Features: MC9S08AC16 Series Devices• Consumer & Industrial- MC9S08AC16- MC9S08AC8• Automotive- S9S08AW16A- S9S08AW8A8-Bit HCS08 Central Processor Unit (CPU)• 40-MHz HCS08 CPU (central processor unit)• 20-MHz internal bus frequency• HC08 instruction set with added ...
MC9S08AC16: Features: MC9S08AC16 Series Devices• Consumer & Industrial- MC9S08AC16- MC9S08AC8• Automotive- S9S08AW16A- S9S08AW8A8-Bit HCS08 Central Processor Unit (CPU)• 40-MHz HCS08 CPU (...
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8-bit Microcontrollers (MCU) 8 Bit 128K FLASH 8K RAM
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8-bit Microcontrollers (MCU) 8 Bit 128K FLASH 8K RAM
Rating | Symbol | Value | Unit |
Supply voltage | VDD | 0.3 to + 5.8 | V |
Input voltage | VIn | 0.3 to VDD + 0.3 | V |
Instantaneous maximum current Single pin limit (applies to all port pins)1, 2, 3 |
ID | ± 25 | mA |
Maximum current into VDD | IDD | 120 | mA |
Storage temperature | Tstg | 55 to +150 | |
Maximum junction temperature | TJ | 150 |
1 Input must be current limited to the value specified. To determine the value of the required current-limiting resistor, calculate resistance values for positive (VDD) and negative (VSS) clamp voltages, then use the larger of the two resistance values.
2 All functional non-supply pins are internally clamped to VSS and VDD.
3 Power supply must maintain regulation within operating VDD range during instantaneous and operating maximum current conditions. If positive injection current (VIn > VDD) is greater than IDD, the injection current may flow out of VDD and could result in external power supply going out of regulation. Ensure external VDD load will shunt current greater than maximum injection current. This will be the greatest risk when the MCU is not consuming power. Examples are: if no system clock is present, or if the clock rate is very low which would reduce overall power consumption.
The oscillator pins MC9S08AC16 are used to provide an external clock source for the MCU. The oscillator pins are gain controlled in low-power mode (default). Oscillator amplitudes in low-power mode are limited to approximately 1 V, peak-to-peak.