CY7C63310, CY7C638xx

29. Ordering Information

Ordering Code

FLASH Size

RAM Size

Package Type

CY7C63310-PXC

3K

128

16-PDIP

 

 

 

 

CY7C63310-SXC

3K

128

16-SOIC

 

 

 

 

CY7C63801-PXC

4K

256

16-PDIP

 

 

 

 

CY7C63801-SXC

4K

256

16-SOIC

 

 

 

 

CY7C63803-SXC

8K

256

16-SOIC

 

 

 

 

CY7C63803-SXCT

8K

256

16-SOIC, Tape and Reel

 

 

 

 

CY7C63813-PXC

8K

256

18-PDIP

 

 

 

 

CY7C63813-SXC

8K

256

18-SOIC

 

 

 

 

CY7C63823-QXC

8K

256

24-QSOP

 

 

 

 

CY7C63823-SXC

8K

256

24-SOIC

 

 

 

 

CY7C63823-SXCT

8K

256

24-SOIC, Tape and Reel

 

 

 

 

CY7C63823-XC

8K

256

Die form

 

 

 

 

CY7C63833-LFXC

8K

256

32-QFN

 

 

 

 

CY7C63833-LTXC

8K

256

32-QFN Sawn

 

 

 

 

CY7C63833-LTXCT

8K

256

32-QFN Sawn, Tape and Reel

 

 

 

 

30. Package Handling

Some IC packages require baking before they are soldered onto a PCB to remove moisture that may have been absorbed after leaving the factory. A label on the packaging has details about actual bake temperature and the minimum bake time to remove this moisture. The maximum bake time is the aggregate time that the parts are exposed to the bake temperature. Exceeding this exposure time may degrade device reliability.

Parameter

Description

Min

Typical

Max

Unit

TBAKETEMP

Bake Temperature

 

125

See package label

°C

TBAKETIME

Bake Time

See package label

 

72

hours

Document 38-08035 Rev. *K

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Cypress CY7C638xx, CY7C63310 manual Ordering Information, Package Handling

CY7C638xx, CY7C63310 specifications

The Cypress CY7C63310 and CY7C638xx series are advanced USB microcontrollers designed for various applications requiring reliable performance and flexibility. These chips are notable for their integration of several key technologies, enabling developers to create innovative electronic designs effortlessly.

The CY7C63310 is a part of the Cypress USB microcontroller family that boasts a fully integrated 8051-compatible microprocessor core. This architecture allows for efficient execution of high-level programming languages like C, enhancing code development efforts. The microcontroller supports USB 2.0 full-speed operation, allowing for high data transfer rates of up to 12 Mbps, essential for applications involving data communication.

One of the standout features of the CY7C63310 is its programmable GPIO (General-Purpose Input/Output) pins, which provide developers with the versatility to configure these pins as inputs, outputs, or alternate functions. This flexibility is particularly advantageous in applications where custom interfaces are essential, such as human-machine interfaces, sensor control, and USB peripherals.

Moreover, the CY7C638xx series presents an even broader array of features. These devices typically support various memory configurations, enabling designers to select from different on-chip RAM and flash memory options. This variety empowers projects requiring a mix of program and data storage capabilities, all while ensuring that performance remains optimal.

Both the CY7C63310 and CY7C638xx series leverage Cypress's EZ-USB technology, which simplifies the process of USB interface implementation. The EZ-USB architecture minimizes the effort associated with USB protocol complexity, allowing developers to focus on the core functionality of their applications.

These microcontrollers also incorporate features such as low-power operation, making them ideal for battery-operated devices. With various power management modes, designers can optimize energy consumption according to the specific needs of their applications.

In terms of connectivity, these chips support multiple interface standards, including SPI, I2C, and UART. These capabilities ensure that developers can easily interface with other components and systems, enhancing the overall utility of the microcontroller.

In summary, the Cypress CY7C63310 and CY7C638xx microcontrollers stand out for their robust features, including integrated USB functionality, flexible GPIO options, and support for various communication protocols. These attributes make them suitable for a wide range of applications, from consumer electronics to industrial automation, making them an excellent choice for developers seeking reliable and adaptable microcontroller solutions.