Architecture

Table A±1. MSP50C605 100-Pin PJM Plastic Package Pinout Description

Description

Pin#

Description

Pin#

Description

Pin#

Description

Pin#

 

 

 

 

 

 

 

 

NC

1

NC

26

NC

51

NC

76

NC

2

NC

27

NC

52

NC

77

NC

3

NC

28

NC

53

NC

78

NC

4

NC

29

NC

54

NC

79

DACM

5

NC

30

NC

55

NC

80

VCC3

6

VCC

31

NC

56

NC

81

DACP

7

VCC1

32

NC

57

PC7

82

VCC

8

SCAN_OUT

33

NC

58

PC6

83

PF7

9

TEST

34

NC

59

PC5

84

PF6

10

SYNC

35

NC

60

PC4

85

PF5

11

SCNCLK

36

NC

61

PC3

86

PF4

12

SCANIN

37

NC

62

PC2

87

PF3

13

INITZ

38

NC

63

PC1

88

PF2

14

PE7

39

NC

64

PC0

89

PF1

15

PE6

40

NC

65

GND

90

PF0

16

PE5

41

NC

66

VCC2

91

GND

17

PE4

42

NC

67

PD7

92

NC

18

PE3

43

NC

68

PD6

93

NC

19

PE2

44

NC

69

PD5

94

NC

20

PE1

45

NC

70

PD4

95

NC

21

PE0

46

NC

71

PD3

96

NC

22

PLL

47

NC

72

PD2

97

NC

23

X1

48

NC

73

PD1

98

NC

24

X2

49

NC

74

PD0

99

NC

25

GND

50

 

75

GND3

100

 

 

 

 

 

 

 

 

MSP50C605 Preliminary Data

A-7

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Texas Instruments MSP50C614 manual Description Pin#

MSP50C614 specifications

The Texas Instruments MSP50C614 is a microcontroller that belongs to the MSP430 family, renowned for its low power consumption and versatile functionality. Primarily designed for embedded applications, this microcontroller is favored in various industries, including consumer electronics, industrial automation, and healthcare devices.

One of the standout features of the MSP50C614 is its ultra-low power technology, which enables it to operate in various power modes. This makes it ideal for battery-powered applications, where energy efficiency is crucial. The MSP430 architecture allows for a flexible power management system, ensuring that energy is conserved while providing robust performance.

The MSP50C614 is equipped with a 16-bit RISC CPU that delivers high performance while maintaining low power usage. With a maximum clock frequency of 16 MHz, it can execute most instructions in a single cycle, resulting in swift operation and responsive performance. This microcontroller also comes with a generous flash memory capacity, allowing developers to store large amounts of code and data conveniently.

In terms of peripherals, the MSP50C614 is highly versatile. It features a range of digital and analog input/output options, including multiple timers, GPIO ports, and various communication interfaces like UART, SPI, and I2C. This extensive set of peripherals allows for seamless integration with other components and simplifies the design of complex systems.

The integrated 12-bit Analog-to-Digital Converter (ADC) stands out as a valuable characteristic of the MSP50C614. This feature enables the microcontroller to convert physical analog signals into digital data, making it particularly useful for sensing applications and real-time monitoring.

Another noteworthy technology employed in the MSP50C614 is its support for low-voltage operations. With a broad supply voltage range, this microcontroller can function efficiently in diverse environments and is suitable for low-power applications, enhancing its practicality.

Moreover, Texas Instruments provides software support in the form of Code Composer Studio and various libraries that make it easier for developers to program and utilize the MSP50C614 effectively.

In summary, the Texas Instruments MSP50C614 microcontroller is a powerful, low-power solution equipped with the features and technologies necessary for efficient operation in a wide array of applications. Its blend of performance, flexibility, and energy efficiency makes it a popular choice among engineers and designers looking to create innovative, sustainable designs in the rapidly evolving tech landscape.