precision ultra-precision configurations available for system laboratory use.