Technical Document
Specifications
Brand
Texas InstrumentsFamily Name
MSP430
Package Type
TSSOP
Mounting Type
Surface Mount
Pin Count
28
Device Core
MSP430
Data Bus Width
16bit
Program Memory Size
256 B, 8 kB
Maximum Frequency
8MHz
RAM Size
256 B
USB Channels
0
Number of PWM Units
1 x 16 bit
Number of SPI Channels
1
Number of USART Channels
1
Number of UART Channels
1
Number of I2C Channels
0
Typical Operating Supply Voltage
1.8 → 3.6 V
Number of CAN Channels
0
Minimum Operating Temperature
-40 °C
Height
1.05mm
Number of LIN Channels
0
Dimensions
9.8 x 4.5 x 1.05mm
Program Memory Type
Flash
Number of Ethernet Channels
0
Number of PCI Channels
0
Instruction Set Architecture
RISC
Number of ADC Units
1
Maximum Operating Temperature
+85 °C
Length
9.8mm
ADCs
8 x 10 bit
Width
4.5mm
Pulse Width Modulation
3 x 16 bit
Product details
MSP430F1x Ultra-Low-Power Microcontrollers, Texas Instruments
The MSP430F1xx - 1 Series have an 8MHz CPU delivering ultra-low power performance.
Upto 8MHz CPU speed
1.8 to 3.6V operation
Up to 60KB Flash
Up to 10KB RAM
Wide range of high-performance analogue and intelligent digital peripherals
5 ultra-low power modes of operation
0.1μA RAM retention
0.7μA real-time clock mode
200μA per MHz active
Fast Wake-Up From Standby Mode in < 6μs
MSP430 Microcontrollers, Texas Instruments
The MSP430 Platform is a range of mixed-signal, ultra-low power microcontrollers from Texas Instruments. The 16-bit RISC architecture is perfectly suited for wireless, low-power industrial and portable applications. This established range has a strong and popular position due to its ease of use and broad suite of development tools and support.
The MSP430 portfolio consists of over 400 devices ranging from the MSP430 Value Line to the revolutionary, highly integrated microcontrollers with embedded FRAM memory.This broad family of products offer integration suited to many designs and applications. High-performance peripherals include USB, RF, LCD controllers and Sigma-Delta ADCs. This allows designers to find the appropriate MSP430 device for many low power applications.
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Technical Document
Specifications
Brand
Texas InstrumentsFamily Name
MSP430
Package Type
TSSOP
Mounting Type
Surface Mount
Pin Count
28
Device Core
MSP430
Data Bus Width
16bit
Program Memory Size
256 B, 8 kB
Maximum Frequency
8MHz
RAM Size
256 B
USB Channels
0
Number of PWM Units
1 x 16 bit
Number of SPI Channels
1
Number of USART Channels
1
Number of UART Channels
1
Number of I2C Channels
0
Typical Operating Supply Voltage
1.8 → 3.6 V
Number of CAN Channels
0
Minimum Operating Temperature
-40 °C
Height
1.05mm
Number of LIN Channels
0
Dimensions
9.8 x 4.5 x 1.05mm
Program Memory Type
Flash
Number of Ethernet Channels
0
Number of PCI Channels
0
Instruction Set Architecture
RISC
Number of ADC Units
1
Maximum Operating Temperature
+85 °C
Length
9.8mm
ADCs
8 x 10 bit
Width
4.5mm
Pulse Width Modulation
3 x 16 bit
Product details
MSP430F1x Ultra-Low-Power Microcontrollers, Texas Instruments
The MSP430F1xx - 1 Series have an 8MHz CPU delivering ultra-low power performance.
Upto 8MHz CPU speed
1.8 to 3.6V operation
Up to 60KB Flash
Up to 10KB RAM
Wide range of high-performance analogue and intelligent digital peripherals
5 ultra-low power modes of operation
0.1μA RAM retention
0.7μA real-time clock mode
200μA per MHz active
Fast Wake-Up From Standby Mode in < 6μs
MSP430 Microcontrollers, Texas Instruments
The MSP430 Platform is a range of mixed-signal, ultra-low power microcontrollers from Texas Instruments. The 16-bit RISC architecture is perfectly suited for wireless, low-power industrial and portable applications. This established range has a strong and popular position due to its ease of use and broad suite of development tools and support.
The MSP430 portfolio consists of over 400 devices ranging from the MSP430 Value Line to the revolutionary, highly integrated microcontrollers with embedded FRAM memory.This broad family of products offer integration suited to many designs and applications. High-performance peripherals include USB, RF, LCD controllers and Sigma-Delta ADCs. This allows designers to find the appropriate MSP430 device for many low power applications.