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TJA1051T Datasheet(PDF) 7 Page - NXP Semiconductors |
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TJA1051T Datasheet(HTML) 7 Page - NXP Semiconductors |
7 / 18 page TJA1051_2 © NXP B.V. 2009. All rights reserved. Product data sheet Rev. 02 — 1 July 2009 7 of 18 NXP Semiconductors TJA1051 High-speed CAN transceiver [3] ESD performance of pins CANH and CANL according to IEC 61000-4-2 (150 pF, 330 Ω) has been be verified by an external test house. The result is equal to or better than ±8 kV (unaided). [4] Human Body Model (HBM): according to AEC-Q100-002 (100 pF, 1.5 k Ω). [5] Machine Model (MM): according to AEC-Q100-003 (200 pF, 0.75 µH, 10 Ω). [6] Charged Device Model (CDM): according to AEC-Q100-011 (field Induced charge; 4 pF). The classification level is C5 (>1000 V). [7] In accordance with IEC 60747-1. An alternative definition of virtual junction temperature is: Tvj =Tamb +P × Rth(vj-a), where Rth(vj-a) is a fixed value to be used for the calculation of Tvj. The rating for Tvj limits the allowable combinations of power dissipation (P) and ambient temperature (Tamb). 9. Thermal characteristics 10. Static characteristics Table 5. Thermal characteristics According to IEC 60747-1. Symbol Parameter Conditions Value Unit Rth(vj-a) thermal resistance from virtual junction to ambient SO8 package; in free air 155 K/W HVSON8 package; in free air 55 K/W Table 6. 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 Silent mode 0.1 1 2.5 mA Normal mode recessive; VTXD =VIO 2.5 5 10 mA dominant; VTXD =0V 20 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 10 80 250 µA dominant; VTXD = 0 V 50 350 500 µA Vuvd(VIO) undervoltage detection voltage on pin VIO 1.3 - 2.7 V Mode control input; pin S VIH HIGH-level input voltage 0.7VIO -VIO + 0.3 V VIL LOW-level input voltage −0.3 - 0.3VIO V IIH HIGH-level input current VS =VIO 14 10 µA IIL LOW-level input current VS =0V −10 +1 µA CAN transmit data input; pin TXD VIH HIGH-level input voltage 0.7VIO -VIO + 0.3 V VIL LOW-level input voltage −0.3 - 0.3VIO V |
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