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PDF MAX4073 Data sheet ( Hoja de datos )

Número de pieza MAX4073
Descripción Low-Cost / SC70 / Voltage-Output / High-Side Current-Sense Amplifier
Fabricantes Maxim Integrated 
Logotipo Maxim Integrated Logotipo



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No Preview Available ! MAX4073 Hoja de datos, Descripción, Manual

19-2048; Rev 0; 4/01
Low-Cost, SC70, Voltage-Output,
High-Side Current-Sense Amplifier
General Description
The MAX4073 low-cost, high-side current-sense ampli-
fier features a voltage output that eliminates the need
for gain-setting resistors making it ideal for cell phones,
notebook computers, PDAs, and other systems where
current monitoring is crucial. High-side current moni-
toring does not interfere with the ground path of the
battery charger making the MAX4073 particularly useful
in battery-powered systems. The input common-mode
range of +2V to +28V is independent of the supply volt-
age. The MAX4073’s wide 1.8MHz bandwidth makes it
suitable for use inside battery-charger control loops.
The combination of three gain versions and a selec-
table external-sense resistor sets the full-scale current
reading. The MAX4073 offers a high level of integra-
tion, resulting in a simple and compact current-sense
solution.
The MAX4073 operates from a +3V to +28V single sup-
ply and draws only 0.5mA of supply current. This
device is specified over the automotive operating tem-
perature range (-40°C to +125°C) and is available in a
space-saving 5-pin SC70 package (half the size of the
SOT23).
For a similar device in a 6-pin SOT23 with a wider com-
mon-mode voltage range (0 to +28V), see the
MAX4173 data sheet.
Applications
Cell Phones
Notebook Computers
Portable/Battery-Powered Systems
Smart Battery Packs/Chargers
PDAs
Power Management Systems
PA Bias Control
General System/Board-Level Current Monitoring
Precision Current Sources
Features
o Low-Cost, Compact, Current-Sense Solution
o Three Gain Versions Available
+20V/V (MAX4073T)
+50V/V (MAX4073F)
+100V/V (MAX4073H)
o ±1.0% Full-Scale Accuracy
o 500µA Supply Current
o Wide 1.8MHz Bandwidth
o +3V to +28V Operating Supply
o Wide +2V to +28V Common-Mode Range
Independent of Supply Voltage
o Automotive Temperature Range (-40°C to +125°C)
o Available in Space-Saving 5-Pin SC70 Package
Typical Operating Circuit
+2V TO +28V
+3V TO +28V
0.1µF
VSENSE
RSENSE
RS+ RS-
VCC
ILOAD
MAX4073T/F/H
A/D
CONVERTER
OUT
GND
LOAD/
BATTERY
Pin Configurations appear at end of data sheet.
Ordering Information
PART
MAX4073TAXK-T
MAX4073TAUT-T
MAX4073FAXK-T
MAX4073FAUT-T
MAX4073HAXK-T
MAX4073HAUT-T
TEMP. RANGE
-40°C to +125°C
-40°C to +125°C
-40°C to +125°C
-40°C to +125°C
-40°C to +125°C
-40°C to +125°C
PIN-PACKAGE
5 SC70-5
6 SOT23-6
5 SC70-5
6 SOT23-6
5 SC70-5
6 SOT23-6
GAIN (V/V)
20
20
50
50
100
100
TOP MARK
ACM
AAUE
ACN
AAUF
ACO
AAUG
________________________________________________________________ Maxim Integrated Products 1
For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at
1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com.

1 page




MAX4073 pdf
Low-Cost, SC70, Voltage-Output,
High-Side Current-Sense Amplifier
Typical Operating Characteristics (continued)
(VCC = +12V, VRS+ = +12V, VSENSE = 100mV, CL = 5pF, TA = +25°C, unless otherwise noted.)
TOTAL OUTPUT ERROR
vs. TEMPERATURE
1.0
0.8
0.6
0.4 VCC = +12V
0.2
0
-0.2
VCC = +28V
-0.4
-0.6
-0.8
-1.0
-50 -25
0 25 50 75 100 125 150
TEMPERATURE (°C)
GAIN ACCURACY
vs. TEMPERATURE
2.0
VSENSE = (10mV - 100mV)
1.5
1.0
0.5
0
-0.5
-1.0
-1.5
-2.0
-50 -25
0 25 50 75 100 125
TEMPERATURE (°C)
45
40
35
30
25
20
15
10
5
0
0.1
SMALL-SIGNAL GAIN vs.
FREQUENCY
MAX4073H
MAX4073F
MAX4073T
1 10 100 1000 10,000
FREQUENCY (kHz)
POWER-SUPPLY REJECTION
RATIO vs. FREQUENCY
100
MAX4073H
90
80 MAX4073F
MAX4073T
70
60
50
40
30
20
0.1
1 10 100
FREQUENCY (kHz)
1000
VSENSE
2.5mV/div
OUT
50mV/div
MAX4073T SMALL-SIGNAL
TRANSIENT RESPONSE
MAX4073 toc14
100mV
95mV
2V
1µs/div
1.9V
MAX4073F SMALL-SIGNAL
TRANSIENT RESPONSE
MAX4073 toc15
MAX4073H SMALL-SIGNAL
TRANSIENT RESPONSE
MAX4073 toc16
VSENSE
2.5mV/div
100mV
95mV
VSENSE
2.5mV/div
100mV
95mV
OUT
125mV/div
5V
4.75V
OUT
250mV/div
10V
9.5V
1µs/div
1µs/div
_______________________________________________________________________________________ 5

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