Tantalum Capacitors
T498X476M035ZTE500 is part of the tantalum capacitor series. As one of the most common components used in electronic circuits, tantalum capacitors are great for boosting the signal, storing electrical energy, and providing output current.
The T498X476M035ZTE500 is actually two capacitors in one package. The two capacitors are wired in series and share a common cathode connection. The two capacitors have a combined capacitance value of 4.76μF and a voltage rating of 35 volts. The T498X476M035ZTE500 is rated for a working temperature range from -55℃ to 125℃.
Application Field and Working Principle
Tantalum capacitors are widely used for a variety of applications, including bypassing and coupling, DC blocking, energy storage, and noise filtering. The most common application of tantalum capacitors is bypassing, which allows current to bypass a signal line and thus reduce noise or improve the performance of the circuit.
In terms of working principle, tantalum capacitors are constructed by using tantalum metal as the anode, a dielectric layer for insulation, and a manganese dioxide cathode. This combination creates an effective storage and release of energy, as well as providing a stable electrical behavior. When an alternating current is applied, the two capacitors in the T498X476M035ZTE500 device work in parallel, creating a higher capacitance than each capacitor alone would have.
Since tantalum capacitors have a high capacitance, they are able to maintain a stable output voltage even when faced with fluctuating input currents. This makes them ideal for applications that require reliable output voltage levels, such as in power supplies or active filters.
Tantalum capacitors can also be used for filtering applications, as they can effectively block the higher frequency components in a signal. This is essential in many environments, such as automotive systems, where noise and interference can cause malfunctioning of the system. The high capacitance of T498X476M035ZTE500 makes it ideal for such applications.
Finally, because of its small size, the T498X476M035ZTE500 is also suitable for use in even the tightest spaces. This allows it to be used even in the most complex circuits, where space saving is critical.
In summary, the T498X476M035ZTE500 is an ideal component for applications where high capacitance, low cost, and space saving are needed. It is well suited for bypassing and coupling, filtering and noise reduction, and DC blocking applications.