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• If only one of UART_C4[MAEN1] and UART_C4[MAEN2] is asserted, a marked
address is compared only with the associated match register and data is transferred to
the receive data buffer only on a match.
• If UART_C4[MAEN1] and UART_C4[MAEN2] are asserted, a marked address is
compared with both match registers and data is transferred only on a match with
either register.
32.3.4 Additional UART functions
The following sections describe additional UART functions.
32.3.4.1 8-bit, 9-bit and 10-bit data modes
The UART system, transmitter and receiver, can be configured to operate in 9-bit data
mode by setting the UART_C1[M] or 10-bit data mode by setting UART_C4[M10]. In 9-
bit mode, there is a ninth data bit to the left of the msb of the UART data register, in 10-
bit mode there is a tenth data bit. For the transmit data buffer, these bits are stored in T8
and T9 in UART_C3. For the receiver, these bits are held in UART_C3[R8] and
UART_C3[R9].
For coherent writes to the transmit data buffer, write to UART_C3[T8] and
UART_C3[T9] before writing to UART_D.
If the bit values to be transmitted as the ninth and tenth bit of a new character are the
same as for the previous character, it is not necessary to write to T8 and T9 again. When
data is transferred from the transmit data buffer to the transmit shifter, the value in T8
and T9 is copied at the same time data is transferred from UART_D to the shifter.
The 9-bit data mode is typically used with parity to allow eight bits of data plus the parity
in the ninth bit, or it is used with address-mark wakeup so the ninth data bit can serve as
the wakeup bit. The 10-bit data mode is typically used with parity and address-mark
wakeup so the ninth data bit can serve as the wakeup bit and the tenth bit as the parity bit.
In custom protocols, the ninth and/or tenth bits can also serve as software-controlled
markers.
Functional description
MKW01Z128 MCU Reference Manual, Rev. 3, 04/2016
642
Freescale Semiconductor, Inc.
Содержание MKW01Z128
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