參數(shù)資料
型號(hào): MCZ33742EG
廠商: 飛思卡爾半導(dǎo)體(中國)有限公司
元件分類: CAN
英文描述: System Basis Chip (SBC) with Enhanced High-Speed CAN Transceiver
中文描述: 系統(tǒng)基礎(chǔ)芯片的增強(qiáng)型(SBC)的高速CAN收發(fā)器
文件頁數(shù): 24/65頁
文件大小: 1158K
代理商: MCZ33742EG
Analog Integrated Circuit Device Data
Freescale Semiconductor
24
33742
FUNCTIONAL DEVICE OPERATION
OPERATIONAL MODES
FUNCTIONAL DEVICE OPERATION
SUPPLY VOLTAGE AT VSUP
The 33742 receives its operating voltage via the VSUP
pin. An external diode is needed in series with the VSUP pin
and the supply voltage to protect the SBC against negative
transients or from a reverse battery situation that can occur in
a vehicle application. The 33742 will operate from a supply
voltage input as low as 4.5 VDC to as high as 27 VDC. The
later voltage is often encountered during a vehicle jump-start.
The VSUP
pin can tolerate automotive transient conditions
such as load dump to 40 V. The SBC is able to detect when
V
SUP
falls below 3.0 V typical. This undervoltage state is
detected and retained in the parts Mode Control Register
(MCR) as the BATFAIL bit. This detection capability is
available across all operating modes.
Note
For a detailed description of all the registers
mentioned in this section, refer to the section titled
SPI
Interface And Register Description
beginning on page
42
.
The SBC incorporates a V
SUP
level early warning function,
which provides a maskable interrupt if the VSUP voltage level
falls below 6.0 V typical. Hysteresis is used to reduce false
detections. The early warning function works only in Normal
and Standby operation modes. An undervoltage at the VSUP
pin is reported in the Input Output Register (IOR).
VDD REGULATOR
The VDD regulator provides a 5.0 V low dropout voltage
capable of supplying up to 200 mA with monitoring circuitry
for undervoltage detection and a reset function. The VDD
regulator is protected against overcurrent and short circuit
conditions. It has overtemperature detection and will set
warning flags (bit VDDTEMP in the MCR and INTR registers)
and has overtemperature shutdown with hysteresis.
V2 REGULATOR
The V2 regulator feature provides for a second 5.0 VDC
voltage source The internal V2 circuitry will drive an external
series pass transistor, substantially increasing the available
supply current. Two pins, the V2 and the V2CTRL, are used
to sense and drive the series pass transistor. The output
voltage is 5.0 V and tracks the VDD regulator. The MJD32C
transistor is recommended for use as the external pass
device. Other PNP transistors can be used but depending on
the device’s gain, an external resistor-capacitor network
might be needed. V2 is also the supply voltage for the on-
board CAN module. An undervoltage condition for the V2
voltage is reported in the IOR Register (bit V2LOW set to
logic [1] if V2 falls below 4.0 V typical).
HS VSUP SWITCH OUTPUT
The HS output is a 2.0
typical switch tied to the VSUP
pin. It can power or bias external switches and their
associated pullup or put-downs or other circuitry. An example
is biasing a set of switches connected to the L0 L3 wake-up
input pins. The HS VSUP output current is limited to 200 mA
and is protected against short circuits conditions and will
report an overtemperature shutdown condition (bit HSOT in
the IOR register and bit HSOT - V2LOW in the INTR register).
The HS output “on” state is set by the HSON bit in the IOR
register. A cyclic mode of operation can be implemented
using an internal timer in the Sleep and Stop operating
modes. It can also be turned on in Normal or Standby modes
to drive loads or supply peripheral components. No internal
protection circuitry is provided, however. Dedicated chip
protection circuitry is required for inductive load applications.
The HS output pin should not go below - 0.3 V.
BATTERY FAIL EARLY WARNING
Refer to the discussion under the heading, Supply Voltage
at VSUP above.
INTERNAL CLOCK
The 33742 has an internal clock used to generate all
timings (reset, watchdog, cyclic wake-up, filtering time, etc.).
There are two on-board oscillators;: a higher accuracy (±12
percent) oscillator used in Normal Request, Normal, and
Standby modes,; and a lower accuracy (±30 percent)
oscillator used during Sleep and Stop modes.
OPERATIONAL MODES
INTRODUCTION
The 33742 has four modes of operation, all controllable via
the SPI. The modes are Standby, Normal, Stop, and Sleep.
An additional temporary mode called
Normal Request mode
is automatically accessed by the device after reset or wake-
up from Stop mode. A Reset mode is also implemented.
Special modes and configurations are possible for debug and
program microcontroller flash memory.
Table 7
, page 25, offers a summary of the functional
modes.
STANDBY MODE
In Standby mode only the VDD
regulator is ON. The V2
regulator is turned OFF by disabling the V2CTRL pin. Other
functions available are the L0 L3 inputs read through via the
SPI and HS output activation.
The CAN interface is not able to send messages. If a CAN
message is received, the CANWU bit is set. The watchdog
timer is running.
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