Datasheet TCAN6062 (Texas Instruments) - 5

制造商Texas Instruments
描述CAN XL transceiver with standby mode
页数 / 页44 / 5 — TCAN6062. www.ti.com. 5 Specifications 5.1 Absolute Maximum Ratings. MIN. …
文件格式/大小PDF / 1.6 Mb
文件语言英语

TCAN6062. www.ti.com. 5 Specifications 5.1 Absolute Maximum Ratings. MIN. MAX. UNIT. 5.2 ESD Ratings. VALUE

TCAN6062 www.ti.com 5 Specifications 5.1 Absolute Maximum Ratings MIN MAX UNIT 5.2 ESD Ratings VALUE

该数据表的模型线

文件文字版本

link to page 5 link to page 5 link to page 5 link to page 5
TCAN6062 www.ti.com
SLVSM22 – JUNE 2026
5 Specifications 5.1 Absolute Maximum Ratings
(1) (2)
MIN MAX UNIT
VCC Supply voltage –0.3 6 V VIO Supply voltage I/O level shifter –0.3 6 V CAN bus I/O voltage range on CANH and CANL w.r.t. ground (device powered VBUS –58 58 V with TXD static or toggling, device unpowered) Max differential voltage between CANH and CANL VDIFF –45 45 V VDIFF = (CANH - CANL) VLogic_Input Logic pin input voltage (TXD, STB) –0.3 6 V VRXD Logic output voltage range (RXD) –0.3 6 V IO(RXD) RXD output current –8 8 mA TJ Junction temperature –40 165 °C TSTG Storage temperature –65 150 °C (1) Operation outside the Absolute Maximum Ratings may cause permanent device damage. Absolute Maximum Ratings do not imply functional operation of the device at these or any other conditions beyond those listed under Recommended Operating Conditions. If used outside the Recommended Operating Conditions but within the Absolute Maximum Ratings, the device may not be fully functional, and this may affect device reliability, functionality, performance, and shorten the device lifetime. (2) All voltage values, except differential I/O bus voltages, are with respect to ground terminal.
5.2 ESD Ratings VALUE UNIT
HBM classification level 3A for ±4000 V all pins Human-body model (HBM), per JEDEC JS-001 HBM classification level 3B for VESD Electrostatic discharge global pins CANH and CANL ±10000 V with respect to GND Charged-device model (CDM), per JEDEC JS-002 ±750 V CDM classification level C2B for all pins
5.3 ESD Ratings, IEC Transients VALUE UNIT
SAE J2962-2 per ISO 10605 ±8000 V Powered contact discharge VESD System level electrostatic discharge SAE J2962-2 per ISO 10605 ±15000 V Powered air discharge IEC 62228-3 per ISO 10605 ±8000 V CAN bus terminals (CANH, CANL) to GND Pulse 1 –100 V Pulse 2a 75 V ISO 7637-2 Transient immunity(1) Pulse 3a –150 V VTran Pulse 3b 100 V Direct capacitor coupling, SAE J2962-2 per ISO 7637-3(2) DCC slow transient pulse ±30 V (1) Tested according to IEC 62228-3:2019 CAN Transcievers Section 6.3; standard pulses parameters defined in ISO 7637-2 (2011) (2) Tested according to SAE J2962-2 Copyright © 2026 Texas Instruments Incorporated Submit Document Feedback 5 Product Folder Links: TCAN6062 Document Outline 1 Features 2 Applications 3 Description Table of Contents 4 Pin Configurations and Functions 5 Specifications 5.1 Absolute Maximum Ratings 5.2 ESD Ratings 5.3 ESD Ratings, IEC Transients 5.4 Recommended Operating Conditions 5.5 Thermal Characteristics 5.6 Supply Characteristics 5.7 Dissipation Ratings 5.8 Electrical Characteristics 5.9 Switching Characteristics 5.10 Typical Characteristics 6 Parameter Measurement Information 7 Detailed Description 7.1 Overview 7.1.1 Signal Improvement Capability 7.1.2 CAN XL and FAST Mode 7.2 Functional Block Diagram 7.3 Feature Description 7.3.1 Pin Description 7.3.1.1 TXD 7.3.1.2 GND 7.3.1.3 VCC 7.3.1.4 RXD 7.3.1.5 VIO (only for TCAN6062V) 7.3.1.6 CANH and CANL 7.3.1.7 STB (Standby) 7.3.2 CAN Bus States 7.3.3 Pulse-Width Modulation (PWM) for FAST Mode Signaling 7.3.3.1 PWM Detection and Timing 7.3.3.2 Transition from SIC Mode to FAST RX Mode 7.3.3.3 Transition from SIC Mode to FAST TX Mode 7.3.3.4 PWM Decoding 7.3.3.4.1 PWM Detection Resolution tDECODE 7.3.3.4.2 PWM Decoding in FAST RX Mode 7.3.3.4.3 PWM Decoding in FAST TX Mode 7.3.3.5 Transition from FAST RX/TX Modes to SIC Mode 7.3.4 Out-of-Bounds (OOB) Comparator 7.3.5 TXD Dominant Timeout (DTO) 7.3.6 CAN Bus short-circuit current limiting 7.3.7 Thermal Shutdown (TSD) 7.3.8 Undervoltage Lockout 7.3.9 Unpowered Device 7.3.10 Floating pins 7.4 Device Functional Modes 7.4.1 Operating Modes 7.4.2 Normal Mode 7.4.3 Standby Mode 7.4.3.1 Remote Wake Request via Wake-Up Pattern (WUP) in Standby Mode 7.4.4 Driver and Receiver Function 8 Application and Implementation 8.1 Typical Application 8.1.1 Design Requirements 8.1.1.1 CAN Termination 8.1.2 Detailed Design Procedures 8.1.2.1 Bus Loading, Length and Number of Nodes 8.2 System Examples 8.3 Power Supply Recommendations 8.4 Layout 8.4.1 Layout Guidelines 8.4.2 Layout Example 9 Device and Documentation Support 9.1 Receiving Notification of Documentation Updates 9.2 Support Resources 9.3 Trademarks 9.4 Electrostatic Discharge Caution 9.5 Glossary 10 Revision History 11 Mechanical, Packaging, and Orderable Information