TLE6254G Infineon Technologies AG, TLE6254G Datasheet

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TLE6254G

Manufacturer Part Number
TLE6254G
Description
Fault Tolerant Differential CAN-Transceiver
Manufacturer
Infineon Technologies AG
Datasheet

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Fault Tolerant Differential CAN-Transceiver
Preliminary Data Sheet
1
• Data transmission rate up to 125 kBaud
• Very low current consumption in stand-by and sleep
• Implemented receive-only mode
• Optimized EMC behavior
• Wake-up input pin, dual edge sensitive
• Battery fail flag
• Extended bus failure management to guarantee safe
• Full support of dual failure conditions
• Fully wake-up capability during all bus line failures conditions
• Supports one-wire transmission mode with ground offset voltages up to 1.5 V
• Prevention from bus occupation in case of CAN controller failure
• Thermal protection
• Bus line error protection against transients in automotive environment
Type
TLE 6254 G
2
The CAN-Transceiver TLE 6254 works as the interface between the CAN protocol
controller and the physical CAN bus-lines.
It is optimized for low-speed data transmission (up to 125 kBaud) in automotive and
industrial applications.
While no data is transferred, the power consumption can be minimized by multiple low
power modes.
In normal operation mode a differential signal is transmitted/received. When bus wiring
failures are detected the device automatically switches in a dedicated single-wire mode
to maintain communication.
Data Sheet Version 1.2
operation mode
operation during all bus line failure events
Features
Description
Ordering Code
Q 67006-A9528
1
Package
P-DSO-14-13 (SMD)
P-DSO-14-13
TLE 6254 G
2001-12-12

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TLE6254G Summary of contents

Page 1

Fault Tolerant Differential CAN-Transceiver Preliminary Data Sheet 1 Features • Data transmission rate up to 125 kBaud • Very low current consumption in stand-by and sleep operation mode • Implemented receive-only mode • Optimized EMC behavior • Wake-up input pin, ...

Page 2

Pin Configuration (top view) Figure 1 Table 1 Pin Definitions and Functions Pin No. Symbol 1 INH 2 TxD 3 RxD 4 NERR 5 NSTB 6 ENT Data Sheet Version 1.2 P-DSO-14-13 INH 1 2 TxD RxD 3 NERR ...

Page 3

Table 1 Pin Definitions and Functions (cont’d) Pin No. Symbol RTH 9 RTL CANH 12 CANL 13 GND Data Sheet Version 1.2 Function Wake-Up input; if level of indicates a ...

Page 4

Functional Block Diagram RTL 9 CANH 11 CANL 12 RTH 8 Filter GND 13 Figure 2 Block Diagram Data Sheet Version 1.2 Vcc (normal, stand-by, sleep) Driver Output Stage Temp.- Protection 7.2 1.8 -2.8 3.2 7.2 ...

Page 5

Circuit Description The CAN transceiver TLE 6254 works as the interface between the CAN protocol controller and the physical CAN bus-lines. Figure 3 shows the principle configuration of a CAN network. The TLE 6254 is optimized for low-speed data ...

Page 6

Power Down Normal Mode NSTB 1 ENT 0 RxD-Only NSTB 1 NSTB 0 NSTB ENT Go to Sleep Mode NSTB ENT 0 Figure 4 State Diagram Data Sheet Version 1.2 Start Up Power Up ENT INH NSTB 1 high ENT ...

Page 7

Operation Modes, Wake-Up In addition to the normal operation mode, the TLE 6254 offers a receive-only mode as well as two low power operation modes to save power during periods that do not require communication on the CAN bus: ...

Page 8

If either of the supply voltages drops below the specified limits, the transceiver is automatically switched to . Table 2 Truth Table of the CAN Transceiver NSTB ENT Mode stand-by BAT 1) mode 0 0 sleep mode ...

Page 9

When one of the bus failures and 7 is detected, the defective bus wire is disabled by switching off the affected bus termination and the respective output stage. A wake-up from sleep mode via the bus ...

Page 10

Table 4 TLE 6254 versus TLE 6252 TLE 6254 Receive-only mode improved EMC susceptability improved bus failure handling for shorts of the CAN-bus lines to Vcc Threshold for Power-On flag: typ: 2 transition from Vbat-stand-by mode to the ...

Page 11

Absolute Maximum Ratings Parameter V Input voltage at BAT V Logic supply voltage CC Input voltage at TxD, RxD, NERR, NSTB and ENT Input voltage at CANH and CANL Transient voltage at CANH and CANL Input voltage at WAKE ...

Page 12

Operating Range Parameter Logic input voltage Battery input voltage Termination resistances at RTL and RTH Junction temperature Thermal Resistance Junction ambient Thermal Shutdown Junction temperature Wake Input Voltage Wake input voltage Note: In the operating range, the functions given ...

Page 13

Static Characteristics 4.75 V ≤ ≤ 5. ≤ (unless otherwise specified). All voltages are defined with respect to ground. Positive current flowing into the IC. Parameter V V Supplies , CC S Supply current ...

Page 14

Static Characteristics (cont’d) 4.75 V ≤ ≤ 5. ≤ (unless otherwise specified). All voltages are defined with respect to ground. Positive current flowing into the IC. Parameter Transmission Input T×D, Not Stand-By NSTB and ...

Page 15

Static Characteristics (cont’d) 4.75 V ≤ ≤ 5. ≤ (unless otherwise specified). All voltages are defined with respect to ground. Positive current flowing into the IC. Parameter Bus Lines CANL, CANH Differential receiver recessive-to-dominant ...

Page 16

Static Characteristics (cont’d) 4.75 V ≤ ≤ 5. ≤ (unless otherwise specified). All voltages are defined with respect to ground. Positive current flowing into the IC. Parameter Voltage detection threshold for short-circuit to battery ...

Page 17

Static Characteristics (cont’d) 4.75 V ≤ ≤ 5. ≤ (unless otherwise specified). All voltages are defined with respect to ground. Positive current flowing into the IC. Parameter Termination Outputs RTL, RTH V RTL to ...

Page 18

Dynamic Characteristics 4.75 V ≤ ≤ 5. ≤ (unless otherwise specified). All voltages are defined with respect to ground. Positive current flowing into the IC. Parameter CANH and CANL bus output transition time recessive-to-dominant ...

Page 19

Dynamic Characteristics (cont’d) 4.75 V ≤ ≤ 5. ≤ (unless otherwise specified). All voltages are defined with respect to ground. Positive current flowing into the IC. Parameter Propagation delay TxD-to-RxD LOW (recessive to dominant) ...

Page 20

Dynamic Characteristics (cont’d) 4.75 V ≤ ≤ 5. ≤ (unless otherwise specified). All voltages are defined with respect to ground. Positive current flowing into the IC. Parameter Propagation delay TxD-to-RxD HIGH (dominant to recessive) ...

Page 21

Test and Application + 5 V WAKE Figure 5 Test Circuits For isolated testing the CAN Bus Substitute 1 is connected to the CAN Transceiver (see Figure 5). The capacitors R termination resistors RTH lines is simulated by switching ...

Page 22

V bat CAN bus choke *) R R RTL 100 µF *) optional, according to car manufacturers requirements Figure 6 Application Circuit Data Sheet Version 1.2 TLE 6254 G CANH RxD 11 3 CANL TxD 2 ...

Page 23

Package Outlines P-DSO-14-13 (Plastic Dual Small Outline Package) Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book “Package Information” SMD = Surface Mounted Device Data Sheet Version 1.2 Preliminary Data TLE 6254 23 ...

Page 24

... Edition 2001-12-12 Published by Infineon Technologies AG, St.-Martin-Strasse 53, D-81541 München, Germany © Infineon Technologies AG 2001. All Rights Reserved. Attention please! The information herein is given to describe certain components and shall not be consid- ered as warranted characteristics. Terms of delivery and rights to technical change reserved. We hereby disclaim any and all warranties, ...

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