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PXAG49KBBD Datasheet(PDF) 27 Page - NXP Semiconductors

Part No. PXAG49KBBD
Description  XA 16-bit microcontroller family
Download  42 Pages
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Manufacturer  NXP [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo NXP - NXP Semiconductors

PXAG49KBBD Datasheet(HTML) 27 Page - NXP Semiconductors

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Philips Semiconductors
Preliminary data
XA-G49
XA 16-bit microcontroller family
64K Flash/2K RAM, watchdog, 2 UARTs
2001 Jun 27
27
CLOCKING SCHEME/BAUD RATE GENERATION
The XA UARTS clock rates are determined by either a fixed division
(modes 0 and 2) of the oscillator clock or by the Timer 1 or Timer 2
overflow rate (modes 1 and 3).
The clock for the UARTs in XA runs at 16x the Baud rate. If the
timers are used as the source for Baud Clock, since maximum
speed of timers/Baud Clock is Osc/4, the maximum baud rate is
timer overflow divided by 16 i.e. Osc/64.
In Mode 0, it is fixed at Osc/16. In Mode 2, however, the fixed rate is
Osc/32.
00
Osc/4
Pre-scaler
f
ll Ti
T012
01
Osc/16
for all Timers T0,1,2
controlled by PT1, PT0
10
Osc/64
controlled by PT1, PT0
bits in SCR
11
reserved
Baud Rate for UART Mode 0:
Baud_Rate = Osc/16
Baud Rate calculation for UART Mode 1 and 3:
Baud_Rate = Timer_Rate/16
Timer_Rate = Osc/(N*(Timer_Range– Timer_Reload_Value))
where N = the TCLK prescaler value: 4, 16, or 64.
and Timer_Range =
256 for timer 1 in mode 2.
65536 for timer 1 in mode 0 and timer 2
in count up mode.
The timer reload value may be calculated as follows:
Timer_Reload_Value = Timer_Range–(Osc/(Baud_Rate*N*16))
NOTES:
1. The maximum baud rate for a UART in mode 1 or 3 is Osc/64.
2. The lowest possible baud rate (for a given oscillator frequency
and N value) may be found by using a timer reload value of 0.
3. The timer reload value may never be larger than the timer range.
4. If a timer reload value calculation gives a negative or fractional
result, the baud rate requested is not possible at the given
oscillator frequency and N value.
Baud Rate for UART Mode 2:
Baud_Rate = Osc/32
Using Timer 2 to Generate Baud Rates
Timer T2 is a 16-bit up/down counter in XA. As a baud rate
generator, timer 2 is selected as a clock source for either/both
UART0 and UART1 transmitters and/or receivers by setting TCLKn
and/or RCLKn in T2CON and T2MOD. As the baud rate generator,
T2 is incremented as Osc/N where N = 4, 16 or 64 depending on
TCLK as programmed in the SCR bits PT1, and PTO. So, if T2 is
the source of one UART, the other UART could be clocked by either
T1 overflow or fixed clock, and the UARTs could run independently
with different baud rates.
T2CON
bit5
bit4
0x418
RCLK0
TCLK0
T2MOD
bit5
bit4
0x419
RCLK1
TCLK1
Prescaler Select for Timer Clock (TCLK)
SCR
bit3
bit2
0x440
PT1
PT0
STINTn
BIT
SYMBOL
FUNCTION
SnSTAT.3 FEn
Framing Error flag is set when the receiver fails to see a valid STOP bit at the end of the frame.
Cleared by software.
SnSTAT.2 BRn
Break Detect flag is set if a character is received with all bits (including STOP bit) being logic ‘0’. Thus
it gives a “Start of Break Detect” on bit 8 for Mode 1 and bit 9 for Modes 2 and 3. The break detect
feature operates independently of the UARTs and provides the START of Break Detect status bit that
a user program may poll. Cleared by software.
SnSTAT.1 OEn
Overrun Error flag is set if a new character is received in the receiver buffer while it is still full (before
the software has read the previous character from the buffer), i.e., when bit 8 of a new byte is
received while RI in SnCON is still set. Cleared by software.
SnSTAT.0
STINTn
This flag must be set to enable any of the above status flags to generate a receive interrupt (RIn). The
only way it can be cleared is by a software write to this register.
SU00607B
OEn
BRn
FEn
SnSTAT Address: S0STAT 421
S1STAT 425
Bit Addressable
Reset Value: 00H
LSB
MSB
Figure 15. Serial Port Extended Status (SnSTAT) Register
(See also Figure 17 regarding Framing Error flag)


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