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Z86C8316PSC 参数 Datasheet PDF下载

Z86C8316PSC图片预览
型号: Z86C8316PSC
PDF下载: 下载PDF文件 查看货源
内容描述: Z8 MCU微控制器 [Z8 MCU MICROCONTROLLERS]
分类和应用: 微控制器外围集成电路光电二极管时钟
文件页数/大小: 46 页 / 740 K
品牌: ZILOG [ ZILOG, INC. ]
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Z86C83/C84  
Z8® MCU Microcontrollers  
ABSOLUTE MAXIMUM RATINGS  
Parameter  
Min  
Max  
Units  
1
Ambient Temperature under Bias  
–40  
–65  
+105  
+150  
+7  
C
C
Storage Temperature  
Voltage on any Pin with Respect to VSS [Note 1]  
Voltage on VCC Pin with Respect to VSS  
Voltage on /RESET Pins with Respect to VSS [Note 2]  
Total Power Dissipation  
–0.6  
–0.3  
–0.6  
V
+7  
V
VCC+1  
770  
140  
125  
+600  
+600  
25  
V
mW  
mA  
mA  
µA  
µA  
mA  
mA  
Maximum Current out of VSS  
Maximum Current into VCC  
Maximum Current into an Input Pin [Note 3]  
Maximum Current into an Open-Drain Pin [Note 4]  
Maximum Output Current Sinked by Any I/O Pin  
Maximum Output Current Sourced by Any I/O Pin  
–600  
–600  
25  
Notes:  
1. This applies to all pins except XTAL and /RESET pins and where otherwise noted.  
2. There is no input protection diode from pin to VCC.  
3. This excludes XTAL pins.  
4. Device pin is not at an output Low state.  
Notice:  
Total power dissipation should not exceed 770 mW for the  
package. Power dissipation is calculated as follows:  
Stresses greater than those listed under Absolute  
Maximum Ratings may cause permanent damage to the  
device. This is a stress rating only; functional operation of  
the device at any condition above those indicated in the  
operational sections of these specifications is not implied.  
Exposure to absolute maximum rating conditions for an  
extended period may affect device reliability.  
Total Power Dissipation =  
VCC x [ ICC – (sum of IOH) ]  
+ sum of [ (VCC – VOH) x IOH  
+ sum of (V0L x I0L)  
]
STANDARD TEST CONDITIONS  
The characteristics listed below apply for standard test  
conditions as noted. All voltages are referenced to  
Ground. Positive current flows into the referenced pin  
(Figure 6).  
From Output  
Under Test  
150 pF  
I
Figure 6. Test Load Diagram  
VDD SPECIFICATION  
VDD = 3.0V to 5.5V  
DS96DZ80203  
5