PIC18F2320-I/SO Microchip Technology Inc., PIC18F2320-I/SO Datasheet - Page 125

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PIC18F2320-I/SO

Manufacturer Part Number
PIC18F2320-I/SO
Description
Microcontroller; 8 KB Flash; 512 RAM; 256 EEPROM; 25 I/O; 28-Pin-SOIC
Manufacturer
Microchip Technology Inc.
Datasheet

Specifications of PIC18F2320-I/SO

A/d Inputs
10-Channel, 10-Bit
Comparators
2
Cpu Speed
10 MIPS
Eeprom Memory
256 Bytes
Input Output
25
Interface
I2C/SPI/USART
Memory Type
Flash
Number Of Bits
8
Package Type
28-pin SOIC
Programmable Memory
8K Bytes
Ram Size
512 Bytes
Speed
20 MHz
Timers
1-8-bit, 3-16-bit
Voltage, Range
2-5.5 V
Lead Free Status / Rohs Status
RoHS Compliant part Electrostatic Device
12.2
A crystal oscillator circuit is built-in between pins,
T1OSI (input) and T1OSO (amplifier output). It is
enabled by setting control bit, T1OSCEN (T1CON<3>).
The oscillator is a low-power oscillator rated for 32 kHz
crystals. It will continue to run during all power man-
aged modes. The circuit for a typical LP oscillator is
shown in Figure 12-3. Table 12-1 shows the capacitor
selection for the Timer1 oscillator.
The user must provide a software time delay to ensure
proper start-up of the Timer1 oscillator.
FIGURE 12-3:
TABLE 12-1:
 2003 Microchip Technology Inc.
Osc Type
Note 1: Microchip suggests this value as a starting
Note:
LP
2: Higher capacitance increases the stability
3: Since each resonator/crystal has its own
4: Capacitor values are for design guidance
Timer1 Oscillator
33 pF
33 pF
C1
C2
See the Notes with Table 12-1 for additional
information about capacitor selection.
point in validating the oscillator circuit.
of the oscillator but also increases the
start-up time.
characteristics, the user should consult
the resonator/crystal manufacturer for
appropriate
components.
only.
32 kHz
Freq
CAPACITOR SELECTION FOR
THE TIMER OSCILLATOR
32.768 kHz
XTAL
EXTERNAL COMPONENTS
FOR THE TIMER1 LP
OSCILLATOR
values
27 pF
T1OSI
T1OSO
C1
PIC18FXXXX
(1)
of
27 pF
PIC18F2220/2320/4220/4320
external
C2
(2,3,4)
(1)
12.3
The Timer1 oscillator circuit draws very little power
during operation. Due to the low power nature of the
oscillator, it may also be sensitive to rapidly changing
signals in close proximity.
The oscillator circuit, shown in Figure 12-3, should be
located as close as possible to the microcontroller.
There should be no circuits passing within the oscillator
circuit boundaries other than V
If a high-speed circuit must be located near the oscilla-
tor (such as the CCP1 pin in output compare or PWM
mode, or the primary oscillator using the OSC2 pin), a
grounded guard ring around the oscillator circuit, as
shown in Figure 12-4, may be helpful when used on a
single-sided PCB or in addition to a ground plane.
FIGURE 12-4:
Note: Not drawn to scale.
Timer1 Oscillator Layout
Considerations
OSCILLATOR CIRCUIT
WITH GROUNDED GUARD
RING
SS
OSC1
RC0
V
V
OSC2
RC1
RC2
or V
DD
SS
DS39599C-page 123
DD
.

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