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ATmega165P Datenblatt(PDF) 3 Page - ATMEL Corporation |
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ATmega165P Datenblatt(HTML) 3 Page - ATMEL Corporation |
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3 / 16 page ![]() LOW POWER TECHNIQUES FOR MICROCONTROLLERS 3 7903A – AVR – 2006/02 Introduction to Power Consumption of MCUs Why is Low Power Important? In the same way that fuel consumption is important in everything from scooters to oil tankers, power consumption is a key parameter in most electronics applications. The most obvious applications for which power consumption is critical are battery-powered applications, such as home thermostats and security systems, in which the battery must last for years. Low power also leads to smaller power supplies, less expensive batteries, and enables products to be powered by signal lines (such as fire alarm wires) lowering the cost of the end-product. As a result, low power consumption has become a key parameter of microcontroller designs. Low Power Parameters Although power consumption is the product of operating voltage (Vcc) multiplied by the current consumption (Icc), current consumption is usually the only measure considered when describing the power characteristics of a chip. This is a mistake because decreasing the operating voltage directly reduces the current consumption and the overall power drain. Current consumption increases directly with the system clock frequency so keeping the system clock as low as possible is critical to keeping power consumption down. The clock frequency is affected by a number of factors that include the microcontroller’s surroundings and peripheral set as well as the architecture and the instruction set. RISC microcontrollers typically execute in a single clock cycle but some architectures divide the clock down in the same way as CISC architectures do before feeding it to the CPU. This situation leads to confusion about what clock frequency is really required to execute the target application. Designers should pay close attention to the Instruction set architecture when reading the current consumption numbers in a microcontroller’s datasheet. Most datasheets provide power consumption numbers for the microcontroller with no peripherals running. The additional current drawn by the peripherals must be taken into account since all MCUs have peripherals and their contribution to power drain can be significant. Temperature is another factor. Since higher temperatures lead to higher power consumption, designers should always consider the power numbers for worst-case temperatures. Active versus Sleep In many applications, the processor does not run continuously and peripherals may be idle much of the time. The overall power consumption can be lowered by taking advantage of various “sleep” modes available on virtually all processors. The most common sleep modes are Power Down” (PWD), Power Save (PS) and Idle. In Power Down mode everything is shut down, including the clock source. In Power Save mode everything is turned off except a 32 kHz clock running from a crystal to keep track of |
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