• Part: SN65HVD1040-HT
  • Description: LOW-POWER CAN TRANSCEIVER
  • Manufacturer: Texas Instruments
  • Size: 587.12 KB
Download SN65HVD1040-HT Datasheet PDF
Texas Instruments
SN65HVD1040-HT
SN65HVD1040-HT is LOW-POWER CAN TRANSCEIVER manufactured by Texas Instruments.
FEATURES - Improved Drop-in Replacement for the TJA1040 - ±12 k V ESD Protection - Low-Current Standby Mode with Bus Wake-up: 5 μA Typical - Bus-Fault Protection of - 27 V to 40 V - Rugged Split-Pin Bus Stability - Dominant Time-Out Function - Thermal Shutdown Removed - Power-Up/Down Glitch-Free Bus Inputs and Outputs - High Input Impedance with Low VCC - Monotonic Outputs During Power Cycling - Device Net Vendor ID # 806 APPLICATIONS - Down-Hole Drilling - High Temperature Environments - Vibration/Modal Analysis - Multi-Channel Data Acquisition - Acoustics/Dynamic Strain Gauges - Pressure Sensors SUPPORTS EXTREME TEMPERATURE APPLICATIONS - Controlled Baseline - One Assembly/Test Site - One Fabrication Site - Available in Extreme (- 55°C/210°C) Temperature Range (1) - Extended Product Life Cycle - Extended Product-Change Notification - Product Traceability - Texas Instruments high temperature products utilize highly optimized silicon (die) solutions with design and process enhancements to maximize performance over extended temperatures. All devices are characterized and qualified for 1000 hours continuous operating life at maximum rated temperature. (1) Custom temperature ranges available DESCRIPTION The SN65HVD1040 meets or exceeds the specifications of the ISO 11898 standard for use in applications employing a Controller Area Network (CAN). As CAN transceivers, these devices provide differential transmit and receive capability for a CAN controller at signaling rates of up to 1 megabit per second (Mbps). (2) Designed for operation in especially harsh environments, the device features ±12 k V ESD protection on the bus and split pins, cross-wire, overvoltage and loss of ground protection from - 27 to 40 V, a - 12 V to 12 V monmode range, and will withstand voltage transients...