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TCAN1051HVDRBRQ1 Datasheet(PDF) 8 Page - Texas Instruments |
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TCAN1051HVDRBRQ1 Datasheet(HTML) 8 Page - Texas Instruments |
8 / 38 page 8 TCAN1051-Q1, TCAN1051V-Q1, TCAN1051H-Q1 TCAN1051HV-Q1, TCAN1051G-Q1, TCAN1051GV-Q1 TCAN1051HG-Q1, TCAN1051HGV-Q1 SLLSET0C – OCTOBER 2016 – REVISED MAY 2017 www.ti.com Product Folder Links: TCAN1051-Q1 TCAN1051V-Q1 TCAN1051H-Q1 TCAN1051HV-Q1 TCAN1051G-Q1 TCAN1051GV-Q1 TCAN1051HG-Q1 TCAN1051HGV-Q1 Submit Documentation Feedback Copyright © 2016–2017, Texas Instruments Incorporated (1) All typical values are at 25°C and supply voltages of VCC = 5 V and VIO = 5 V, RL = 60 Ω. 7.6 Electrical Characteristics Over recommended operating conditions, TA = –55°C to 125°C (unless otherwise noted). PARAMETER TEST CONDITIONS MIN TYP(1) MAX UNIT SUPPLY CHARACTERISTICS ICC 5-V Supply current Normal mode (dominant) See Figure 5, TXD = 0 V, RL = 60 Ω, CL = open, RCM = open, S = 0V 40 70 mA See Figure 5, TXD = 0 V, RL = 50 Ω, CL = open, RCM = open, S = 0V 45 80 Normal mode (dominant – bus fault) See Figure 5, TXD = 0 V, S = 0V, CANH = -12V, RL = open, CL = open, RCM = open 180 Normal mode (recessive) See Figure 5, TXD = VCC, RL = 50 Ω, CL = open, RCM = open, S = 0V 1.5 2.5 Silent mode See Figure 5, TXD = VCC, RL = 50 Ω,CL = open, RCM = open, S = VCC 1.5 2.5 IIO I/O supply current Normal and Silent modes RXD Floating, TXD = S = 0 or 5.5 V 90 300 µA UVVCC Rising undervoltage detection on VCC for protected mode All devices 4.2 4.4 V Falling undervoltage detection on VCC for protected mode 3.8 4.0 4.25 VHYS(UVVCC) Hysteresis voltage on UVVCC 200 mV UVVIO Undervoltage detection on VIO for protected mode Devices with the "V" Suffix (I/O level- shifting) 1.3 2.75 V VHYS(UVVIO) Hysteresis voltage on UVVIO for protected mode 80 mV S TERMINAL (MODE SELECT INPUT) VIH High-level input voltage Devices with the "V" suffix (I/O level-shifting) 0.7 x VIO V Devices without the "V" suffix (5-V only) 2 VIL Low-level input voltage Devices with the "V" suffix (I/O level-shifting) 0.3 x VIO Devices without the "V" suffix (5-V only) 0.8 IIH High-level input leakage current S = VCC or VIO = 5.5 V 30 µA IIL Low-level input leakage current S = 0 V, VCC = VIO = 5.5 V –2 0 2 Ilkg(OFF) Unpowered leakage current S = 5.5 V, VCC = VIO = 0 V -1 1 TXD TERMINAL (CAN TRANSMIT DATA INPUT) VIH High-level input voltage Devices with the "V" suffix (I/O level-shifting) 0.7 x VIO V Devices without the "V" suffix (5-V only) 2 VIL Low-level input voltage Devices with the "V" suffix (I/O level-shifting) 0.3 x VIO Devices without the "V" suffix (5-V only) 0.8 IIH High-level input leakage current TXD = VCC = VIO = 5.5 V –2.5 0 1 µA IIL Low-level input leakage current TXD = 0 V, VCC = VIO = 5.5 V –100 -25 –7 Ilkg(OFF) Unpowered leakage current TXD = 5.5 V, VCC = VIO = 0 V –1 0 1 CI Input capacitance VIN = 0.4 * sin(4E6 * π * t) + 2.5 V 5 pF |
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