The CMR2-10 TR13 belongs to the category of electronic components and specifically falls under the classification of capacitors.
It is primarily used for energy storage and power conditioning in various electronic circuits and devices.
The CMR2-10 TR13 is typically available in a standard radial leaded package.
This component serves as a crucial element in stabilizing and regulating electrical currents within electronic systems.
The CMR2-10 TR13 is commonly packaged in reels or trays, with quantities varying based on manufacturer specifications.
The CMR2-10 TR13 features a standard radial lead configuration with two leads emerging from the bottom of the capacitor.
The CMR2-10 TR13 operates based on the principles of energy storage and charge/discharge cycles within the tantalum capacitor structure. When connected in a circuit, it stores and releases electrical energy as needed, contributing to the stabilization and filtering of the overall system.
The CMR2-10 TR13 finds extensive use in various electronic devices and systems, including: - Power supply units - Audio amplifiers - Signal processing circuits - Industrial control systems - Automotive electronics
Some alternative models to the CMR2-10 TR13 include: - KEMET T491 Series - AVX TAJ Series - Panasonic ECJ Series - Vishay Sprague 293D Series
In conclusion, the CMR2-10 TR13 capacitor offers high capacitance and reliable performance, making it a valuable component in numerous electronic applications.
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What is CMR2-10 TR13?
What types of pressure vessels does CMR2-10 TR13 apply to?
What are the key design requirements outlined in CMR2-10 TR13?
How does CMR2-10 TR13 address quality control during the manufacturing process?
Are there specific inspection and testing procedures mandated by CMR2-10 TR13?
Does CMR2-10 TR13 require certification or approval from regulatory authorities?
What are the consequences of non-compliance with CMR2-10 TR13?
How does CMR2-10 TR13 address the issue of pressure vessel maintenance and repair?
Are there any specific considerations for transporting pressure vessels in accordance with CMR2-10 TR13?
Where can I find additional resources or guidance on interpreting and implementing CMR2-10 TR13?