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AT24C256C-SSHL-T-537 参数 Datasheet PDF下载

AT24C256C-SSHL-T-537图片预览
型号: AT24C256C-SSHL-T-537
PDF下载: 下载PDF文件 查看货源
内容描述: [EEPROM, 32KX8, Serial, CMOS, PDSO8]
分类和应用: 可编程只读存储器电动程控只读存储器电可擦编程只读存储器时钟光电二极管内存集成电路
文件页数/大小: 39 页 / 975 K
品牌: MICROCHIP [ MICROCHIP ]
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AT24C256C  
Pin Descriptions  
2.  
Pin Descriptions  
The descriptions of the pins are listed in Table 2-1.  
Table 2-1.ꢀPin Function Table  
(1)  
Name  
8Lead SOIC  
8Lead TSSOP  
8Pad UDFN  
8Ball VFBGA  
Function  
(2)  
A0  
1
2
3
4
5
6
7
8
1
2
3
4
5
6
7
8
1
2
3
4
5
6
7
8
1
2
3
4
5
6
7
8
Device Address Input  
Device Address Input  
Device Address Input  
Ground  
(2)  
A1  
(2)  
A2  
GND  
SDA  
SCL  
Serial Data  
Serial Clock  
(2)  
WP  
Write-Protect  
V
Device Power Supply  
CC  
Note:ꢀ  
1. The exposed pad on this package can be connected to GND or left floating.  
2. If the A0, A1, A2 or WP pins are not driven, they are internally pulled down to GND. In order to  
operate in a wide variety of application environments, the pulldown mechanism is intentionally  
designed to be somewhat strong. Once these pins are biased above the CMOS input buffer’s trip  
point (~0.5 x VCC), the pulldown mechanism disengages. Microchip recommends connecting these  
pins to a known state whenever possible.  
2.1  
Device Address Inputs (A0, A1, A2)  
The A0, A1 and A2 pins are device address inputs that are hard-wired (directly to GND or to VCC) for  
compatibility with other 2-wire Serial EEPROM devices. When the pins are hard-wired, as many as eight  
devices may be addressed on a single bus system. A device is selected when a corresponding hardware  
and software match is true. If these pins are left floating, the A0, A1 and A2 pins will be internally pulled  
down to GND. However, due to capacitive coupling that may appear in customer applications, Microchip  
recommends always connecting the address pins to a known state. When using a pullup resistor,  
Microchip recommends using 10 kΩ or less.  
2.2  
2.3  
Ground  
The ground reference for the power supply. GND should be connected to the system ground.  
Serial Data (SDA)  
The SDA pin is an opendrain bidirectional input/output pin used to serially transfer data to and from the  
device. The SDA pin must be pulled high using an external pullup resistor (not to exceed 10 kΩ in value)  
and may be wire-ORed with any number of other opendrain or opencollector pins from other devices on  
the same bus.  
2.4  
Serial Clock (SCL)  
The SCL pin is used to provide a clock to the device and to control the flow of data to and from the  
device. Command and input data present on the SDA pin is always latched in on the rising edge of SCL,  
DS20006042A-page 5  
Datasheet  
© 2018 Microchip Technology Inc.  
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