MAX13050/MAX13052/MAX13053/MAX13054
Industry-Standard High-Speed CAN
Transceivers with ±80V Fault Protection
7
Maxim Integrated
STANDBY SUPPLY CURRENT
vs. TEMPERATURE (STBY = V
CC
)
MAX13050 toc04
TEMPERATURE (
°
C)
STANDBY SUPPLY CURRENT (µA)
10075-25 0 25 50
4.5
5.0
5.5
6.0
6.5
7.0
7.5
8.0
4.0
-50 125
MAX13050
MAX13054
RECEIVER PROPAGATION DELAY
vs. TEMPERATURE
MAX13050 toc04
TEMPERATURE (
°
C)
RECEIVER PROPAGATION DELAY (ns)
1007525 500-25
10
20
30
40
50
60
70
80
90
100
0
-50 125
RECESSIVE
DATA RATE = 100kbps
DOMINANT
0
60
40
20
100
80
180
160
140
120
200
-50 -25 0 25 50 75 100 125
DRIVER PROPAGATION DELAY
vs. TEMPERATURE
MAX13050 toc06
TEMPERATURE (
°
C)
DRIVER PROPAGATION DELAY (ns)
DOMINANT
RECESSIVE
2.40
2.44
2.42
2.48
2.46
2.52
2.50
2.54
2.58
2.56
2.60
010152052530354540 50
REF VOLTAGE vs. REG OUTPUT CURRENT
MAX13050 toc07
REG OUTPUT CURRENT (
µ
A)
REF VOLTAGE (V)
T
A
= -40
°
C
T
A
= +125
°
C
T
A
= +25
°
C
SPLIT LEAKAGE CURRENT vs. TEMPERATURE
MAX13050 toc08
TEMPERATURE (
°
C)
LEAKAGE CURRENT (µA)
1007550250-25
0.001
0.01
0.1
1
10
0.0001
-50 125
RECEIVER OUTPUT LOW
vs. OUTPUT CURRENT
MAX13050 toc09
OUTPUT CURRENT (mA)
VOLTAGE RXD (V)
2015105
0.2
0.4
0.6
0.8
1.0
1.2
1.4
0
0
T
A
= -40
°
C
T
A
= +125
°
C
T
A
= +25
°
C
MAX13050/MAX13052/MAX13053
0
100
50
200
150
250
300
0 200 300100 400 500 600
RECEIVER OUTPUT HIGH
vs. OUTPUT CURRENT
MAX13050 toc10
OUTPUT CURRENT (µA)
RECEIVER OUTPUT HIGH (V
CC
2 - RXD) (mV)
T
A
= -40
°
C
T
A
= +125
°
C
T
A
= +25
°
C
MAX13054
RECEIVER OUTPUT HIGH
vs. OUTPUT CURRENT
MAX13050 toc11
OUTPUT CURRENT (mA)
RECEIVER OUTPUT HIGH (V
CC
- RXD) (V)
764 52 31
0.2
0.4
0.6
0.8
1.0
1.2
1.4
1.6
1.8
2.0
0
08
T
A
= -40
°
C
T
A
= +125
°
C
T
A
= +25
°
C
MAX13050/MAX13052/MAX13053
0
100.0
50.0
200.0
150.0
250.0
300.0
021345
RECEIVER OUTPUT LOW
vs. OUTPUT CURRENT
MAX13050 toc12
OUTPUT CURRENT (mA)
VOLTAGE RXD (mV)
MAX13054
V
CC2
= +3.3V
T
A
= -40
°
C
T
A
= +125
°
C
T
A
= +25
°
C
Typical Operating Characteristics
(V
CC
= +5V, R
L
= 60, C
L
= 100pF, V
CC
2 = +3.3V, and T
A
= +25°C, unless otherwise noted.)
MAX13050/MAX13052/MAX13053/MAX13054
Industry-Standard High-Speed CAN
Transceivers with ±80V Fault Protection
8
Maxim Integrated
DIFFERENTIAL VOLTAGE
vs. DIFFERENTIAL LOAD
MAX13050 toc13
DIFFERENTIAL LOAD R
L
()
DIFFERENTIAL VOLTAGE (V)
26022018014010060
0.5
1.0
1.5
2.0
2.5
3.0
3.5
0
20 300
T
A
= +125
°
C
T
A
= -40
°
C
T
A
= +25
°
C
RECEIVER PROPAGATION DELAY
MAX13051 toc14
200ns
V
DIFF
(1V/div)
RXD
(2V/div)
200ns/div
MAX13054 WAVEFORM
V
DIFF
2V/div
TXD
2V/div
RXD
2V/div
MAX13050 toc15
DRIVER PROPAGATION DELAY,
(R
RS
= 24k, 75k AND 100k)
MAX13051 toc16
1.00µs
TXD
(5V/div)
V
DIFF
(2V/div)
R
RS
= 24k
V
DIFF
(2V/div)
R
RS
= 75k
V
DIFF
(2V/div)
R
RS
= 100k
MAX13052
DRIVER PROPAGATION DELAY
MAX13051 toc17
200ns/div
TXD
(2V/div)
V
DIFF
(1V/div)
LOOPBACK PROPAGATION DELAY
vs. R
RS
MAX13051 toc18
R
RS
(k)
LOOPBACK PROPAGATION DELAY (µs)
18016014012010080604020
0.2
0.4
0.6
0.8
1.0
1.2
1.4
0
0200
RECESSIVE
DOMINANT
MAX13052
Typical Operating Characteristics (continued)
(V
CC
= +5V, R
L
= 60, C
L
= 100pF, V
CC
2 = +3.3V, and T
A
= +25°C, unless otherwise noted.)
MAX13050/MAX13052/MAX13053/MAX13054
Industry-Standard High-Speed CAN
Transceivers with ±80V Fault Protection
9
Maxim Integrated
Detailed Description
The MAX13050/MAX13052/MAX13053/MAX13054
±80V fault-protected CAN transceivers are ideal for
industrial network applications where overvoltage pro-
tection is required. These devices provide a link
between the CAN protocol controller and the physical
wires of the bus lines in a control area network (CAN).
These devices can be used for DeviceNet applications,
requiring data rates up to 1Mbps.
The MAX13050/MAX13052/MAX13053/MAX13054
dominant timeout prevents the bus from being blocked
by a hungup microcontroller. If the TXD input is held
low for greater than 1ms, the transmitter becomes dis-
abled, driving the bus line to a recessive state. The
MAX13054 +3.3V logic input allows the device to com-
municate with +3.3V logic, while operating from a +5V
supply. The MAX13050 and MAX13052 provide a split
DC-stabilized voltage. The MAX13053 has a reference
output that can be used to bias the input of a CAN con-
troller’s differential comparator.
All devices can operate up to 1Mbps (high-speed
mode). The MAX13052 slope-control feature allows the
user to program the slew rate of the transmitter for data
Pin Description
PIN
MAX13050
MAX13052
MAX13053
MAX13054
NAME
FUNCTION
1 1 1 1 TXD
Transmit Data Input. TXD is a CMOS/TTL-compatible input from a CAN controller
with a 25k pullup to V
CC
. For the MAX13054, TXD is pulled to V
CC
2.
2 2 2 2 GND Ground
33 3 3 V
CC
Supply Voltage. Bypass V
CC
to GND with a 0.1µF capacitor.
4 4 4 4 RXD
Receive Data Output. RXD is a CMOS/TTL-compatible output from the physical
bus lines CANH and CANL. For the MAX13054, RXD output voltage is referenced
to the V
CC
2 supply voltage.
5 5 SPLIT
Common-Mode Stabilization Output. Output equaled to 0.5 x V
CC
. SPLIT goes
high impedance in standby mode .
6 6 6 6 CANL CAN Bus-Line Low
7 7 7 7 CANH CAN Bus-Line High
8 8 STBY
Standby Input. Drive STBY low for high-speed operation. Drive STBY high to
place the device in low-current standby mode.
—8 RS
Mode-Select Input. Drive RS low or connect to GND for high-speed operation.
Connect a resistor between RS and GND to control output slope. Drive RS high to
put into standby mode.
5 REF Reference Output Voltage. Always on reference output voltage, set to 0.5 x V
CC.
—— 8 S
Silent-Mode Input. Drive S low to enable TXD and to operate in high-speed
mode. Drive S high to disable the transmitter.
—— 5 V
CC
2
Logic-Supply Input. V
CC
2 is the logic supply voltage for the input/output between
the CAN transceiver and microprocessor. V
CC
2 allows fully compatible +3.3V
logic on all digital lines. Bypass to GND with a 0.1µF capacitor. Connect V
CC
2 to
V
CC
for 5V logic compatibility.

MAX13053ESA+

Mfr. #:
Manufacturer:
Maxim Integrated
Description:
CAN Interface IC CAN Transceiver w/80V Fault Protect
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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