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ILC556N 参数 Datasheet PDF下载

ILC556N图片预览
型号: ILC556N
PDF下载: 下载PDF文件 查看货源
内容描述: 通用双定时器 [General purpose dual timer]
分类和应用:
文件页数/大小: 5 页 / 203 K
品牌: IKSEMICON [ IK SEMICON CO., LTD ]
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TECHNICAL DATA  
ILC556N  
General purpose dual timer  
ILC556N/D is designed to be used: as high-precision pulse oscillator  
with adjustable frequency and on-off time ratio; for producing accurate  
time delays using external resistors and capacitors; as a timer in  
domestic appliances, in measuring equipment, computers; as functional  
units in electronic instruments. The timer may be used as oscillator  
producing accurate time delays and frequencies.  
In astable mode the pulse width of each circuit is controlled by one  
external resistor and capacitor. In monostable mode, when used as  
oscillator, its own frequency of oscillation and on-off time ratio are  
controlled by two external resistors and one capacitor.  
Unlike bipolar timer, CONTROL VOLTAGE output does not  
require any capacitor decoupling. TRIGGER, RESET inputs are active  
as per low level. Output inverter provides sufficient drain and source  
currents to control TTL-loads, and provides minimum bias when  
controlling CMOS-loads. Input voltage levels are compatible with  
standard CMOS levels.  
ORDERING INFORMATION  
ILC556N Plastic  
ILC556D  
SOIC  
TA = -20° to 70° C for all packages  
Output voltage levels are compatible with input levels of CMOS ICs.  
Supply current: not more than 600 µA.  
Supply voltage range: from 2.0 to 18V.  
Input current: 50, 100 pA at T=25 °С.  
Output current: 20 mA.  
Timing from microseconds to hours.  
Operates both in astable and monostable modes.  
Adjustable duty cycle.  
Temperature stability: 0.06%/°С.  
Latch current not less than 100 mA at T=70 °С.  
Allowed static potential value: not less than 2000V (HBM) and not less than 200 V (ММ).  
Pin Configuration  
DISCHARGE1  
THRESHOLD1  
14  
13  
01  
VCC  
DISCHARGE2  
THRESHOLD2  
02  
03  
04  
CONTROL  
VOLTAGE1  
12  
CONTROL  
VOLTAGE2  
RESET1  
ILC556N  
11  
10  
OUTPUT1 05  
TRIGGER1  
GND 07  
RESET2  
06  
09  
08  
OUTPUT2  
TRIGGER2  
Figure 1  
1