參數(shù)資料
型號: LC8766C8A
廠商: Sanyo Electric Co.,Ltd.
元件分類: 8位微控制器
英文描述: 8-Bit Single Chip Microcontroller
中文描述: 8位單片機(jī)微控制器
文件頁數(shù): 20/23頁
文件大?。?/td> 681K
代理商: LC8766C8A
LC8766C8A/B2A/96A
No.6718-20/23
Main system clock oscillation circuit characteristics
The characteristics in the table bellow is based on the following conditions:
1. Use the standard evaluation board SANYO has provided.
2. Use the peripheral parts with indicated value externally.
3. The peripheral parts value is a recommended value of oscillator manufacturer
Table 1. Main system clock oscillation circuit characteristics using ceramic resonator
Circuit parameters
Oscillation
stabilizing time
Frequency
Manufacturer
Oscillator
C1
C2
Rd1
0
4.5 to 6.0V 0.06ms
Operating
supply
voltage
range
typ
max
Notes
CST10.0MTW
CSTS0400MG03 (15pF) (15pF) 680
4.5 to 6.0V 0.03ms 0.15ms
(30pF) (30pF)
0.2ms
Built in C1, C2
Built in C1, C2
Murata
10MHz
Murata
4MHz
The oscillation stabilizing time is a period until the oscillation becomes stable after VDD becomes higher than minimum operating voltage. (Refer to Figure4)
Subsystem clock oscillation circuit characteristics
The characteristics in the table bellow is based on the following conditions:
1. Use the standard evaluation board SANYO has provided.
2. Use the peripheral parts with indicated value externally.
3. The peripheral parts value is a recommended value of oscillator manufacturer
Table 2. Subsystem clock oscillation circuit characteristics using crystal oscillator
Circuit parameters
Oscillation
stabilizing time
typ
1.3S
Frequency
Manufacturer
Oscillator
C3
18pF 18pF 10M
750k
C4
Rf
Rd2
Operating
supply voltage
range
max
3.0S
Notes
MC-306
C-002RX
32.768kHz
Seiko EPSON
4.5 to 6.0V
The oscillation stabilizing time is a period until the oscillation becomes stable after executing the instruction which starts the
sub-clock oscillation or after releasing the HOLD mode. (Refer to Figure4)
(Notes) Since the circuit pattern affects the oscillation frequency, place the oscillation-related parts as close tothe oscillation
pins as possible with the shortest possible pattern length.
Figure 1 Ceramic oscillation circuit
Figure 2 Crystal oscillation circuit
C1
C2
CF
CF2
CF1
C3
Rd2
C4
X’tal
XT2
XT1
Rf
Rd1
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