Datasheet TCAN6062 (Texas Instruments) - 8
| Manufacturer | Texas Instruments |
| Description | CAN XL transceiver with standby mode |
| Pages / Page | 44 / 8 — TCAN6062. www.ti.com. 5.7 Dissipation Ratings. PARAMETER. TEST … |
| File Format / Size | PDF / 1.6 Mb |
| Document Language | English |
TCAN6062. www.ti.com. 5.7 Dissipation Ratings. PARAMETER. TEST CONDITIONS. MIN. TYP. MAX. UNIT. 5.8 Electrical Characteristics. MAX UNIT

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TCAN6062
SLVSM22 – JUNE 2026
www.ti.com 5.7 Dissipation Ratings PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
VCC = 5V, VIO = 3.3V, TJ = 27°C, RL = 60Ω, CL = 100pF, CL_RXD = 15pF 100 mW TXD input = 250kHz 50% duty cycle square wave: Device in SIC mode VCC = 5.25V, VIO = 5.5V, TJ = 150°C, RL = 50Ω, CL = 100pF, CL_RXD = 15pF 132 mW TXD input = 2.5MHz 50% duty cycle square Average power dissipation wave: Device in SIC mode PD Normal mode VCC = 5V, VIO = 3.3V, TJ = 27°C, RL = 50Ω, CL = 25F, CL_RXD = 15pF 216 mW TXD input = 10Mbps Logical_0 PWM symbol pulse: Device in FAST TX mode VCC = 5.25V, VIO = 5.5V, TJ = 150°C, RL = 45Ω, CL = 25pF, CL_RXD = 15pF 245 mW TXD input = 20Mbps Logical_0 PWM symbol pulse: Device in FAST TX mode TTSD Thermal shutdown temperature 192 °C TTSD_HYS Thermal shutdown hysteresis 10
5.8 Electrical Characteristics
parameters valid over recommended operating conditions with -40℃ ≤ TJ ≤ 150℃ (Typical values are at VCC = 5V, VIO = 3.3V, Device ambient maintained at 27℃ unless otherwise noted)
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Driver - SIC mode
VCANH(D) Dominant output voltage CANH V 2.75 3.5 4.5 V CC = 4.5V to 5.5V, TXD = 0V, STB = 0V SIC mode 45Ω ≤ R V L ≤ 65Ω, CL = open CANL(D) CANL 0.5 1.3 2.25 V VCANH(D) CANH V 3 3.5 4.26 V Dominant output voltage CC = 4.75V to 5.25V, TXD = 0V, STB = 0V SIC mode VCANL(D) CANL 45Ω ≤ R 0.75 1.3 2.01 V L ≤ 65Ω, CL = open VCANH(R), Recessive output voltage CANH, CANL w.r.t VCC = 4.5V to 5.5V, TXD = VIO, STB = 0V 2 2.5 3 V VCANL(R) SIC mode GND RL = open (no load), CL = open V V CC = 4.75V to 5.25V, TXD = VIO, STB = CANH(R), Recessive output voltage CANH, CANL w.r.t 0V 2.256 2.5 2.756 V VCANL(R) normal mode GND 45Ω ≤ RL ≤ 65Ω , CL = 4.7nF TXD = 0V, STB = 0V 1.5 3 V 45Ω ≤ RL ≤ 65Ω, CL = open Differential output voltage TXD = 0V, STB = 0V VDIFF(D) SIC mode CANH - CANL 1.5 3.3 V 45Ω ≤ R Dominant L ≤ 70Ω, CL = open TXD = 0V, STB = 0V 1.5 5 V RL = 2240Ω, CL = open TXD = VIO, STB = 0V –50 50 mV RL = open, CL = open Differential output voltage VDIFF(R) CANH - CANL SIC mode: Recessive TXD = VIO, STB = 0V 45Ω ≤ RL ≤ 65Ω, CSPLIT = 4.7nF, CL = –50 50 mV open DC output symmetry in SIC mode (dominant and STB = 0V VSYM_DC recessive) –300 300 mV R (V L = 60Ω, CL = open CC - VO(CANH) - VO(CANL)) VCC = 4.75V to 5.25V, TXD toggling at Driver symmetry in SIC mode 250kHz, 1MHz, 2.5MHz, STB = 0V VSYM 0.95 1.05 V/V (VO(CANH) + VO(CANL))/(VCANH(R) + VCANL(R)) 45Ω ≤ RL ≤ 65Ω, CSPLIT = 4.7nF, CL = open Differential input resistance in SIC dominant RID(DOM) TXD= 0V, STB = 0V 40 ohm phase RSE_SIC_ACT_ Single ended resistance CANH/CANL in active 2V ≤ VCANH/L ≤ VCC - 2V 37.5 50 66.5 Ω REC recessive phase RDIFF_SIC_AC Differential input resistance in active recessive 2V ≤ VCANH/L ≤ VCC - 2V 75 100 133 Ω T_REC phase 8 Submit Document Feedback Copyright © 2026 Texas Instruments Incorporated 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