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TCAN1043X-Q1 Fiches technique(PDF) 4 Page - Texas Instruments

No de pièce TCAN1043X-Q1
Description  Fault Protected CAN Transceiver with CAN FD
Download  43 Pages
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Fabricant  TI1 [Texas Instruments]
Site Internet  http://www.ti.com
Logo TI1 - Texas Instruments

TCAN1043X-Q1 Fiches technique(HTML) 4 Page - Texas Instruments

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TCAN1043-Q1, TCAN1043H-Q1, TCAN1043HG-Q1, TCAN1043G-Q1
SLLSEV0 – OCTOBER 2017
www.ti.com
Product Folder Links: TCAN1043-Q1 TCAN1043H-Q1 TCAN1043HG-Q1 TCAN1043G-Q1
Submit Documentation Feedback
Copyright © 2017, Texas Instruments Incorporated
(1)
Stresses beyond those listed under "absolute maximum ratings" may cause permanent damage to the device. These are stress ratings
only and functional operation of the device at these or any other conditions beyond those indicated under "recommended operating
conditions" is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability.
(2)
All voltage values, except differential I/O bus voltages, are with respect to ground terminal.
7 Specifications
7.1 Absolute Maximum Ratings
(1) (2)
MIN
MAX
UNIT
VSUP
Battery supply (reverse blocked) voltage range – standard versions
–0.3
58
V
Battery supply (reverse blocked) voltage range – H versions
–0.3
70
VCC
5-V bus supply voltage range
–0.3
7
VIO
I/O Level Shifting Voltage Range
–0.3
7
VBUS
CAN Bus I/O voltage range (CANH, CANL)
Devices without the "H" suffix
–58
58
CAN Bus I/O voltage range (CANH, CANL)
Devices with the "H" suffix
–70
70
V(DIFF)
Max Differential voltage between CANH and
CANL
Devices without the "H" suffix
–58
58
Devices with the "H" suffix
–70
70
V(Logic_Input)
Logic input terminal voltage range
–0.3
7
V(Logic_Output)
Logic output terminal voltage range
–0.3
7
VINH
INH output pin voltage range
Devices without the "H" suffix
–0.3
58 and VO ≤ VSUP + 0.3
INH output pin voltage range
H versions
–0.3
70 and VO ≤ VSUP + 0.3
V(WAKE)
WAKE input pin voltage range
Devices without the "H" suffix
–0.3
58 and VI ≤ VSUP + 0.3
WAKE input pin voltage range
H versions
–0.3
70 and VI ≤ VSUP + 0.3
IO(LOGIC)
Logic output current
RXD, and nFAULT
8
mA
IO(INH)
INH output current
4
IO(WAKE)
Wake current if due to ground shifts V(WAKE) ≤ V(GND) – 0.3 V, thus the current into WAKE
must be limited via an external serial resistor
3
TJ
Operating virtual junction temperature range
–55
150
°C
TA
Ambient temperature range
–55
125
(1)
Tested in accordance to AEC-Q100-002.
(2)
Test method based upon AEC-Q100-002, CAN bus terminals stressed with respect to each other and to GND.
(3)
Tested in accordance to AEC-Q100-011.
(4)
Tested in accordance to JEDEC Standard 22, Test Method A115A.
7.2 ESD Ratings
VALUE
UNIT
V(ESD)
Electrostatic discharge
Human body model (HBM)
VSUP, INH
±4000
V
All pins, except VSUP, INH
(1)
±6000
CAN bus terminals (CANH, CANL)
(2)
±16000
Charged device model (CDM)
All terminals
(3)
±750
Machine Model (MM)
All terminals
(4)
±200
(1)
ISO7637 is a system level transient test. Results given here are specific to the IBEE CAN EMC Test specification conditions. Different
system level configurations will lead to different results.
7.3 ESD Ratings IEC Specification
VALUE
UNIT
V(ESD)
System Level Electro-Static
Discharge (ESD)
CAN bus terminals (CANH, CANL)
to GND
SAE J2962-2 per ISO 10605:
Powered Air Discharge
±15000
V
SAE J2962-2 per ISO 10605:
Powered Contact Discharge
±8000
IEC 61000-4-2 (150 pF, 330 Ω)
Unpowered Contact Discharge
±8000
VBAT and WAKE
±6000
ISO7637-2 Transients according to
GIFT - ICT CAN EMC test
specification(1)
CAN bus terminals (CANH, CANL)
to GND, VSUP, WAKE
Pulse 1
–100
Pulse 2
+75
Pulse 3a
–150
Pulse 3b
+100
ISO7637-3 Transients
CAN bus terminals (CANH, CANL)
to GND, VSUP, WAKE
Direct Coupling Capacitor "Slow
Transient Pulse" with 100 nF
coupling capacitor - Powered
±85


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