Datasheet TCAN6062 (Texas Instruments) - 7
| Fabricante | Texas Instruments |
| Descripción | CAN XL transceiver with standby mode |
| Páginas / Página | 44 / 7 — TCAN6062. www.ti.com. 5.6 Supply Characteristics. PARAMETER. TEST … |
| Formato / tamaño de archivo | PDF / 1.6 Mb |
| Idioma del documento | Inglés |
TCAN6062. www.ti.com. 5.6 Supply Characteristics. PARAMETER. TEST CONDITIONS. MIN. TYP. MAX. UNIT

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TCAN6062 www.ti.com
SLVSM22 – JUNE 2026
5.6 Supply 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
TXD = 0V, STB = 0V Dominant 57 75 mA RL = 60Ω, CL = open TXD = 0V, STB = 0V Dominant 61 80 mA RL = 50Ω, CL = open ICC Supply current SIC mode TXD = V Recessive IO, STB = 0V 13 18 mA RL = 50Ω, CL = open TXD = 0V, STB = 0V Dominant with CANH = CANL = ±25V 135 mA bus fault RL = open, CL = open Supply current Fast TX Level_0 or TXD = PWM symbol, STB = 0V, RL = 45Ω 45 60 mA ICC mode Level_1 TXD = PWM symbol, STB = 0V, RL = 50Ω 45 60 mA Supply current Fast RX TXD = PWM symbol, STB = 0V, C I RXD = CC Fast-RX Mode 12 19 mA mode 15pF TXD = STB = V I IO, RL = 50Ω, CL = open, CC 1 µA TJ ≤ 85 °C Supply current standby mode (devices with TXD = STB = V I IO, RL = 50Ω, CL = open, CC 0.2 2 µA VIO ) TJ ≤ 125 °C TXD = STB = V I IO, RL = 50Ω, CL = open, CC 5 µA TJ ≤ 150 °C TXD = STB = VCC, RL = 50Ω, CL = open, 13.5 TJ ≤ 85 °C Supply current standby mode (devices without TXD = STB = V I CC, RL = 50Ω, CL = open, CC 15 µA VIO ) TJ ≤ 125 °C TXD = STB = VCC, RL = 50Ω, CL = open, 16 TJ ≤ 150 °C TXD = 0V, STB = 0V Dominant RL = 50Ω, CL = open 125 170 µA I/O supply current SIC RXD floating IIO mode Devices with V TXD = V IO IO, STB = 0V Recessive RL = 50Ω, CL = open 25 100 µA RXD floating TXD = V I/O supply current standby mode IO, STB = VIO IIO R 16 µA Devices with V L = 50Ω, CL = open IO RXD floating, TJ ≤ 150 °C UVCC(R) Undervoltage detection VCC rising Ramp up 4.2 4.4 V UVCC(F) Undervoltage detection on VCC falling Ramp down 3.5 4 V UVVCC(H Hysteresis voltage for VCC undervoltage 200 mV YS) lockout Undervoltage detection V UV IO rising (Devices IO(R) Ramp up 1.6 1.65 V with VIO) Undervoltage detection on V UV IO falling (Devices IO(F) Ramp down 1.4 1.5 V with VIO) UVVIO(HY Hysteresis voltage for VIO undervoltage 45 mV S) lockout Copyright © 2026 Texas Instruments Incorporated Submit Document Feedback 7 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