LTC4151IMS#PBF Linear Technology, LTC4151IMS#PBF Datasheet - Page 10

IC CURRENT MONITOR(12BIT) 10MSOP

LTC4151IMS#PBF

Manufacturer Part Number
LTC4151IMS#PBF
Description
IC CURRENT MONITOR(12BIT) 10MSOP
Manufacturer
Linear Technology
Datasheets

Specifications of LTC4151IMS#PBF

Function
Current Monitor (12 Bit)
Sensing Method
High-Side
Accuracy
±1%
Voltage - Input
7 ~ 80 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
10-MSOP, Micro10™, 10-uMAX, 10-uSOP
Voltage Supervisor Type
Voltage Monitor
Number Of Voltage Supervisors
1
Reset Threshold Voltage (min)
2.3V
Reset Threshold Voltage (max)
2.9V
Operating Supply Voltage (min)
7V
Operating Supply Voltage (max)
80V
Package Type
MSOP
Operating Temperature Classification
Industrial
Operating Temp Range
-40C to 85C
Pin Count
10
Mounting
Surface Mount
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output
-
Lead Free Status / Rohs Status
Compliant

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LTC4151
APPLICATIONS INFORMATION
Using Opto-Isolators with LTC4151-1 and LTC4151-2
The LTC4151-1/LTC4151-2 split the SDA line into SDAI
(input) and SDAO (LTC4151-1 inverted output) or SDAO
(LTC4151-2 output) for convenience of opto-coupling with
a host controller that sits at a different ground level.
When using opto-isolators with the LTC4151-1, connect
the SDAI to the output of the incoming opto-coupler and
connect the SDAO to the anode of the outgoing opto-
coupler (see Figure 9). With the outgoing opto-coupler
clamping SDAO and internal 6V (5.5V minimum) clamps
on SDAI and SCL, the pull-up resistors on these three pins
can be directly connected to V
rather than conventional SDAO), the need for a separate
low voltage supply for pull-ups is eliminated.
Figure 11 shows the LTC4151-2 with high speed opto-
couplers for faster bus speeds. The LTC4151-2 has a non-
inverter SDAO output. Powered from V
LT3010-5 low dropout regulator provides the supply for the
opto-couplers as well as the bus lines pull-up. If the SDAI
and SDAO on the master controller are not tied together,
the ACK bit of the SDAO must be returned back to SDAI.
10
48V
V
IN
V
ADR1
ADR0
IN
SENSE
Figure 9. Opto-Isolation of the I
Microcontroller (Data Rate of I
LTC4151-1
0.02
GND
+
R
S
IN
SENSE
. In this way (with SDAO
SDA0
ADIN
SDAI
SCL
IN
, the high voltage
R1
20k
V
ADIN
R2
20k
2
2
C is Limited by Slew Rate of Opto-Isolators)
R3
5.1k
C Interface Between LTC4151-1 and a
8
7
6
5
1
2
3
4
Start and Stop Conditions
When the I
in the high state. A bus master signals the beginning of a
transmission with a Start condition by transitioning SDA
from high to low while SCL stays high. When the master
has finished communicating with the slave, it issues a
Stop condition by transitioning SDA from low to high
while SCL stays high. The bus is then free for another
transmission.
Stuck-Bus Reset
The LTC4151 I
The low conditions of the SCL and the SDA/SDAI pins
are OR’ed to start the timer. The timer is reset when both
SCL and SDA/SDAI are pulled high. If the SCL pin or the
SDA/SDAI pin is held low for over 33ms, the stuck-bus
timer will expire and the internal I
reset to allow normal communication after the stuck-bus
condition is cleared. The stuck-bus timer can be disabled
by clearing control register bit G2.
MOCD207M
MOCD207M
2
C bus is idle, both SCL and SDA must remain
1
2
3
4
8
7
6
5
2
C interface features a stuck-bus reset timer.
R4
0.51k
R5
0.51k
R6
10k
R7
10k
2
C state machine will be
SCL
SDA
µ-CONTROLLER
3.3V
V
DD
4151 F09
4151fc

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