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CY8C3245LTI-139 参数 Datasheet PDF下载

CY8C3245LTI-139图片预览
型号: CY8C3245LTI-139
PDF下载: 下载PDF文件 查看货源
内容描述: 可编程系统级芯片( PSoC® ) [Programmable System-on-Chip (PSoC?)]
分类和应用: 多功能外围设备微控制器和处理器时钟
文件页数/大小: 119 页 / 3926 K
品牌: CYPRESS [ CYPRESS ]
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PSoC® 3: CY8C32 Family  
Data Sheet  
Figure 7-1. CY8C32 Digital Programmable Architecture  
7.1.2 Example Analog Components  
The following is a sample of the analog components available in  
PSoC Creator for the CY8C32 family. The exact amount of  
hardware resources (routing, RAM, flash) used by a component  
varies with the features selected in PSoC Creator for the  
component.  
Digital Core System  
and Fixed Function Peripherals  
DSI Routing Interface  
„ ADC  
‡ Delta-sigma  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
UDB  
„ DACs  
‡ Current  
‡ Voltage  
‡ PWM  
„ Comparators  
7.1.3 Example System Function Components  
DSI Routing Interface  
The following is a sample of the system function components  
available in PSoC Creator for the CY8C32 family. The exact  
amount of hardware resources (UDBs, routing, RAM, flash) used  
by a component varies with the features selected in PSoC  
Creator for the component.  
Digital Core System  
and Fixed Function Peripherals  
„ CapSense  
„ LCD Drive  
„ LCD Control  
7.1 Example Peripherals  
The flexibility of the CY8C32 family’s Universal Digital Blocks  
(UDBs) and Analog Blocks allow the user to create a wide range  
of components (peripherals). The most common peripherals  
were built and characterized by Cypress and are shown in the  
PSoC Creator component catalog, however, users may also  
create their own custom components using PSoC Creator. Using  
PSoC Creator, users may also create their own components for  
reuse within their organization, for example sensor interfaces,  
proprietary algorithms, and display interfaces.  
7.1.4 Designing with PSoC Creator  
7.1.4.1 More Than a Typical IDE  
A successful design tool allows for the rapid development and  
deployment of both simple and complex designs. It reduces or  
eliminates any learning curve. It makes the integration of a new  
design into the production stream straightforward.  
PSoC Creator is that design tool.  
The number of components available through PSoC Creator is  
too numerous to list in the datasheet, and the list is always  
growing. An example of a component available for use in  
CY8C32 family, but, not explicitly called out in this datasheet is  
the UART component.  
PSoC Creator is a full featured Integrated Development  
Environment (IDE) for hardware and software design. It is  
optimized specifically for PSoC devices and combines a modern,  
powerful software development platform with a sophisticated  
graphical design tool. This unique combination of tools makes  
PSoC Creator the most flexible embedded design platform  
available.  
Graphical design entry simplifies the task of configuring a  
particular part. You can select the required functionality from an  
extensive catalog of components and place it in your design. All  
components are parameterized and have an editor dialog that  
allows you to tailor functionality to your needs.  
7.1.1 Example Digital Components  
The following is a sample of the digital components available in  
PSoC Creator for the CY8C32 family. The exact amount of  
hardware resources (UDBs, routing, RAM, flash) used by a  
component varies with the features selected in PSoC Creator for  
the component.  
„ Communications  
‡ I2C  
‡ UART  
PSoC Creator automatically configures clocks and routes the I/O  
to the selected pins and then generates APIs to give the  
application complete control over the hardware. Changing the  
PSoC device configuration is as simple as adding a new  
component, setting its parameters, and rebuilding the project.  
At any stage of development you are free to change the  
hardware configuration and even the target processor. To  
retarget your application (hardware and software) to new  
devices, even from 8- to 32-bit families, just select the new  
device and rebuild.  
‡ SPI  
„ Functions  
‡ EMIF  
‡ PWMs  
‡ Timers  
‡ Counters  
„ Logic  
‡ NOT  
‡ OR  
‡ XOR  
‡ AND  
You also have the ability to change the C compiler and evaluate  
an alternative. Components are designed for portability and are  
validated against all devices, from all families, and against all  
supported tool chains. Switching compilers is as easy as editing  
the from the project options and rebuilding the application with  
no errors from the generated APIs or boot code.  
Document Number: 001-56955 Rev. *J  
Page 41 of 119  
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