參數(shù)資料
型號: MC56F8123
廠商: Motorola, Inc.
英文描述: 16-bit Hybrid Controllers
中文描述: 16位混合控制器
文件頁數(shù): 60/140頁
文件大小: 1981K
代理商: MC56F8123
56F8323 Technical Data, Rev. 11.0
26
Freescale Semiconductor
Preliminary
VREFP
37
Input/
Output
Input/
Output
VREFP, VREFMID & VREFN — Internal pins for voltage reference which
are brought off-chip so that they can be bypassed. Connect to a
0.1
F ceramic low ESR capacitor
VREFMID
36
VREFN
35
VREFLO
38
Schmitt
Input
VREFLO — Analog Reference Voltage Low. This should normally be
connected to a low-noise VSS.
TEMP_SENSE
34
Output
Temperature Sense Diode — This signal connects to an on-chip
diode that can be connected to one of the ADC inputs and used to
monitor the temperature of the die. Must be bypassed with a 0.01
F
capacitor
CAN_RX
(GPIOC2)
61
Schmitt
Input
Schmitt
Input/
Output
Input
FlexCAN Receive Data — This is the CAN input. This pin has an
internal pull-up resistor.
Port C GPIO — This GPIO pin can be individually programmed as
an input or output pin.
In the 56F8323, the default state after reset is CAN_RX.
In the 56F8123, the default state is not one of the functions offered
and must be reconfigured.
CAN_TX
(GPIOC3)
62
Output
Schmitt
Input/
Output
Tri-stated
Input
FlexCAN Transmit Data — CAN output
Port C GPIO — This GPIO pin can be individually programmed as
an input or output pin.
In the 56F8323, the default state after reset is CAN_TX.
In the 56F8123, the default state is not one of the functions offered
and must be reconfigured.
TC0
(TXD0)
(GPIOC6)
1Schmitt
Input/
Output
Input
Schmitt
Input/
Output
Input
Tri-stated
Input
TC0 — Timer C, Channel 0
Transmit Data — SCI0 transmit data output
Port C GPIO — This GPIO pin can be individually programmed as
an input or output pin.
After reset, the default state is TC0.
Table 2-2 Signal and Package Information for the 64-Pin LQFP
Signal Name
Pin No.
Type
State During
Reset
Signal Description
相關(guān)PDF資料
PDF描述
MC56F8323 16-bit Hybrid Controllers
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MC56MS-5 3500 MHz - 12000 MHz RF/MICROWAVE DOUBLE BALANCED MIXER, 9.5 dB CONVERSION LOSS-MAX
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