End of Life. Last Available Purchase Date is 31-Dec-2014
Si9241A
Vishay Siliconix
Single-Ended Bus Transceiver
DESCRIPTION
FEATURES
The Si9241AEY is a monolithic bus transceiver designed to
provide bidirectional serial communication in automotive
diagnostic applications.
• Operating Power Supply Range
6 V VBAT 36 V
• Reverse Battery Protection Down to VBAT - 24 V
• Standby Mode With Very Low Current Consumption
IBAT(SB) = 1 µA at VDD = 0.5 V
• Low Quiescent Current in OFF Condition
IBAT = 120 µA and IDD 10 A
• ISO 9141 Compatible
• Overtemperature Shutdown Function For K Output
• Defined K Output OFF for Open GND
• Defined Receive Output Status for Open K Input
• Defined K Output OFF for TX Input Open
• Open Drain Fault Output
• 2 kV ESD
• Typical Transmit Speeds of 200 kBaud
The device incorporates protection against overvoltages and
short circuits to VBAT. The transceiver pin is protected and
can be driven beyond the VBAT voltage.
The Si9241AEY is built on the Vishay Siliconix BiC/DMOS
process. An epitaxial layer prevents latchup.
The RX output is capable of driving CMOS or 1 x LSTTL
load.
The Si9241AEY is available in a space efficient 8-pin SO
package. It operates reliably over the automotive
temperature range (- 40 to 125 °C). The Si9241AEY is
available in both standard and lead (Pb)-free packages.
PIN CONFIGURATION AND FUNCTIONAL BLOCK DIAGRAM
VDD
VBAT
VBAT
-
RX
+
VDD
2
K
CS
TX
FAULT
Fault
Detector
GND
Document Number: 70787
S11-0975-Rev. F, 16-May-11
www.vishay.com
1
This document is subject to change without notice.
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
End of Life. Last Available Purchase Date is 31-Dec-2014
Si9241A
Vishay Siliconix
OUTPUT TABLE AND STATE DIAGRAMS
INPUTS
Over Temp
Power On
A=1
A=0
CS
0
Over Temp . CS
Short Circuit
Power On
B=1
B=0
CS
Note: Over Temp is an internal condition, not meant
to be a logic signal.
STATE
VARIABLE
OUTPUT
TABLE
TX
A
B
RX
K
FAULT
0
1
1
0
0
1
Comments
0
1
1
1
1
1
1
X
X
0
1
K
HiZ
0
Over Temp
0
X
1
0
K
HiZ
0
Short Circuit
X
1
1
0
0
1
Receive
Mode
X
1
1
1
1
1
1
1
X = "1" or "0"
HiZ = High Impedance State
ABSOLUTE MAXIMUM RATINGS
Parameter
Limit
Unit
Voltages Referenced to Ground
Voltage On VBAT
Voltage K
Voltage Difference V(VBAT, K)
Voltage or Max. Current On Any Pin (Except VBAT , K)
Voltage on VDD
K Pin Only, Short Circuit Duration (to VBAT or GND)
- 24 to 45
- 16 to (VBAT + 1)
55
- 0.3 to (VDD + 0.3 V) or 10
mA
7
V
Continuous
Operating Temperature (TA)
- 40 to 125
Junction and Storage Temperature
- 55 to 150
Thermal Impedance (JA)
V
125
°C
°C/W
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 in the operational sections of the specifications is not implied. Exposure to absolute maximum
rating conditions for extended periods may affect device reliability.
RECOMMENDED OPERATING RANGE
Parameter
Limit
Unit
Voltages Referenced to Ground
VDD
4.5 to 5.5
VBAT
6 to 36
K
6 to 36
Digital Inputs
www.vishay.com
2
V
0 to VDD
Document Number: 70787
S11-0975-Rev. F, 16-May-11
This document is subject to change without notice.
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
End of Life. Last Available Purchase Date is 31-Dec-2014
Si9241A
Vishay Siliconix
SPECIFICATIONS
Parameter
Symbol
Test Conditions Unless Specified
VDD = 4.5 V to 5.5 V
VBAT = 6 V to 36 V
Limits
- 40 to 125 °C
Temp.a
Transmitter and Logic Levels
CS, TX Input Low Voltage
VILT
Full
CS, TX Input High Voltage
VIHT
Full
TX Input Capacitanced
CS, TX Input Pull-up Resistance
CINT
RTX,
Min.b
Typ.c
Max.b
Unit
1.5
V
3.5
Full
10
pF
40
k
VDD = 5.5 V, TX or CS = 1.5 V, 3.5 V
Full
RL = 510 ± 5 %, VBAT = 6 to 18
Full
0.2 VBAT
RL = 1 k ± 5 %, VBAT = 16 to 36
Full
0.2 VBAT
RL = 510 ± 5 %, VBAT = 4.5
Full
RL = 510 ± 5 %, VBAT = 4.5 to 18
Full
0.95 VBAT
RL = 1 k ± 5 %, VBAT = 16 to 36
Full
0.95 VBAT
See Test Circuit
10
20
K Transmit
VOLK
K Output Low Voltage
VOHK
K Output High Voltage
1.2
V
Full
9.6
µs
Full
110
Full
20
pF
K Rise, Fall Times
tr, tf
K Output Sink Resistance
Rsi
K Output Capacitanced
Receiver
K Input Low Voltage
CO
VILK
Full
K Input High Voltage
VIHK
Full
K Input Hysteresisc, d
K Input Currents
VHYS
Full
CS = 0 V, TX = 0 V
IIHK
RX Output Low Voltage
VOLR
RX Pull-up Resistance
RRX
td(on)
RX Turn On Delay
td(off)
RX Turn Off Delay
Supplies
Bat Supply Current On
IBAT(on)
Bat Supply Current Off
IBAT(off)
Bat Supply Current Standby
IBAT(SB)
CS = 4
VIHK = VBAT
Full
20
µA
Full
0.4
V
20
k
Full
Full
3
10
RL = 1 k ± 5 %, VBAT = 16 V to 36 V
CL = 4.7 nF, See Test Circuit
Full
3
10
RL = 510 ± 5 %, VBAT = 6 V to 18 V
CL = 10 nF, See Test Circuit
Full
3
10
RL = 1 k ± 5 %, VBAT = 16 V to 36 V
CL = 4.7 nF, See Test Circuit
Full
3
10
CS = TX = 0 V, VBAT 16 V
CS = High, VBAT 12 V, TX =
VDD 0.5 V, VBAT 12 V
Highf
µs
Full
1.2
3
Full
120
220
Full
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