
Allicdata Part #: | 199D475X9035C7V1E3-ND |
Manufacturer Part#: |
199D475X9035C7V1E3 |
Price: | $ 0.36 |
Product Category: | Capacitors |
Manufacturer: | Vishay Sprague |
Short Description: | CAP TANT 4.7UF 35V 10% RADIAL |
More Detail: | 4.7µF Conformal Coated Tantalum Capacitors 35V Rad... |
DataSheet: | ![]() |
Quantity: | 1000 |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
500 +: | $ 0.32934 |
Operating Temperature: | -55°C ~ 125°C |
Failure Rate: | -- |
Features: | General Purpose |
Manufacturer Size Code: | C |
Lead Spacing: | 0.250" (6.35mm) |
Height - Seated (Max): | 0.458" (11.64mm) |
Size / Dimension: | 0.217" Dia (5.50mm) |
Package / Case: | Radial |
Mounting Type: | Through Hole |
Lifetime @ Temp.: | 1000 Hrs @ 85°C |
Series: | TANTALEX®, 199D |
ESR (Equivalent Series Resistance): | -- |
Type: | Conformal Coated |
Voltage - Rated: | 35V |
Tolerance: | ±10% |
Capacitance: | 4.7µF |
Moisture Sensitivity Level (MSL): | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Packaging: | Bulk |
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Tantalum capacitors are a type of electrolytic capacitor, which are widely used due to their high energy storage. Specifically, the 199D475X9035C7V1E3 is a tantalum capacitor, which is widely used in the electronics industry. This type of capacitor has a number of advantages over traditional capacitors, such as its small size, increased reliability, and improved temperature stability. In this article, we will discuss the application field and working principle of the 199D475X9035C7V1E3.
The 199D475X9035C7V1E3 is a surface-mount capacitor, so it is often used in circuits where space is a premium. It is typically used in high-frequency applications, such as switching power supplies, communication equipment, and stage lighting circuits. The capacitor also has a good frequency characteristic, and excellent surge current capability, making it suitable for use in a wide variety of electronic devices. In addition, the capacitor has a high temperature rating and is therefore able to cope with extreme temperatures, making it suitable for use in both indoor and outdoor environments.
The 199D475X9035C7V1E3 also has an excellent mechanical strength, so it is ideal for use in circuit boards that may be subject to shock or vibration. The capacitor is also highly resistant to the common chemicals found on the production line, meaning it can withstand conditions where conventional capacitors may fail. The capacitor also has a low ESR (equivalent series resistance). This is important for circuits where waveform distortion can be an issue. The capacitor has a high insulation resistance, meaning it is well suited for use in circuits with high voltage differences.
The working principle of the 199D475X9035C7V1E3 is that of a traditional capacitive device. It consists of two metal plates, an anode and a cathode, which are separated by an electrolytic material. When the capacitor is connected to a power source, the potential builds up on the anode, which causes an electric field. This field causes electrons to flow between the anode and the cathode, creating a charge on the capacitor. When the capacitor has a desired voltage, it is said to be charged.
When connected in a circuit, it behaves like an open switch, allowing current to flow from the source to the load. When the circuit is closed, the electrons from the cathode travel to the anode, resulting in a discharge of the capacitor. During this time, the capacitor acts as a short circuit, allowing current to flow back to the source or in an alternating fashion between the anode and cathode. The time it takes for the capacitor to discharge is known as the time constant.
In conclusion, the 199D475X9035C7V1E3 is a tantalum capacitor, which is widely used in the electronics industry due to its small size, increased reliability, and improved temperature stability. The capacitor has a number of advantages over traditional capacitors, and is suitable for use in high-frequency applications, as well as circuits that may be subjected to shock or vibration. The working principle of the capacitor is that of a traditional capacitive device, where two metal plates, an anode and a cathode, are separated by an electrolytic material. When the capacitor is connected to a power source, electrons travel between the anode and cathode, forming a charge on the capacitor. The capacitor acts like an open switch when connected in a circuit, allowing current to flow from the source to the load, and then back to the source or in an alternating fashion.
The specific data is subject to PDF, and the above content is for reference
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