MC33388DR2 Freescale Semiconductor, MC33388DR2 Datasheet

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MC33388DR2

Manufacturer Part Number
MC33388DR2
Description
IC TOLERANT CAN INT FAULT 14SOIC
Manufacturer
Freescale Semiconductor
Datasheet

Specifications of MC33388DR2

Controller Type
CAN Interface
Interface
CAN
Voltage - Supply
4.75 V ~ 5.25 V
Current - Supply
5mA
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
14-SOIC (3.9mm Width), 14-SOL
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
Q1163428C

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Freescale Semiconductor, Inc.
Semiconductor Technical Data
Fault Tolerant CAN Interface
© Motorola, Inc., 2001. All rights reserved.
automotive body electronic multiplexing applications. It operates in
differential mode, allowing ground shifts up to 1.5V, reducing RFI
disturbances. It offers very low standby current in sleep and standby
mode operation and supports communication speeds up to 125kBauds.
driver is able to detect fault conditions and automatically switches into
appropriate default mode. Under fault condition, it continuously monitors
bus failures in order to switch back to normal bus operation as soon as
faults disappeared.
• Very low sleep/standby current (15uA typical)
• Baud rate from 10kBaud up to 125kBauds
• Automatic switching to single wire mode in case of bus failures and
• Supports one wire transmission modes with ground offset up to 1.5V
• Internal bus driver slope control function to minimize RFI
• Bus line short-circuit protected to battery, VDD and ground
• Bus line protected against automotive transients
• Thermal protection of bus line drivers
• Supports unshielded twisted pair bus
• An unpowered node does not disturb the bus lines
• Wake-up capability triggered from bus message and wake-up input pin
• Wake up pin with dual edges sensitivity
• Battery fail flag reported on NERR output
• Ambient temperature range from -40°C to 125°C
return to differential mode if bus failures disappear
The MC33388 is a CAN physical interface device, dedicated to
It is fully protected against harsh automotive environments and the
WAKE
NERR
STB
INH
EN
RX
TX
Archived by Freescale Semiconductor, Inc., 2008
MUX
VDD
FAILURE DETECTION
MODE CONTROL
PROTECTION
CONTROL
DRIVER
SLOPE
&
Simplified Block Diagram
VDD
GND
BAT
S2
WAKE-UP LOGIC
S4
RECEIVER
S5
MC33388D
Device
12.5k
S3
AUTOMOTIVE FAULT TOLERANT
S1
NERR
WAKE
STB
INH
RX
EN
CAN PHYSICAL LAYER
TX
ORDERING INFORMATION
MC33388
PIN CONNECTIONS
SEMICONDUCTOR
TECHNICAL DATA
T
Temperature Range
1
2
3
4
5
6
7
A
= -40 to 125°C
(Top View)
Operating
Order Number: MC33388/D
RTL
CANH
CANL
RTH
PLASTIC PACKAGE
CASE 751A-03
D SUFFIX
12
11
8
14
13
10
9
SO-14
BAT
GND
CANL
CANH
VDD
RTL
RTH
Rev. 2.3, 2001
SO-14
Package
TM

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MC33388DR2 Summary of contents

Page 1

... Archived by Freescale Semiconductor, Inc., 2008 Freescale Semiconductor, Inc. Semiconductor Technical Data Fault Tolerant CAN Interface The MC33388 is a CAN physical interface device, dedicated to automotive body electronic multiplexing applications. It operates in differential mode, allowing ground shifts up to 1.5V, reducing RFI disturbances. It offers very low standby current in sleep and standby mode operation and supports communication speeds up to 125kBauds ...

Page 2

... Archived by Freescale Semiconductor, Inc., 2008 MAXIMUM RATING Ratings DC Supply Voltage Pin 10 DC Voltage On Pins and 7 DC Voltage On Pins 11, 12 Transient Voltage At Pins 11, 12 ≥ < 500ms 0 < V < 5.5V BAT Transient Voltage On Pins 11, 12 (Coupled Through 1nF Capacitor) DC Voltage On Pin 7 Current In Pin 7 ...

Page 3

... Archived by Freescale Semiconductor, Inc., 2008 ELECTRICAL CHARACTERISTICS V DD Conditions STB, EN, TX Pins High Level Input Voltage Low Level Input Voltage High Level Input Current (STB, EN 4V) i Low Level Input Current (STB High Level Input Current ( Low Level Input Current (V ...

Page 4

... Archived by Freescale Semiconductor, Inc., 2008 ELECTRICAL CHARACTERISTICS V DD Conditions CANL Output Voltage, Dominant 40mA; Normal Operating Mode CANL CANH Output Current ( CANH CANL Output Current (V = 14V CANL Detection Threshold For Short-circuit To Battery Voltage (Normal Mode) Detection Threshold For Short-circuit To Battery Voltage (Standby/Sleep Mode) CANH Output Current (Sleep Mode ...

Page 5

... Archived by Freescale Semiconductor, Inc., 2008 AC CHARACTERISTICS V = 4,75 to 5,25 CANL and CANH Slew Rates (10% to 90%). Rising or Falling Edges. NOTE2. Propagation Delay Low. NOTE2. Propagation Delay High. NOTE2. Min. Dominant Time For Wake-up On CANL or CANH (Vbat Standby And Sleep Modes 12V) BAT Min. WAKE Time For Wake-up (Vbat Standby And Sleep Modes ...

Page 6

... Archived by Freescale Semiconductor, Inc., 2008 Tx high: RECESSIVE Bit V TX CANL CANH V V diff onRX RECESSIVE Bit MC33388 Figure 1. Device Signal Waveforms Tx low: DOMINANT Bit th(rd) DOMINANT Bit Figure 2. Test Circuit For AC Characteristics VDD R C CANL C CANH 100ohms C = 1nF MOTOROLA Tx high: RECESSIVE Bit 5V 3 ...

Page 7

... Archived by Freescale Semiconductor, Inc., 2008 Introduction The MC33388 is a low speed CAN fault tolerant physical interface designed for automotive multiplexed electronic systems. The MC33388 addresses the low speed body electronics application, in which the speed of communications is between 10 and 125kBauds, on two wires bus configurations ...

Page 8

... Archived by Freescale Semiconductor, Inc., 2008 Battery Fail Flag When the VBAT supply drops below “battery voltage for setting power on flag” threshold, this information is internally latched. This means that the system power supply has been lost (disconnected and reconnected for instance). ...

Page 9

... Archived by Freescale Semiconductor, Inc., 2008 Figure 3. State Machine And Operation Modes Normal mode (1, 1) (BUS failure, ON) (1, 1) (1, 1) (1, 0) (0, 1) Receive Only mode (1, 0) (VBAT fail flag, ON) Legend: Transceiver mode (STB state, EN state) (NERR function, INH state) STB EN Mode INH 0 0 VBAT ...

Page 10

... Archived by Freescale Semiconductor, Inc., 2008 Failure # Description No failure No failure No failure 1 CANH wire interrupted 2 CANL wire interrupted 3 CANH short to BAT 4 CANL short to GND 5 CANH short to GND 6 CANL short to BAT 7 CANL short to CANH 8 CANH short to VDD NOTE: S4 and S5 behaviours are only dependant upon the device operating mode. ...

Page 11

... Archived by Freescale Semiconductor, Inc., 2008 VBAT (input): This is the supply line of the device. It can be directly connected to the battery line, can operate up to 27VDC and sustains up to 40V during load dump condition. The supply current is dependant upon the device operation mode. In low power mode low as 12uA typical. A battery fail flag circuitry is associated to this pin ...

Page 12

... Archived by Freescale Semiconductor, Inc., 2008 BATTERY IC1 Vdd I/O MCU Port CAN MODULE Vss Figure 4 above is the typical application schematic. All MC33388 capabilities are utilized: CAN interface, normal and low power modes, wake up source from CAN bus or wake up switch. The MC33388 VDD is supplied through an external voltage regulator having an inhibit input pin ...

Page 13

... Archived by Freescale Semiconductor, Inc., 2008 Introduction The device is designed for optimized noise emission (EMI) and high susceptibility performances (EMC). The source for both disturbance and susceptibility is primarily coming form the bus line wires. They are by far the longest connections compared to the printed circuit board of the application receiving the MC333388, the microcontroller and the other components ...

Page 14

... Archived by Freescale Semiconductor, Inc., 2008 Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “ ...

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