
Allicdata Part #: | TC1303A-RI1EMFTR-ND |
Manufacturer Part#: |
TC1303A-RI1EMFTR |
Price: | $ 0.76 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Microchip Technology |
Short Description: | IC REG DL BUCK/LINEAR SYNC 10DFN |
More Detail: | Linear And Switching Voltage Regulator IC 2 Output... |
DataSheet: | ![]() |
Quantity: | 1000 |
3300 +: | $ 0.68784 |
Voltage/Current - Output 3: | -- |
Base Part Number: | TC1303A |
Supplier Device Package: | 10-DFN (3x3) |
Package / Case: | 10-VFDFN Exposed Pad |
Mounting Type: | Surface Mount |
Operating Temperature: | -40°C ~ 85°C |
Voltage - Supply: | 2.7 V ~ 5.5 V |
w/Sequencer: | Yes |
w/Supervisor: | No |
w/LED Driver: | No |
Series: | -- |
Voltage/Current - Output 2: | 2.5V, 300mA |
Voltage/Current - Output 1: | 1.6V, 500mA |
Frequency - Switching: | 2MHz |
Number of Outputs: | 2 |
Function: | Any Function |
Topology: | Step-Down (Buck) Synchronous (1), Linear (LDO) (1) |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
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TC1303A-RI1EMFTR application field and working principle
The TC1303A-RI1EMFTR multi-phase PMICs are optimised for use in high-current and high-efficiency applications, like computers, game consoles and other digital systems. These devices consist of multiple voltage regulator modules (VRMs), each of which includes a controller, joined to a switching regulator component, such as a buck, boost, or synch buck. Each VRM may have one or more phases combined to form a multi-phase VRM, allowing higher current output.
The TC1303A-RI1EMFTR multi-phase PMICs have a variety of features that make it a suitable choice for many applications. These include low voltage cutoff, adjustable switching frequency, adjustable current sensing, sleep mode support, temperature and over-current protection, and over-voltage protection, among others.
The TC1303A-RI1EMFTR is an advanced, flexible, and configurable linear and switching regulator which is designed to provide consistent and reliable power. It helps reduce system cost, power consumption and complexity. The TC1303A-RI1EMFTR is compatible with industry-standard architectures, such as the VIA Technologies VIA Mobii SOCs, Intel Coffee Lake and Kaby Lake processors, and AMD Ryzen processors.
The working principle of the TC1303A-RI1EMFTR is as follows. It first uses an input voltage to charge an inductor. The stored energy is then used to generate an output voltage which is regulated to the desired level by a closed loop control system. This control system uses error amplifiers to compare the output voltage to the reference. If the output voltage is lower than the reference, then the system increases the output voltage; if the output voltage is higher than the reference, then the system decreases the output voltage.
The TC1303A-RI1EMFTR offers a wide input voltage range making it suitable for a variety of applications. Its multi-phase design allows for high efficiency and improved power delivery. The device also features programmable parameters such as switching frequency, current limit, and voltage limit. The chip supports a variety of features such as over-voltage protection, under-voltage protection, over-current protection, temperature protection and sleep mode.
The TC1303A-RI1EMFTR is suitable for a wide range of applications, from consumer electronics to automotive applications. Its features make it an ideal choice for reducing system costs and power consumption, in addition to providing reliable power delivery. Its wide input voltage range and multiple output settings make it suitable for a variety of applications, and its multi-phase design allows for high efficiency and improved power delivery.
In summary, the TC1303A-RI1EMFTR multi-phase PMIC is optimised for high-current and high-efficiency applications, and its features make it highly suitable for reducing system costs and power consumption, while providing reliable power delivery. This device includes adjustable current sensing, sleep mode support, temperature and over-current protection, and over-voltage protection, among others. Its multi-phase design allows for high efficiency and improved power delivery, making it a perfect choice for a variety of applications.
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