CP3BT10G38 National Semiconductor, CP3BT10G38 Datasheet - Page 154

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CP3BT10G38

Manufacturer Part Number
CP3BT10G38
Description
IC CPU RISC W/LLC&USB 100-LQFP
Manufacturer
National Semiconductor
Datasheet

Specifications of CP3BT10G38

Applications
Connectivity Processor
Core Processor
CR16C
Program Memory Type
FLASH (256 kB)
Controller Series
CP3000
Ram Size
10K x 8
Interface
Bluetooth, ACCESS.bus, Audio, UART, USB, Microwire/SPI
Number Of I /o
37
Voltage - Supply
2.25 V ~ 2.75 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
100-LQFP
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
*CP3BT10G38
www.national.com
The two I/O pins associated with a timer subsystem function
as independent PWM outputs in the dual 8-bit PWM mode.
If a PWM timer is stopped using its associated
MODE.TxRUN bit the following actions result:
Figure 68 illustrates the configuration of a timer subsystem
while operating in dual 8-bit PWM mode. The numbering in
Figure 68 refers to timer subsystem 1 but equally applies to
the other three timer subsystems.
24.1.2
Each of the four timer subsystems may be independently
configured to provide a single 16-bit PWM channel. In this
case the lower and upper bytes of the counter are concate-
nated to form a single 16-bit counter.
Operation in 16-bit PWM mode is conceptually identical to
the dual 8-bit PWM operation as outlined under Dual 8-bit
PWM Mode on page 153. The 16-bit timer may be started
or stopped with the lower MODE.TxRUN bit, i.e. T1RUN for
timer subsystem 1.
The two TIOx outputs associated with a timer subsystem
can be used to produce either two identical PWM wave-
forms or two PWM waveforms of opposite polarities. This
can be accomplished by setting the two PxPOL bits of the
respective timer subsystem to either identical or opposite
values.
The associated TIOx pin will return to its default value as
defined by the IOxCTL.PxPOL bit.
The counter will stop and will retain its last value.
Any pending updates of the PERCAPx and DTYCAPx
register will be completed.
The prescaler counter will be stopped and reset if both
MODE.TxRUN bits are cleared.
15
Res
R
S
T2RUN
P2POL
Figure 68. VTU Dual 8-Bit PWM Mode
16-Bit PWM Mode
PERCAP1[15:8]
DTYCAP1[15:8]
Q
COUNT1[15:8]
Compare
Compare
7
0
TIO2
Prescaler
C1PRSC
[15:8]
Counter
= =
0
7
Res
R
S
T1RUN
P1POL
TMOD1 = 01
Q
PERCAP1[7:0]
DTYCAP1[7:0]
COUNT1[7:0]
Compare
Compare
DS090
0
TIO1
[7:0]
154
Figure 69 illustrates the configuration of a timer subsystem
while operating in 16-bit PWM mode. The numbering in
Figure 69 refers to timer subsystem 1 but equally applies to
the other three timer subsystems.
24.1.3
In addition to the two PWM modes, each timer subsystem
may be configured to operate in an input capture mode
which provides two 16-bit capture channels. The input cap-
ture mode can be used to precisely measure the period and
duty cycle of external signals.
In capture mode the counter COUNTx operates as a 16-bit
up-counter while the two TIOx pins associated with a timer
subsystem operate as capture inputs. A capture event on
the TIOx pins causes the contents of the counter register
(COUNTx) to be copied to the PERCAPx or DTYCAPx reg-
isters respectively.
Starting the counter is identical to the 16-bit PWM mode, i.e.
setting the lower of the two MODE.TxRUN bits will start the
counter and the clock prescaler. In addition, the capture
event inputs are enabled once the MODE.TxRUN bit is set.
The TIOx capture inputs can be independently configured to
detect a capture event on either a positive transition, a neg-
ative transition or both a positive and a negative transition.
In addition, any capture event may be used to reset the
counter COUNTx and the clock prescaler counter. This
avoids the need for software to keep track of timer overflow
conditions and greatly simplifies the direct frequency and
duty cycle measurement of an external signal.
15
Restart
R
S
P2POL
Dual 16-Bit Capture Mode
Q
Figure 69. VTU 16-bit PWM Mode
7
T1RUN
PERCAP1[15:0]
DTYCAP1[15:0]
Prescaler
C1PRSC
Counter
TIO2
Count1[15:0]
= =
Compare
Compare
0
R
S
P1POL
TMOD1 = 10
Q
DS091
0
TIO1
[15:0]

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