MAXIM TINI? Power SoC Guide

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TINI® Power SoC, highly analog integrated, leaving room for new features in the mobile platform

Technical advantages

  • Integrate power and system functions on a single chip, saving board space, reducing bill of materials, and improving performance.
  • The built-in microcontroller and memory free up the application processor and allow a single design to be used on multiple platforms.
  • High-efficiency power management features extend battery life and reduce heat.
  • A variety of high performance building block modules are available, including advanced IP cores: ModelGaugeTM, FlexSound® and TacTouch®

TINI Power SoC achieves a thinner, lighter smartphone

Integration barriers Thanks to the continuous advancement of CMOS process technology, smart phones are becoming more intelligent. As the process structure is reduced to 40 nm or less, baseband and application processors already include more and more digital functional modules, making smart phones support more and more applications.

Nowadays, consumers are demanding more features in a thinner, lighter form factor, which requires a higher level of integration of smartphones. However, deep sub-micron CMOS processes for integrating digital gates are not suitable for analog/mixed-signal (AMS) functions due to high leakage and noise.

The huge breakthrough of the TINI Power SoC breaks through the barriers to portable platform integration that require a versatile AMS solution. Power, analog, mixed-signal audio and passive components in smartphones and tablet PCs now account for about half of the PCB space. Combining these functional blocks into a single system-on-a-chip (SoC) frees up a lot of space for a variety of new features and high-capacity batteries.

Maxim's TINI Power SoC leverages the combined advantages of AMS modular modules to deliver optimum performance with minimal footprint. They integrate all of the DC-DC and linear regulators needed to power applications and baseband processors, as well as functional modules such as audio codecs, touch screen controllers, and battery management. It can also include a microcontroller and memory to free up the application processor through transaction management functions. The built-in microcontroller also offers cross-platform and repetitive design flexibility (via firmware updates).

Maxim's patented BCD process technology integrates any number of AMS modules for optimal performance and optimal integration. With power SoCs, users can break through the integrated barrier with smaller, lower cost, more feature-rich solutions.

TINI Power SoC Solution

TINI Power SoC Solution

TINI power SoC internal block diagram

TINI power SoC internal block diagram

Success Story: Powering Applications and Baseband Processors

Success Story: Powering Applications and Baseband Processors

Complete and complete high performance building block module


Complete and complete high performance building block module

TINI power supply module description

TINI power supply module description

See the PDF document for more details.

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