The TLIN2029-Q1 is a local
interconnect network (LIN) physical layer transceiver with integrated wake-up and
protection features, compatible with LIN 2.0, LIN 2.1, LIN 2.2, LIN 2.2 A and
ISO/DIS 17987–4.2 standards. LIN is a single-wire bidirectional bus typically used
for in-vehicle networks using data rates up to 20kbps. The TLIN2029-Q1 is
designed to support 12V applications with wider operating voltage and additional
bus-fault protection.
The LIN receiver supports data rates
up to 100kbps for faster in-line programming. The TLIN2029-Q1 converts the
data stream on the TXD input into a LIN bus signal using a current-limited
wave-shaping driver which reduces electromagnetic emissions (EME). The receiver
converts the data stream to logic level signals that are sent to the microprocessor
through the open-drain RXD pin. Ultra-low current consumption is possible using the
sleep mode which allows wake-up via LIN bus or EN pin.
The integrated resistor, electrostatic
discharge (ESD) and fault protection allows designers to save board space in their
applications.
The TLIN2029-Q1 is a local
interconnect network (LIN) physical layer transceiver with integrated wake-up and
protection features, compatible with LIN 2.0, LIN 2.1, LIN 2.2, LIN 2.2 A and
ISO/DIS 17987–4.2 standards. LIN is a single-wire bidirectional bus typically used
for in-vehicle networks using data rates up to 20kbps. The TLIN2029-Q1 is
designed to support 12V applications with wider operating voltage and additional
bus-fault protection.
The LIN receiver supports data rates
up to 100kbps for faster in-line programming. The TLIN2029-Q1 converts the
data stream on the TXD input into a LIN bus signal using a current-limited
wave-shaping driver which reduces electromagnetic emissions (EME). The receiver
converts the data stream to logic level signals that are sent to the microprocessor
through the open-drain RXD pin. Ultra-low current consumption is possible using the
sleep mode which allows wake-up via LIN bus or EN pin.
The integrated resistor, electrostatic
discharge (ESD) and fault protection allows designers to save board space in their
applications.