參數(shù)資料
型號: SC16C650BIBS
廠商: NXP Semiconductors N.V.
元件分類: 收發(fā)器
英文描述: 5 V, 3.3 V and 2.5 V UART with 32-byte FIFOs and infrared (IrDA) encoder-decoder
封裝: SC16C650BIB48<SOT313-2 (LQFP48)|<<http://www.nxp.com/packages/SOT313-2.html<1<Always Pb-free,;SC16C650BIB48<SOT313-2 (LQFP48)|<<http://www.nxp.com/packages/SOT313-2.html&
文件頁數(shù): 14/48頁
文件大?。?/td> 241K
代理商: SC16C650BIBS
SC16C650B_4
NXP B.V. 2009. All rights reserved.
Product data sheet
Rev. 04 — 14 September 2009
14 of 48
NXP Semiconductors
SC16C650B
UART with 32-byte FIFOs and IrDA encoder/decoder
6.8 DMA operation
The SC16C650B FIFO trigger level provides additional flexibility to the user for block
mode operation. The user can optionally operate the transmit and receive FIFOs in the
DMA mode (FCR[3]). The DMA mode affects the state of the RXRDY and TXRDY output
pins.
Table 6
and
Table 7
show this.
Remark:
DMA operation is not supported in the HVQFN32 package.
6.9 Sleep mode
The SC16C650B is designed to operate with low power consumption. A special Sleep
mode is included to further reduce power consumption when the chip is not being used.
With EFR[4] and IER[4] enabled (set to a logic 1), the SC16C650B enters the Sleep
mode, but resumes normal operation when a start bit is detected, a change of state on
any of the modem input pins RI, CTS, DSR, DCD, RX pin, or a transmit data is provided
by the user. If the Sleep mode is enabled and the SC16C650B is awakened by one of the
conditions described above, it will return to the Sleep mode automatically after the last
character is transmitted or read by the user. In any case, the Sleep mode will not be
entered while an interrupt(s) is pending. The SC16C650B will stay in the Sleep mode of
operation until it is disabled by setting IER[4] to a logic 0.
6.10 Loopback mode
The internal loopback capability allows on-board diagnostics. In the loopback mode, the
normal modem interface pins are disconnected and reconfigured for loopback internally.
MCR[3:0] register bits are used for controlling loopback diagnostic testing. In the loopback
mode, OUT1 (bit 2) and OUT2 (bit 3) in the MCR register control the modem RI and DCD
inputs, respectively. MCR signals DTR (bit 0) and RTS (bit 1) are used to control the
modem DSR and CTS inputs, respectively. The transmitter output (TX) and the receiver
input (RX) are disconnected from their associated interface pins, and instead are
connected together internally (see
Figure 7
). The CTS, DSR, DCD, and RI are
disconnected from their normal modem control input pins, and instead are connected
internally to DTR, RTS, OUT1 and OUT2. Loopback test data is entered into the Transmit
Holding Register via the user data bus interface, D0 to D7. The transmit UART serializes
the data and passes the serial data to the receive UART via the internal loopback
connection. The receive UART converts the serial data back into parallel data that is then
made available at the user data interface D0 to D7. The user optionally compares the
received data to the initial transmitted data for verifying error-free operation of the UART
TX/RX circuits.
Table 6.
Non-DMA mode
1 = FIFO empty
0 = at least 1 byte in FIFO
Effect of DMA mode on state of RXRDY pin
DMA mode
0-to-1 transition when FIFO empties
1-to-0 transition when FIFO reaches trigger level, or time-out occurs
Table 7.
Non-DMA mode
1 = at least 1 byte in FIFO
0 = FIFO empty
Effect of DMA mode on state of TXRDY pin
DMA mode
0-to-1 transition when FIFO becomes full
1-to-0 transition when FIFO has 1 empty space
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