The S9S12GN32F1MLC belongs to the category of microcontrollers.
This microcontroller is commonly used in various electronic devices and embedded systems.
The S9S12GN32F1MLC is available in a compact package, suitable for surface mount technology (SMT) assembly.
The essence of this microcontroller lies in its ability to provide efficient control and processing capabilities for electronic devices and embedded systems.
The S9S12GN32F1MLC is typically packaged in reels or trays, with quantities varying based on customer requirements.
The S9S12GN32F1MLC microcontroller has a total of 48 pins, which are assigned to various functions such as I/O, power supply, ground, and communication interfaces. The detailed pin configuration is as follows:
(Pin Number) (Pin Name) (Function) 1 VDD Power Supply 2 VSS Ground 3 RESET Reset Pin 4 IRQ Interrupt Request 5 PT0 Port T, Bit 0 6 PT1 Port T, Bit 1 7 PT2 Port T, Bit 2 8 PT3 Port T, Bit 3 9 PT4 Port T, Bit 4 10 PT5 Port T, Bit 5 11 PT6 Port T, Bit 6 12 PT7 Port T, Bit 7 13 PP0 Port P, Bit 0 14 PP1 Port P, Bit 1 15 PP2 Port P, Bit 2 16 PP3 Port P, Bit 3 17 PP4 Port P, Bit 4 18 PP5 Port P, Bit 5 19 PP6 Port P, Bit 6 20 PP7 Port P, Bit 7 21 PA0 Port A, Bit 0 22 PA1 Port A, Bit 1 23 PA2 Port A, Bit 2 24 PA3 Port A, Bit 3 25 PA4 Port A, Bit 4 26 PA5 Port A, Bit 5 27 PA6 Port A, Bit 6 28 PA7 Port A, Bit 7 29 PB0 Port B, Bit 0 30 PB1 Port B, Bit 1 31 PB2 Port B, Bit 2 32 PB3 Port B, Bit 3 33 PB4 Port B, Bit 4 34 PB5 Port B, Bit 5 35 PB6 Port B, Bit 6 36 PB7 Port B, Bit 7 37 PC0 Port C, Bit 0 38 PC1 Port C, Bit 1 39 PC2 Port C, Bit 2 40 PC3 Port C, Bit 3 41 PC4 Port C, Bit 4 42 PC5 Port C, Bit 5 43 PC6 Port C, Bit 6 44 PC7 Port C, Bit 7 45 PD0 Port D, Bit 0 46 PD1 Port D, Bit 1 47 PD2 Port D, Bit 2 48 PD3 Port D, Bit 3
What is the maximum clock frequency of the S9S12GN32F1MLC?
- The maximum clock frequency of the S9S12GN32F1MLC is 50 MHz.
Can the S9S12GN32F1MLC interface with external memory?
- Yes, the S9S12GN32F1MLC supports external memory interfacing through its bus controller unit.
What communication interfaces are available on the S9S12GN32F1MLC?
- The S9S12GN32F1MLC features SPI, I2C, and SCI (UART) communication interfaces.
Is the S9S12GN32F1MLC suitable for automotive applications?
- Yes, the S9S12GN32F1MLC is designed for automotive applications and complies with automotive industry standards.
What development tools are recommended for programming the S9S12GN32F1MLC?
- Development tools such as CodeWarrior IDE and PEmicro hardware debuggers are commonly used for programming and debugging the S9S12GN32F1MLC.
Does the S9S12GN32F1MLC support low-power operation?
- Yes, the S9S12GN32F1MLC offers low-power modes to minimize power consumption in battery-powered applications.
Can the S9S12GN32F1MLC be used in industrial control systems?
- Yes, the S9S12GN32F1MLC is suitable for industrial control applications due to its robust features and reliability.
What are the available analog-to-digital converter (ADC) channels on the S9S12GN32F1MLC?
- The S9S12GN32F1MLC provides 8-channel 10-bit ADC for analog signal acquisition.
Is the S9S12GN32F1MLC compatible with CAN (Controller Area Network) protocol?
- Yes, the S9S12GN32F1MLC includes a built-in CAN module for communication in automotive and industrial networks.
Are there any application notes or reference designs available for the S9S12GN32F1MLC?
- Yes, NXP provides comprehensive application notes and reference designs to assist in the implementation of the S9S12GN32F1MLC in various technical solutions.