TP0SIZ3-TP0SIZ0 — Em bedded Device Endpoint 0 Transmit Data

Packet Size

These read/write bits store the number of transmit data bytes for the next IN token request for embedded device Endpoint 0. These bits are cleared by reset.

9.5.5 USB Embedded Device Control Register 1 (DCR1)

Address:

$004C

 

 

 

 

 

 

 

 

Bit 7

6

5

4

3

2

1

Bit 0

 

 

 

 

 

 

 

 

 

Read:

T1SEQ

ENDADD

TX1E

0

TP1SIZ3

TP1SIZ2

TP1SIZ1

TP1SIZ0

Write:

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Reset:

0

0

0

0

0

0

0

0

 

 

= Unimplemented

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Figure 9-16. USB Embedded Device Control Register 1 (DCR1)

T1SEQ — Embedded Device Endpoi nt 1/2 Transmit Sequence Bit

This read/write bit determines which type of data packet (DATA0 or DATA1) will be sent during the next IN transaction directed to embedded device Endpoint 1 or 2. Toggling of this bit must be controlled by software. Reset clears this bit.

1 = DATA1 Token active for next embedded device Endpoint 1/2 transmit

0 = DATA0 Token active for next embedded device Endpoint 1/2 transmit

ENDADD — Endpoint Address Select

This read/write bit specifies whether the data inside the registers DE1D0-DE1D7 are used for embedded device Endpoint 1 or 2. If all the conditions for a successful Endpoint 2 USB response to a host’s IN token are satisfied (TXD1F=0, TX1E=1, DSTALL2=0, and ENABLE2=1) except that the ENDADD bit is configured for Endpoint 1, the USB responds with a NAK handshake packet. Reset clears this bit.

MC68HC(7)08KH12 Rev. 1.1

Advance Information

 

 

Freescale Semiconductor

143

Page 143
Image 143
Freescale Semiconductor MC68HC08KH12 manual USB Embedded Device Control Register 1 DCR1, 143

MC68HC08KH12 specifications

The Freescale Semiconductor MC68HC08KH12 is a versatile microcontroller that has gained popularity in various embedded systems applications. Part of the HC08 family, this microcontroller combines a robust architecture with comprehensive on-chip features, making it suitable for a wide range of applications ranging from industrial control to consumer electronics.

One of the main features of the MC68HC08KH12 is its 8-bit architecture, which provides an optimal balance between performance and power efficiency. It operates at clock speeds of up to 2 MHz, allowing for efficient execution of instructions while maintaining low power consumption. The microcontroller is designed to operate over a voltage range of 2.7 to 5.5 volts, making it adaptable to various system requirements.

The MC68HC08KH12 is equipped with 1 Kbyte of RAM and 12 Kbytes of ROM, which allows for substantial program and data storage. The on-chip memory helps reduce the need for external components, simplifying the design of embedded systems and enhancing reliability. With a wide range of I/O options, including 26 general-purpose I/O pins, the microcontroller provides flexibility in interfacing with sensors, actuators, and other devices.

In terms of technologies, the MC68HC08KH12 features an advanced instruction set that enhances programming efficiency. It supports basic arithmetic operations, bit manipulation, and control transfer instructions, making it suitable for a variety of computational tasks. The integrated timers, analog-to-digital converters, and serial communication interfaces, including UART, provide the necessary tools for real-time control and data exchange with peripheral devices.

Another characteristic of the MC68HC08KH12 is its low power mode capabilities, which allow it to enter a sleep state during periods of inactivity. This feature is essential in battery-powered applications, where minimizing power consumption is crucial for extending operational life.

Overall, the Freescale Semiconductor MC68HC08KH12 stands out as a reliable microcontroller that combines performance, flexibility, and power efficiency. Its extensive features and technologies enable engineers to design robust embedded systems that meet the demands of modern applications. As a result, the MC68HC08KH12 remains a valuable choice for developers seeking a highly functional yet cost-effective microcontroller solution.