1 power supply pins (vdd and vss), 2 oscillator pins (osc1 and osc2), 3 external reset pin (rst) – Freescale Semiconductor MC68HC908MR32 User Manual

Page 22: 4 external interrupt pin (irq), 5 cgm power supply pins (vdda and vssad), Power supply pins (v, And v, Oscillator pins (osc1 and osc2), External reset pin (rst), External interrupt pin (irq)

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General Description

MC68HC908MR32 • MC68HC908MR16 Data Sheet, Rev. 6.1

22

Freescale Semiconductor

1.4.1 Power Supply Pins (V

DD

and V

SS

)

V

DD

and V

SS

are the power supply and ground pins. The MCU operates from a single power supply.

Fast signal transitions on MCU pins place high, short-duration current demands on the power supply. To
prevent noise problems, take special care to provide power supply bypassing at the MCU as

Figure 1-4

shows. Place the C1 bypass capacitor as close to the MCU as possible. Use a high-frequency-response
ceramic capacitor for C1. C2 is an optional bulk current bypass capacitor for use in applications that
require the port pins to source high-current levels.

Figure 1-4. Power Supply Bypassing

1.4.2 Oscillator Pins (OSC1 and OSC2)

The OSC1 and OSC2 pins are the connections for the on-chip oscillator circuit. For more detailed
information, see

Chapter 4 Clock Generator Module (CGM)

.

1.4.3 External Reset Pin (RST)

A logic 0 on the RST pin forces the MCU to a known startup state. RST is bidirectional, allowing a reset
of the entire system. It is driven low when any internal reset source is asserted. See

Chapter 14 System

Integration Module (SIM)

.

1.4.4 External Interrupt Pin (IRQ)

IRQ is an asynchronous external interrupt pin. See

Chapter 8 External Interrupt (IRQ)

.

1.4.5 CGM Power Supply Pins (V

DDA

and V

SSAD

)

V

DDA

and V

SSAD

are the power supply pins for the analog portion of the clock generator module (CGM).

Decoupling of these pins should be per the digital supply. See

Chapter 4 Clock Generator Module (CGM)

.

MCU

V

DD

C2

C1

0.1

µF

V

SS

V

DD

+

Note: Component values shown represent typical applications.

1–10

µF

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