LTC4151IDD#TRPBF Linear Technology, LTC4151IDD#TRPBF Datasheet - Page 8

IC CURRENT MONITOR(12BIT) 10DFN

LTC4151IDD#TRPBF

Manufacturer Part Number
LTC4151IDD#TRPBF
Description
IC CURRENT MONITOR(12BIT) 10DFN
Manufacturer
Linear Technology
Datasheet

Specifications of LTC4151IDD#TRPBF

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-DFN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
LTC4151IDD#TRPBFLTC4151IDD
Manufacturer:
LT
Quantity:
10 000
Company:
Part Number:
LTC4151IDD#TRPBFLTC4151IDD-1
Manufacturer:
LT
Quantity:
10 000
Company:
Part Number:
LTC4151IDD#TRPBFLTC4151IDD-1
Manufacturer:
LINEAR/凌特
Quantity:
20 000
Company:
Part Number:
LTC4151IDD#TRPBFLTC4151IDD-1#PBF
Quantity:
500
Company:
Part Number:
LTC4151IDD#TRPBFLTC4151IDD-1#TRPBF
Manufacturer:
LINEAR
Quantity:
2 353
APPLICATIONS INFORMATION
LTC4151
The LTC4151 offers a compact complete solution for high
side power monitoring. With a wide operating voltage
range from 7V to 80V, this device is ideal for a variety of
applications including consumer, automotive, industrial and
telecom infrastructure. The simple application circuit as
shown in Figure 1 provides monitoring of high side current
with a 0.02W resistor (4.096A in full scale), input voltage
(102.4V in full scale) and an external voltage (2.048V in
full scale), all with an internal 12-bit resolution ADC.
Data Converter
The LTC4151 features an onboard, 12-bit ∆Σ A/D con-
verter (ADC) that continuously monitors three voltages
in the sequence of (V
and V
ages signal noise during the measurement period. The
differential voltage between SENSE
monitored with an 81.92mV full scale and 20µV resolu-
tion that allows accurate measurement of the high side
input current. SENSE
pin and must be connected to V
proper ADC readout. The supply voltage at V
measured with a 102.4V full scale and 25mV resolution.
The voltage at the uncommitted ADIN pin is measured
with a 2.048V full scale and 0.5mV resolution that allows
monitoring of any external voltage. The 12-bit digital
8
ADIN
third. The ∆Σ architecture inherently aver-
SENSE +
+
is a Kelvin sense pin for the V
7V TO 80V
Figure 1. Monitoring High Side Current and Voltages Using the LTC4151
– V
V
IN
SENSE –
IN
(see Figure 10) for
+
) first, V
and SENSE
V
ADR1
ADR0
IN
IN
SENSE
IN
is directly
LTC4151
0.02
+
GND
second
SENSE
SHDN
ADIN
is
IN
SDA
SCL
code of each measured voltage is stored in two adjacent
registers out of the six total data registers A through F ,
with the eight MSBs in the first register and the four LSBs
in the second (Table 2).
The data in registers A through F is refreshed at a frequency
of 7.5Hz in continuous scan mode. Setting control register
bit G4 (Table 6) invokes a test mode that halts updating
of these registers so that they can be written to and read
from for software testing.
The data converter features a snapshot mode allowing us-
ers to make one-time measurements of a selected voltage
(either the SENSE voltage, V
To enable snapshot mode, set control register bit G7 and
write the 2-bit code of the desired ADC channel to G6
and G5 (Table 6) using a Write Byte command. When the
Write Byte command is completed, the ADC measures the
selected voltage and a Busy Bit in the LSB data register
is set to indicate that the data is not ready. After complet-
ing the conversion, the ADC is halted and the Busy Bit is
reset to indicate that the data is ready. To make another
measurement of the same voltage or to measure another
voltage, first disable the snapshot mode for the previous
measurement by clearing control bit G7, then re-enable the
snapshot mode and write the code of the desired voltage
according to the procedure described above. The Busy Bit
remains reset in the continuous scan mode.
V
OUT
V
ADIN
2k
2k
SCL
SDA
µ-CONTROLLER
3.3V
V
DD
4151 F01
IN
voltage, or ADIN voltage).
4151fc

Related parts for LTC4151IDD#TRPBF