Web Analytics
Datasheet 搜索 > 微控制器 > Silicon Labs(芯科) > EFM32PG1B100F256GM32-B0R 数据手册 > EFM32PG1B100F256GM32-B0R 其他数据使用手册 6/101 页
EFM32PG1B100F256GM32-B0R
0
导航目录
EFM32PG1B100F256GM32-B0R数据手册
Page:
of 101 Go
若手册格式错乱,请下载阅览PDF原文件
3.5 Counters/Timers and PWM
3.5.1 Timer/Counter (TIMER)
TIMER peripherals keep track of timing, count events, generate PWM outputs and trigger timed actions in other peripherals through the
PRS system. The core of each TIMER is a 16-bit counter with up to 4 compare/capture channels. Each channel is configurable in one
of three modes. In capture mode, the counter state is stored in a buffer at a selected input event. In compare mode, the channel output
reflects the comparison of the counter to a programmed threshold value. In PWM mode, the TIMER supports generation of pulse-width
modulation (PWM) outputs of arbitrary waveforms defined by the sequence of values written to the compare registers, with optional
dead-time insertion available in timer unit TIMER_0 only.
3.5.2 Real Time Counter and Calendar (RTCC)
The Real Time Counter and Calendar (RTCC) is a 32-bit counter providing timekeeping in all energy modes. The RTCC includes a
Binary Coded Decimal (BCD) calendar mode for easy time and date keeping. The RTCC can be clocked by any of the on-board oscilla-
tors with the exception of the AUXHFRCO, and it is capable of providing system wake-up at user defined instances. The RTCC in-
cludes 128 bytes of general purpose data retention, allowing easy and convenient data storage in all energy modes.
3.5.3 Low Energy Timer (LETIMER)
The unique LETIMER is a 16-bit timer that is available in energy mode EM2 Deep Sleep in addition to EM1 Sleep and EM0 Active. This
allows it to be used for timing and output generation when most of the device is powered down, allowing simple tasks to be performed
while the power consumption of the system is kept at an absolute minimum. The LETIMER can be used to output a variety of wave-
forms with minimal software intervention. The LETIMER is connected to the Real Time Counter and Calendar (RTCC), and can be con-
figured to start counting on compare matches from the RTCC.
3.5.4 Ultra Low Power Wake-up Timer (CRYOTIMER)
The CRYOTIMER is a 32-bit counter that is capable of running in all energy modes. It can be clocked by either the 32.768 kHz crystal
oscillator (LFXO), the 32.768 kHz RC oscillator (LFRCO), or the 1 kHz RC oscillator (ULFRCO). It can provide periodic Wakeup events
and PRS signals which can be used to wake up peripherals from any energy mode. The CRYOTIMER provides a wide range of inter-
rupt periods, facilitating flexible ultra-low energy operation.
3.5.5 Pulse Counter (PCNT)
The Pulse Counter (PCNT) peripheral can be used for counting pulses on a single input or to decode quadrature encoded inputs. The
clock for PCNT is selectable from either an external source on pin PCTNn_S0IN or from an internal timing reference, selectable from
among any of the internal oscillators, except the AUXHFRCO. The module may operate in energy mode EM0 Active, EM1 Sleep, EM2
Deep Sleep, and EM3 Stop.
3.5.6 Watchdog Timer (WDOG)
The watchdog timer can act both as an independent watchdog or as a watchdog synchronous with the CPU clock. It has windowed
monitoring capabilities, and can generate a reset or different interrupts depending on the failure mode of the system. The watchdog can
also monitor autonomous systems driven by PRS.
3.6 Communications and Other Digital Peripherals
3.6.1 Universal Synchronous/Asynchronous Receiver/Transmitter (USART)
The Universal Synchronous/Asynchronous Receiver/Transmitter is a flexible serial I/O module. It supports full duplex asynchronous
UART communication with hardware flow control as well as RS-485, SPI, MicroWire and 3-wire. It can also interface with devices sup-
porting:
ISO7816 SmartCards
IrDA
I
2
S
3.6.2 Low Energy Universal Asynchronous Receiver/Transmitter (LEUART)
The unique LEUART
TM
provides two-way UART communication on a strict power budget. Only a 32.768 kHz clock is needed to allow
UART communication up to 9600 baud. The LEUART includes all necessary hardware to make asynchronous serial communication
possible with a minimum of software intervention and energy consumption.
EFM32PG1 Data Sheet
System Overview
silabs.com | Smart. Connected. Energy-friendly. Rev. 1.1 | 5

EFM32PG1B100F256GM32-B0R 数据手册

Silicon Labs(芯科)
94 页 / 0.92 MByte
Silicon Labs(芯科)
953 页 / 6.44 MByte
Silicon Labs(芯科)
101 页 / 1.75 MByte

EFM32PG1B100F256GM32B0 数据手册

Silicon Labs(芯科)
EFM32 Pearl Gecko 微控制器系列,Silicon LabsSilicon Labs EFM32 Pearl Gecko 微控制器具有强大的 32 位 ARM Cortex-M4 内核。 它们提供各种外设,尤其是其独特的加密硬件引擎,支持 AES、ECC 和 SHA。 具有低电流有源模式和短唤醒时间,Jade Gecko 微控制器特别适用于电池供电应用和其他低能量系统。 Jade 和 Pearl Gecko 微控制器系列均使用相同的开发套件(SLSTK3401A,RS 922-4814)。**特点** \- ARM Cortex-M4 MCU 内核以 40 MHz 运行 \- 32 kB RAM \- 温度传感器 \- 2 16 位计时器 \- 2 个比较器 \- AES-128、AES-256、ECC、SHA-1 和 SHA-2 加密 \- UART \- 2 SPI \- I2C **应用** \- IoT 设备和传感器 \- 健康和健身跟踪仪 \- 智能附件 \- 家庭、工业和工厂自动化及安全 ### EFM32 Gecko 微控制器Silicon Labs 微控制器主要针对能量敏感应用,包括智能计量、气体/能量/水测量、远程感应、楼宇自动化、安全系统、便携式健康/健身俱乐部设备和智能附件。强大的 ARM Cortex-M 32 位处理器内核 节能模式中短的唤醒时间 特别适合与能量采集系统一起使用
Silicon Labs(芯科)
器件 Datasheet 文档搜索
器件加载中...
AiEMA 数据库涵盖高达 72,405,303 个元件的数据手册,每天更新 5,000 多个 PDF 文件