RP130Q251D-TR-FE Product Introduction:
RICOH Electronic Devices Co., LTD. Part Number RP130Q251D-TR-FE(PMIC - Voltage Regulators - Linear), developed and manufactured by RICOH Electronic Devices Co., LTD., distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
RP130Q251D-TR-FE is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately sales@jinftry.com Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
Introducing the RP130Q251D-TR-FE, a cutting-edge product from RICOH Electronic Devices Co., LTD. This high-performance voltage regulator offers a wide input voltage range and exceptional output accuracy, making it an ideal choice for a variety of applications.
One of the standout features of the RP130Q251D-TR-FE is its low dropout voltage, which ensures stable operation even in low voltage conditions. With a dropout voltage as low as 160mV at 300mA, this voltage regulator is perfect for battery-powered devices, where maximizing battery life is crucial.
Furthermore, the RP130Q251D-TR-FE boasts a high output voltage accuracy of ±1%, ensuring precise and reliable power supply to sensitive electronic components. This level of accuracy is particularly beneficial in applications such as industrial automation, telecommunications, and consumer electronics.
Designed with efficiency in mind, the RP130Q251D-TR-FE features a low quiescent current of only 45µA, minimizing power consumption and heat dissipation. This makes it an excellent choice for energy-conscious applications, such as smart home devices and wearable technology.
With its compact size and robust design, the RP130Q251D-TR-FE is easy to integrate into various electronic systems. Its wide operating temperature range of -40°C to +85°C further enhances its versatility, allowing it to perform reliably in harsh environments.
In summary, the RP130Q251D-TR-FE from RICOH Electronic Devices Co., LTD. is a high-performance voltage regulator that offers exceptional output accuracy, low dropout voltage, and low quiescent current. With its wide range of applications, this product is a reliable and efficient solution for powering electronic devices in various industries.
Voltage Regulators-Linear is an electronic device used to convert an unstable DC voltage into a stable DC voltage. It regulates the voltage through an active component (such as a transistor or field effect tube) and a feedback network to ensure that the output voltage remains constant within a certain range. Linear regulators usually operate under low input voltage changes and load changes, and are able to provide a very clean and smooth output voltage.
Application
Voltage Regulators-Linear has a wide range of applications, covering almost all electronic devices requiring a stable DC power supply. In the field of consumer electronics, linear voltage regulators are widely used in mobile phones, tablets, laptops and other portable devices to provide stable voltage support for core components such as processors, memory and display screens. In the field of industrial automation and instrumentation, linear voltage regulators are often used in precision measuring instruments, sensor signal processing and other occasions because of their low noise and high precision characteristics. In addition, linear regulators also play an indispensable role in areas such as medical equipment, aerospace, and automotive electronics, where the quality of the power supply is extremely high. For example, in medical equipment, linear regulators ensure the power stability of devices such as pacemakers and monitors, ensuring the safety of patients.
FAQ about PMIC - Voltage Regulators - Linear
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1. What are the disadvantages of linear regulators?
The disadvantage of linear regulators is that they are not efficient and can only be used in voltage reduction applications. The efficiency of a linear regulator depends on the ratio of output voltage to input voltage: turbidity = Vo: Vi. For example, for ordinary linear regulators, when the input voltage is 5V and the output voltage is 2.5V, the efficiency is only 50%. For ordinary linear regulators, about 50% of the electrical energy is converted into "heat" and lost, which is also the main reason why ordinary linear regulators are prone to heat when working. For LDO, due to its low voltage difference, the efficiency is much higher. For example, when the input voltage is 3.3V and the output voltage is 2.5V, its efficiency can reach 76%. Therefore, in LCD color TVs, in order to improve the utilization rate of electrical energy, ordinary linear regulators are used less, while LDOs are used more.
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2. When should a linear regulator be used instead of a switching regulator?
In low-power and low-frequency application scenarios, a linear regulator should be used instead of a switching regulator.
Linear regulator Suitable for low-power and low-frequency applications, with simple circuit structure, low noise and good stability. They control the output voltage of the transistor through a current amplifier to keep the output voltage stable. This working mode makes linear regulators perform well in low-power and low-frequency applications, although they are less efficient and generate more heat, and their application range is limited. In contrast, switching regulators use high-frequency pulse modulation technology to convert input voltage into a stable output voltage. They have the advantages of high efficiency, small size and fast response, and are suitable for high-power and high-frequency applications. Therefore, when the application requirements are not the main considerations for circuit complexity and cost, but have high requirements for the stability and
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3. Do linear regulators need capacitors?
Linear regulators usually require capacitors.
The working principle and design requirements of linear regulators determine that they usually require capacitors to ensure stable operation. These capacitors are mainly used to filter and stabilize the output voltage, help reduce output ripple and noise, and thus improve the stability and reliability of the power supply.
Specifically:
1. Input and output capacitors: Linear regulators usually require one or more input capacitors and one output capacitor. These capacitors help smooth the input and output voltages, reduce voltage fluctuations, and thus provide a stable output voltage.
2. Power supply rejection capability: The power supply rejection capability of a linear regulator is an important indicator, which is related to whether it can effectively suppress unwanted signals and avoid interference with the output voltage. If the power supply rejection capability is poor, unnecessary signals may be left behind, affecting the purity of