ST10F272M

Features: 16-bit CPU with DSP functions 50ns instruction cycle time at 40 MHz max CPU clock Multiply/accumulate unit (MAC) 16 x 16-bit multiplication, 40-bit accumulator Enhanced boolean bit manipulations Single-cycle context switching support On-chip memories 256 Kbyte Flash memory (32-bit fetch...

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SeekIC No. : 004506162 Detail

ST10F272M: Features: 16-bit CPU with DSP functions 50ns instruction cycle time at 40 MHz max CPU clock Multiply/accumulate unit (MAC) 16 x 16-bit multiplication, 40-bit accumulator Enhanced boolean bit manipu...

floor Price/Ceiling Price

Part Number:
ST10F272M
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2025/12/27

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Product Details

Description



Features:

16-bit CPU with DSP functions
50ns instruction cycle time at 40 MHz max CPU clock
Multiply/accumulate unit (MAC) 16 x 16-bit multiplication, 40-bit accumulator
Enhanced boolean bit manipulations
Single-cycle context switching support
On-chip memories
256 Kbyte Flash memory (32-bit fetch)
Single voltage Flash memories with erase/program controller and 100K erasing/programming cycles.
Up to 16 Mbyte linear address space for code and data (5 Mbytes with CAN or I2C)
2 Kbyte internal RAM (IRAM)
18 Kbyte extension RAM (XRAM)
Programmable external bus configuration & characteristics for different address ranges
5 programmable chip-select signals
Hold-acknowledge bus arbitration support
Interrupt
8-channel peripheral event controller for single cycle interrupt driven data transfer
16-priority-level interrupt system with 56 sources, sampling rate down to 25ns
Timers
2 multi-functional general purpose timer units with 5 timers
Two 16-channel capture / compare units
Serial channels
2 synch. / asynch. serial channels
2 high-speed synchronous channels
One I2C standard interface
24-channel A/D converter
16-channel 10-bit, accuracy +/-2LSB
8-channel 10-bit, accuracy +/-5LSB
4.85 s minimum conversion time
4-channel PWM unit + 4-channel XPWM
2 CAN 2.0B interfaces operating on 1 or 2 CAN busses (64 or 2x32 message, C-CAN version)
Fail-safe protection
Programmable watchdog timer
Oscillator watchdog
On-chip bootstrap loader
Clock generation
On-chip PLL with 4 to 8 MHz oscillator
Direct or prescaled clock input
Real time clock and 32 kHz on-chip oscillator
Up to 111 general purpose I/O lines
Individually programmable as input, output or special function
Programmable threshold (hysteresis)
Idle, power-down and stand-by modes
Single voltage supply: 5V ±10% (embedded regulator for 1.8V core supply)
Temperature range: -40 to +125°C



Pinout

  Connection Diagram


Specifications

Symbol
Parameter
Values
Unit
VDD
Voltage on VDD pins with respect to ground (VSS)
-0.5 to +6.5
V
VSTBY
Voltage on VSTBY pin with respect to ground (VSS
-0.5 to +6.5
V
VAREF
Voltage on VAREF pins with respect to ground (VSS)
-0.3 to VDD
V
VAGND
Voltage on VAGND pins with respect to ground (VSS)
VSS
V
VIO
Voltage on any pin with respect to ground (VSS)
-0.5 to VDD + 0.5
V
OIPV
Input current on any pin during overload condition
± 10
ITOV
Absolute sum of all input currents during overload condition
| 75 |
TST
Storage temperature
-65 to +150
ESD
ESD Susceptibility (Human Body Model)
2000



Description

The ST10F272M device is a new derivative of the STMicroelectronics ST10 family of 16-bit single-chip CMOS microcontrollers.

The ST10F272M combines high CPU performance (up to 20 million instructions per second) with high peripheral functionality and enhanced I/O capabilities. It also provides on-chip high-speed single voltage Flash memory, on-chip high-speed RAM, and clock generationvia PLL.

The ST10F272M is processed in 0.18mm CMOS technology. The MCU core and the logic is supplied with a 5V to 1.8V on-chip voltage regulator. The part is supplied with a single 5V supply and I/Os work at 5V.

The ST10F272M is an optimized version of the ST10F272E, upward compatible with the following set of differences:
Maximum CPU frequency is 40 MHz
Reduced range for the Standby Voltage: VStby must be in the range of 4.5 to 5.5V.
Identification registers: the IDMEM register reflects the Flash type difference and can be used to differentiate the two devices by software
Improved EMC behavior thanks to the introduction of an internal RC filter on the 5V for the ballast transistors




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