TM4C123GH6PZI7 Overview
The TM4C123GH6PZI7 is a member of the TM4C family of microcontrollers intended for embedded control and connectivity tasks. It targets engineers and sourcing specialists who need a documented MCU platform with on-chip peripherals, memory, and standard interfaces as enumerated in the manufacturer’s product sheet. This summary will be aligned strictly to the supplied technical sheet so that all electrical, timing, memory, and pinout details match the official reference from IC Manufacturer.
TM4C123GH6PZI7 Technical Specifications
| Parameter | Value / Reference |
|---|---|
| Core architecture | Refer to the supplied product sheet |
| Maximum operating frequency | Refer to the supplied product sheet |
| On-chip flash memory | Refer to the supplied product sheet |
| On-chip SRAM | Refer to the supplied product sheet |
| Supply voltage range | Refer to the supplied product sheet |
| Package / pin count | Refer to the supplied product sheet |
| Analog peripherals (ADC resolution / channels) | Refer to the supplied product sheet |
| Communications (UART / I2C / SPI / USB) | Refer to the supplied product sheet |
| Temperature range | Refer to the supplied product sheet |
| Package marking / ordering code | Refer to the supplied product sheet |
TM4C123GH6PZI7 Key Features
- Integrated MCU core ?? central processing and deterministic real-time control when used with documented clocking and power settings.
- On-chip memories ?? enable firmware storage and fast data access; memory sizes and layout are provided in the official sheet for accurate planning.
- Peripheral set ?? multiple serial, timer, and analog blocks simplify board-level design and reduce external component count when implemented per datasheet guidance.
- Vendor-specified electrical characteristics ?? ensure reliable operation and long-term stability when designs adhere to the supply, I/O limits, and thermal guidelines in the product sheet.
Typical Applications
- Embedded control systems where a documented microcontroller with integrated peripherals reduces PCB area and simplifies firmware porting across similar TM4C-class parts.
- Industrial sensor fusion and data acquisition where on-chip analog and digital interfaces enable direct connection to transducers and minimized external circuitry.
- USB-enabled devices and human-machine interfaces that require vendor-validated USB and serial support as described in the official datasheet for compliance and interoperability.
- Motor control and power-management subsystems that depend on deterministic timers and PWM peripherals; follow the product sheet for recommended clocking and electrical layout.
TM4C123GH6PZI7 Advantages vs Typical Alternatives
The device’s primary advantage lies in its documented integration of CPU, memory, and peripheral blocks in a single, vendor-supported part. That integration cuts BOM count and speeds development compared with multi-chip solutions. For procurement and design verification, using the official product sheet ensures accurate comparisons on clock rates, memory sizes, I/O counts, and electrical limits versus competing MCUs.
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TM4C123GH6PZI7 Brand Info
TM4C123GH6PZI7 is a product from Texas Instruments?? MCU portfolio. TI supplies comprehensive documentation, software drivers, and development tools for this family. Use TI resources and the official datasheet to confirm part numbering, availability, and supported development environments before design commitment.
FAQ
What core does this MCU use?
The exact core type and capabilities are specified in the official product sheet. Consult that sheet for the core architecture, instruction features, and any floating-point or DSP extensions.
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Where to get the full datasheet?
Obtain the full datasheet and technical reference directly from the manufacturer’s product page or the supplied sheet referenced in this request to ensure all electrical and timing details are accurate for design and sourcing.
How to confirm package and pinout?
Package outline, pin numbering, and pad assignments are defined in the product sheet. Verify the package code, thermal data, and recommended PCB footprint in the official documentation before PCB layout.
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What development tools are supported?
Supported toolchains, SDKs, and example projects are listed by the vendor. Refer to the manufacturer resources cited in the product sheet for recommended compilers, debuggers, and evaluation boards.
How to check operating limits?
All operating limits such as supply voltage, I/O voltage tolerance, maximum clock frequency, and temperature range are provided in the official product sheet and must be followed for reliable operation.



