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TJA1051T-3 Datasheet(PDF) 8 Page - NXP Semiconductors |
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TJA1051T-3 Datasheet(HTML) 8 Page - NXP Semiconductors |
8 / 21 page TJA1051 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2011. All rights reserved. Product data sheet Rev. 6 — 25 March 2011 8 of 21 NXP Semiconductors TJA1051 High-speed CAN transceiver 10. Static characteristics Table 7. Static characteristics Tvj = −40 °C to +150 °C; VCC = 4.5 V to 5.5 V; VIO = 2.8 V to 5.5 V[1]; RL =60 Ω unless specified otherwise; All voltages are defined with respect to ground; Positive currents flow into the IC[2]. Symbol Parameter Conditions Min Typ Max Unit Supply; pin VCC VCC supply voltage 4.5 - 5.5 V ICC supply current Off mode (TJA1051T/E) 1 5 8 μA Silent mode 0.1 1 2.5 mA Normal mode recessive; VTXD =VIO -5 10 mA dominant; VTXD =0V - 50 70 mA Vuvd(VCC) undervoltage detection voltage on pin VCC 3.5 - 4.5 V I/O level adapter supply; pin VIO[1] VIO supply voltage on pin VIO 2.8 - 5.5 V IIO supply current on pin VIO Normal and Silent modes recessive; VTXD =VIO -80 250 μA dominant; VTXD = 0 V - 350 500 μA Vuvd(VIO) undervoltage detection voltage on pin VIO 1.3 - 2.7 V Mode control inputs; pins S and EN[3] VIH HIGH-level input voltage [4] 0.7VIO -VIO +0.3 V VIL LOW-level input voltage −0.3 - 0.3VIO V IIH HIGH-level input current VS =VIO; VEN =VIO 14 10 μA IIL LOW-level input current VS =0V; VEN =0 V −10 +1 μA CAN transmit data input; pin TXD VIH HIGH-level input voltage [4] 0.7VIO -VIO +0.3 V VIL LOW-level input voltage −0.3 - +0.3VIO V IIH HIGH-level input current VTXD =VIO −50 +5 μA IIL LOW-level input current Normal mode; VTXD =0V −260 −150 −30 μA Ci input capacitance [5] -5 10 pF CAN receive data output; pin RXD IOH HIGH-level output current VRXD =VIO − 0.4 V; VIO =VCC −8 −3 −1mA IOL LOW-level output current VRXD = 0.4 V; bus dominant 2 5 12 mA Bus lines; pins CANH and CANL VO(dom) dominant output voltage VTXD =0V; t<tto(dom)TXD pin CANH 2.75 3.5 4.5 V pin CANL 0.5 1.5 2.25 V Vdom(TX)sym transmitter dominant voltage symmetry Vdom(TX)sym = VCC − VCANH − VCANL −400 0 +400 mV |
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