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- LMK04806BISQE/NOPB - 集成电路(IC) > 时钟/定时 > 时钟发生器,PLL,频率合成器
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- TPS3870J4330DSERQ1 - 集成电路(IC) > 电源管理(PMIC) > 监控器
- TPS62240DDCRG4 - 集成电路(IC) > 电源管理(PMIC) > 稳压器 - DC-DC 开关稳压器
- TPS77725PWPR - 集成电路(IC) > 电源管理(PMIC) > 稳压器 - 线性
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- TRSF3238IDBG4 - 接口 - 驱动器,接收器,收发器
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- TPS2226DB - 集成电路(IC) > 电源管理(PMIC) > 配电开关,负载驱动器
- INA157UA - 集成电路(IC) > 线性 > 放大器 > 仪器,运算放大器,缓冲器
- LMV715IDBVR - 集成电路(IC) > 线性 > 放大器 > 仪器,运算放大器,缓冲器
- TLC1078ID - 集成电路(IC) > 线性 > 放大器 > 仪器,运算放大器,缓冲器
- DAC9881SBRGER - 集成电路(IC) > 数据采集 > 数模转换器(DAC)
- TPS274C65ASRHAR - 集成电路(IC) > 电源管理(PMIC) > 配电开关,负载驱动器
- INA190A2IRSWT - 集成电路(IC) > 线性 > 放大器 > 仪器,运算放大器,缓冲器
- OPA2344EA/2K5G4 - 集成电路(IC) > 线性 > 放大器 > 仪器,运算放大器,缓冲器



MSP430F4491 - 16 位超低功耗微处理器,具有 60kB 闪存、2048B RAM、比较器、2 个 USART、HW 乘法器和 160 段 LCD
MSP430F4491是TI德州仪器公司的一款超低功耗产品,MSP430F4491是16 位超低功耗微处理器,具有 60kB 闪存、2048B RAM、比较器、2 个 USART、HW 乘法器和 160 段 LCD,本站介绍了MSP430F4491的封装应用图解、特点和优点、功能等,并给出了与MSP430F4491相关的TI元器件型号供参考。
MSP430F4491 - 16 位超低功耗微处理器,具有 60kB 闪存、2048B RAM、比较器、2 个 USART、HW 乘法器和 160 段 LCD - 超低功耗 - 低功耗MCU - 德州仪器
The Texas Instruments MSP430 family of ultralow power microcontrollers consists of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with five low-power modes, is optimized to achieve extended battery life in portable measurement applications. The devices feature a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows wake-up from low-power modes to active mode in less than 6 µs.
The MSP430x43x(1) and the MSP430x44x(1) series are microcontroller configurations with two built-in 16-bit timers, a fast 12-bit A/D converter (not implemented on the MSP430F43x1 and MSP430F44x1 devices), one or two universal serial synchronous/asynchronous communication interfaces (USART), 48 I/O pins, and a liquid crystal driver (LCD) with up to 160 segments.
Typical applications include sensor systems that capture analog signals, convert them to digital values, and process and transmit the data to a host system, or process this data and display it on a LCD panel. The timers make the configurations ideal for industrial control applications such as ripple counters, digital motor control, EE-meters, hand-held meters, etc. The hardware multiplier enhances the performance and offers a broad code and hardware-compatible family solution.
- Low Supply-Voltage Range, 1.8 V to 3.6 V
- Ultralow-Power Consumption:
- Active Mode: 280 µA at 1 MHz, 2.2 V
- Standby Mode: 1.1 µA
- Off Mode (RAM Retention): 0.1 µA
- Five Power Saving Modes
- Wake-Up From Standby Mode in Less Than 6 µs
- 16-Bit RISC Architecture, 125-ns Instruction Cycle Time
- 12-Bit A/D Converter With Internal Reference, Sample-and-Hold and Autoscan Feature
- 16-Bit Timer_B With Three(1) or Seven(2) Capture/Compare-With-Shadow Registers
- 16-Bit Timer_A With Three Capture/Compare Registers
- On-Chip Comparator
- Serial Communication Interface (USART), Select Asynchronous UART or Synchronous SPI by Software:
- Two USARTs (USART0, USART1)(1)
- One USART (USART0)(2)
- Brownout Detector
- Supply Voltage Supervisor/Monitor With Programmable Level Detection
- Serial Onboard Programming, No External Programming Voltage Needed Programmable Code Protection by Security Fuse
- Integrated LCD Driver for up to 160 Segments
- Bootstrap Loader
- Family Members Include:
- MSP430F435, MSP430F4351(3):
- 16KB+256B Flash Memory
- 512B RAM
- MSP430F436, MSP430F4361(3):
- 24KB+256B Flash Memory
- 1KB RAM
- MSP430F437, MSP430F4371(3):
- 32KB+256B Flash Memory
- 1KB RAM
- MSP430F447:
- 32KB+256B Flash Memory
- 1KB RAM
- MSP430F448, MSP430F4481(3):
- 48KB+256B Flash Memory
- 2KB RAM
- MSP430F449, MSP430F4491(3):
- 60KB+256B Flash Memory
- 2KB RAM
- MSP430F435, MSP430F4351(3):
- For Complete Module Descriptions, See The MSP430x4xx Family Users Guide, Literature Number SLAU056
(1) MSP430F43x, and MSP430F43x1 devices (2) MSP430F44x, and MSP430F44x1 devices (3) The MSP430F43x1 and MSP430F44x1 devices are identical to the MSP430F43x and MSP430F44x devices, respectively with the exception that the ADC12 module is not implemented.
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