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TCAN1044X

The TCAN1044X is an electronic component from Texas Instruments. View the full TCAN1044X datasheet below including electrical characteristics, absolute maximum ratings.

Manufacturer

Texas Instruments

Category

CAN Transceivers

Overview

The TCAN1044-Q1 is a high speed controller area network (CAN) transceiver that meets the physical layer requirements of the ISO 11898-2:2016 highspeed CAN specification.

The TCAN1044-Q1 transceiver supports both classical CAN and CAN FD networks up to 8 megabits per second (Mbps). The TCAN1044-Q1 includes internal logic level translation via the VIO terminal to allow for interfacing the transceiver IOs directly to 1.8-V, 2.5-V, 3.3-V, or 5-V logic IOs. The transceiver has a low-power standby mode which supports remote wake-up via the ISO 11898-2:2016 defined wake-up pattern (WUP). The TCAN1044-Q1 transceiver also includes many protection and diagnostic features including thermal-shutdown (TSD), TXD-dominant time-out (DTO), supply undervoltage detection, and bus fault protection up to ±58 V.

Features

  • 1 · AEC-Q100: Qualified for automotive applications
  • -Temperature grade 1: -40°C to 125°C TA
  • Meets the requirements of ISO 11898-2:2016 and ISO 11898-5:2007 physical layer standards
  • Support of classical CAN and optimized CAN FD performance at 2, 5, and 8 Mbps
  • -Short and symmetrical propagation delays and fast loop times for enhanced timing margin
  • -Higher data rates in loaded CAN networks
  • IO voltage range supports 1.7 V to 5.5 V
  • -Support for 1.8-V, 2.5-V, 3.3-V, and 5-V applications
  • Receiver common mode input voltage: ±12 V
  • Protection features:
  • -Bus fault protection: ±58 V
  • -Under-voltage protection
  • -TXD-dominant time-out (DTO)
  • -Data rates down to 9.2 kbps
  • -Thermal-shutdown protection (TSD)
  • Operating modes:
  • -Normal mode
  • -Low power standby mode supporting remote wake-up request
  • Optimized behavior when unpowered
  • -Bus and logic pins are high impedance (no load to operating bus or application)
  • -Hot-plug capable: power up/down glitch free operation on bus and RXD output
  • Junction temperatures from: -40°C to 150°C
  • Available in SOIC (8), SOT23 (8) packages (2.9 mm x 1.60 mm) and leadless VSON (8) packages (3.0 mm x 3.0 mm) with improved automated optical inspection (AOI) capability

Applications

  • Automotive and Transportation
  • -Body control modules
  • -Automotive gateway
  • -Advanced driver assistance system (ADAS)
  • -Infotainment

1

TCAN1044-Q1, TCAN1044V-Q1

SLLSF17A -AUGUST 2019-REVISED DECEMBER 2019

Pin Configuration

Not to scale

Electrical Characteristics

Over recomended operating conditions with TA = -40 °C to 125 °C (unless otherwise noted)

PARAMETERPARAMETERPARAMETERTEST CONDITIONSMINTYPMAXUNIT
Driver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical Characteristics
V O(DOM)Dominant output voltageCANHSee Figure 6 and Figure 14, TXD = 0 V, STB = 0 V, 50 Ω ≤ R L ≤ 65 Ω , C L = open,2.754.5V
normal modeCANLR CM = open0.52.25V
V O(REC)Recessive output voltage normal modeCANH and CANLSee Figure 6 and Figure 14, TXD = V IO , STB = 0 V, R L = open (no load), R CM = open20.5 V CC3V
V SYMDriver symmetry (V O(CANH) + V O(CANL) )/V CCDriver symmetry (V O(CANH) + V O(CANL) )/V CCSee Figure 6 and Figure 18, STB = 0 V, R L = 60 Ω , C SPLIT = 4.7 nF, C L = open, R CM = open, TXD = 250 kHz, 1 MHz, 2.5 MHz0.91.1V/V
V SYM_DCDC output symmetry (V CC - V O(CANH) - V O(CANL) )DC output symmetry (V CC - V O(CANH) - V O(CANL) )See Figure 6 and Figure 14, STB = 0 V, R L = 60 Ω , C L = open-400400mV
V OD(DOM)Differential output voltage normal mode DominantCANH - CANLSee Figure 6 and Figure 14, TXD = 0 V, STB = 0 V, 50 Ω ≤ R L ≤ 65 Ω , C L = open1.53V
V OD(DOM)See Figure 6 and Figure 14, TXD = 0 V, STB = 0 V, 45 Ω ≤ R L ≤ 70 Ω , C L = open1.43.3V
V OD(DOM)See Figure 6 and Figure 14, TXD = 0 V, STB = 0 V, R L = 2240 Ω , C L = open1.55V
V OD(REC)Differential output voltage normal modeCANH - CANLSee Figure 6 and Figure 14, TXD = V IO , STB = 0 V, R L = 60 Ω , C L = open-12012mV
V OD(REC)RecessiveCANH - CANLSee Figure 6 and Figure 14, TXD = V IO , STB = 0 V, R L = open, C L = open-5050mV
V O(STB)Bus output voltage standby modeCANHSee Figure 6 and Figure 14, STB = V IO , R-0.10.1V
V O(STB)Bus output voltage standby modeCANLL = open (no load), R = open-0.10.1V
V O(STB)CANH - CANLCM-0.20.2V
I OS(SS_DOM)Short-circuit steady-state output current, normal modeShort-circuit steady-state output current, normal modeSee Figure 11 and Figure 14, STB = 0 V, V (CANH) = -15 V to 40 V, CANL = open, TXD = 0 V-115mA
dominant,dominant,See Figure 11 and Figure 14, STB = 0 V, V (CAN_L) = -15 V to 40 V, CANH = open, TXD = 0 V115mA
I OS(SS_REC)Short-circuit steady-state output current, recessive, normal modeShort-circuit steady-state output current, recessive, normal modeSee Figure 11 and Figure 14, STB = 0 V, -27 V ≤ V BUS ≤ 32 V, Where V BUS = CANH = CANL, TXD = V IO-55mA
Receiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical Characteristics
V ITInput threshold voltage normal modeInput threshold voltage normal modeSee Figure 7, Table 1, and Table 7 STB = 0 V, -12 V ≤ V CM ≤ 12 V500900mV
V IT(STB)Input threshold standby modeInput threshold standby modeSee Figure 7, Table 1, and Table 7 STB = V IO , -12 V ≤ V CM ≤ 12 V4001150mV
V DOMNormal mode dominant state differential input voltage rangeNormal mode dominant state differential input voltage rangeSee Figure 7, Table 1, and Table 7 STB = 0 V, -12 V ≤ V CM ≤ 12 V0.99V
V RECNormal mode recessive state differential input voltage rangeNormal mode recessive state differential input voltage rangeSee Figure 7, Table 1, and Table 7 STB = 0 V, -12 V ≤ V CM ≤ 12 V-40.5V
V DOM(STB)Standby mode dominant state differential input voltage rangeStandby mode dominant state differential input voltage rangeSee Figure 7, Table 1, and Table 7 STB = V IO , -12 V ≤ V CM ≤ 12 V1.159V
V REC(STB)Standby mode recessive state differential input voltage rangeStandby mode recessive state differential input voltage rangeSee Figure 7, Table 1, and Table 7 STB = V IO , -12 V ≤ V CM ≤ 12 V-40.4V
V HYSHysteresis voltage for input threshold normal modeHysteresis voltage for input threshold normal modeSee Figure 7, Table 1, and Table 7 STB = 0 V, -12 V ≤ V CM ≤ 12 V100100mV
V CMCommon mode range normal and standby modesCommon mode range normal and standby modesSee Figure 7 and Table 7-1212V
I LKG(IOFF)Unpowered bus input leakage currentUnpowered bus input leakage currentCANH = CANL = 5 V, V CC = V IO = GND5μA

Absolute Maximum Ratings

over operating free-air temperature range (unless otherwise noted) (1)(2)

MINMAXUNIT
V CCSupply voltage-0.36V
V IOSupply voltage IO level shifter-0.36V
V BUSCAN Bus IO voltage CANH and CANL-5858V
V DIFFMax differential voltage between CANH and CANL-4545V
V Logic_InputLogic input terminal voltage-0.36V
V RXDRXD output terminal voltage range-0.36V
I O(RXD)RXD output current-88mA
T JOperating virtual junction temperature range-40150°C
T STGStorage temperature-65150°C

Recommended Operating Conditions

MINNOMMAXUNIT
V CCSupply voltage4.555.5V
V IOSupply voltage for IO level shifter1.75.5V
I OH(RXD)RXD terminal high level output current-2mA
I OL(RXD)RXD terminal low level output current2mA
T AOperating ambient temperature-40125°C

Thermal Information

TCAN1044x-Q1TCAN1044x-Q1TCAN1044x-Q1UNIT
THERMAL METRIC (1)THERMAL METRIC (1)D (SOIC)DDF (SOT)DRB (VSON)
R Θ JAJunction-to-ambient thermal resistance128.1119.949.9°C /W
R Θ JC(top)Junction-to-case (top) thermal resistance68.361.858.2°C /W
R Θ JBJunction-to-board thermal resistance71.639.723.9°C /W
Ψ JTJunction-to-top characterization parameter19.72.11.7°C /W
Ψ JBJunction-to-board characterization parameter70.839.523.8°C /W
R Θ JC(bot)Junction-to-case (bottom) thermal resistance--6.4°C /W

Typical Application

The TCAN1044-Q1 transceiver can be used in applications with a host controller or FPGA that includes the link layer portion of the CAN protocol. Figure 17 shows a typical application configuration for 5 V controller applications. The bus termination is shown for illustrative purposes.

Figure 17. Transceiver Application Using 5 V IO Connections

Related Variants

The following components are covered by the same datasheet.

Part NumberManufacturerPackage
TCAN1044Texas Instruments
TCAN1044-Q1Texas Instruments
TCAN1044-Q1VTexas Instruments
TCAN1044DRQ1Texas Instruments8-SOIC (0.154", 3.90mm Width)
TCAN1044VTexas Instruments
TCAN1044V-Q1Texas Instruments
TCAN1044VDRQ1Texas Instruments8-SOIC (0.154", 3.90mm Width)
TCAN1044X-Q1Texas Instruments
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