tja1048 NXP Semiconductors, tja1048 Datasheet - Page 9

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tja1048

Manufacturer Part Number
tja1048
Description
Tja1048 Dual High-speed Can Transceiver With Standby Mode
Manufacturer
NXP Semiconductors
Datasheet

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8. Limiting values
Table 4.
In accordance with the Absolute Maximum Rating System (IEC 60134). All voltages are referenced to GND.
[1]
[2]
[3]
[4]
[5]
[6]
[7]
9. Thermal characteristics
TJA1048
Product data sheet
Symbol Parameter
V
V
V
T
T
T
vj
stg
amb
x
trt
ESD
Verified by an external test house to ensure pins CANH1, CANL1, CANH2 and CANL2 can withstand ISO 7637 part 3 automotive
transient test pulses 1, 2a, 3a and 3b.
IEC 61000-4-2 (150 pF, 330 Ω).
ESD performance of pins CANH1, CANL1, CANH2 and CANL2 according to IEC 61000-4-2 (150 pF, 330 Ω) has been be verified by an
external test house.
Human Body Model (HBM): according to AEC-Q100-002 (100 pF, 1.5 kΩ).
Machine Model (MM): according to AEC-Q100-003 (200 pF, 0.75 μH, 10 Ω).
Charged Device Model (CDM): according to AEC-Q100-011 (field Induced charge; 4 pF).
In accordance with IEC 60747-1. An alternative definition of virtual junction temperature is: T
fixed value to be used for the calculation of T
temperature (T
voltage on pin x
transient voltage
electrostatic discharge voltage
virtual junction temperature
storage temperature
ambient temperature
Limiting values
amb
).
Table 5.
Values determined for free convection conditions on a JESD51-7 board.
Symbol
R
th(vj-a)
Parameter
thermal resistance from virtual junction to
ambient
Thermal characteristics
All information provided in this document is subject to legal disclaimers.
vj
. The rating for T
Conditions
no time limit; DC value
on pins CANH1, CANL1, CANH2 and CANL2
IEC 61000-4-2
HBM
MM
CDM
Rev. 1 — 3 November 2010
on pins CANH1, CANL1, CANH2 and CANL2
on any other pin
on pins CANH1, CANL1, CANH2 and CANL2
on pins CANH1, CANL1, CANH2 and CANL2
at any other pin
at any pin
at corner pins
at any pin
vj
Dual high-speed CAN transceiver with Standby mode
limits the allowable combinations of power dissipation (P) and ambient
Conditions
SO14
HVSON14
vj
= T
amb
+ P × R
[1]
[2]
[3]
[4]
[5]
[6]
[7]
th(vj-a)
Min
−58
−0.3
−150
−6
−6
−4
−300
−750
−500
−40
−55
−40
TJA1048
© NXP B.V. 2010. All rights reserved.
, where R
Value
65
42
Max
+58
+7
+100
+6
+6
+4
+300
+750
+500
+150
+150
+125
th(vj-a)
Unit
K/W
K/W
9 of 21
Unit
V
V
V
kV
kV
kV
V
V
V
°C
°C
°C
is a

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