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TJA1051T/3 데이터 시트보기 (PDF) - Philips Electronics

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TJA1051T/3
Philips
Philips Electronics Philips
TJA1051T/3 Datasheet PDF : 18 Pages
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NXP Semiconductors
TJA1051
High-speed CAN transceiver
[3] ESD performance of pins CANH and CANL according to IEC 61000-4-2 (150 pF, 330 ) 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).
[5] Machine Model (MM): according to AEC-Q100-003 (200 pF, 0.75 µH, 10 ).
[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
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
10. Static characteristics
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 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
ICC
supply current
Silent mode
Normal mode
4.5
-
5.5
V
0.1
1
2.5
mA
Vuvd(VCC) undervoltage detection
voltage on pin VCC
I/O level adapter supply; pin VIO[1]
VIO
supply voltage on pin VIO
IIO
supply current on pin VIO
Vuvd(VIO)
undervoltage detection
voltage on pin VIO
Mode control input; pin S
recessive; VTXD =VIO
dominant; VTXD = 0 V
Normal and Silent modes
recessive; VTXD = VIO
dominant; VTXD = 0 V
2.5
5
10
mA
20
50
70
mA
3.5
-
4.5
V
2.8
-
5.5
V
10
80
250
µA
50
350 500
µA
1.3
-
2.7
V
VIH
HIGH-level input voltage
VIL
LOW-level input voltage
IIH
HIGH-level input current
IIL
LOW-level input current
CAN transmit data input; pin TXD
VS = VIO
VS = 0 V
0.7VIO -
0.3
-
1
4
1
0
VIO + 0.3 V
0.3VIO V
10
µA
+1
µA
VIH
HIGH-level input voltage
VIL
LOW-level input voltage
0.7VIO -
0.3
-
VIO + 0.3 V
0.3VIO V
TJA1051_4
Product data sheet
Rev. 04 — 20 October 2009
© NXP B.V. 2009. All rights reserved.
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