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MAX4007EUT+

Description
Power Supply Support Circuit, Fixed, 1 Channel, BICMOS, PDSO6, MO-178, SOT-23, 6 PIN
CategoryPower/power management    The power supply circuit   
File Size227KB,10 Pages
ManufacturerMaxim
Websitehttps://www.maximintegrated.com/en.html
Environmental Compliance  
Download Datasheet Parametric View All

MAX4007EUT+ Overview

Power Supply Support Circuit, Fixed, 1 Channel, BICMOS, PDSO6, MO-178, SOT-23, 6 PIN

MAX4007EUT+ Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerMaxim
Parts packaging codeSOIC
package instructionLSSOP, TSOP6,.11,37
Contacts6
Reach Compliance Codecompliant
ECCN codeEAR99
Factory Lead Time6 weeks 5 days
Samacsys DescriptionU6SN+1
Adjustable thresholdNO
Analog Integrated Circuits - Other TypesPOWER SUPPLY SUPPORT CIRCUIT
JESD-30 codeR-PDSO-G6
JESD-609 codee3
length2.9 mm
Humidity sensitivity level1
Number of channels1
Number of functions1
Number of terminals6
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Package body materialPLASTIC/EPOXY
encapsulated codeLSSOP
Encapsulate equivalent codeTSOP6,.11,37
Package shapeRECTANGULAR
Package formSMALL OUTLINE, LOW PROFILE, SHRINK PITCH
Peak Reflow Temperature (Celsius)260
power supply40 V
Certification statusNot Qualified
Maximum seat height1.45 mm
Maximum supply current (Isup)4 mA
Maximum supply voltage (Vsup)76 V
Minimum supply voltage (Vsup)2.7 V
Nominal supply voltage (Vsup)40 V
surface mountYES
technologyBICMOS
Temperature levelINDUSTRIAL
Terminal surfaceMatte Tin (Sn)
Terminal formGULL WING
Terminal pitch0.95 mm
Terminal locationDUAL
Maximum time at peak reflow temperatureNOT SPECIFIED
width1.625 mm

MAX4007EUT+ Preview

19-2743; Rev 3; 4/07
High-Accuracy, 76V, High-Side
Current Monitors in SOT23
General Description
The MAX4007/MAX4008 precision, high-side, high-volt-
age current monitors are specifically designed for mon-
itoring photodiode current in fiber applications. They
offer a connection point for the reference current and a
monitor output that produces a signal proportional to
the reference current. The monitor output of the
MAX4007 is a current proportional to the reference cur-
rent. The monitor output of the MAX4008 is a voltage
proportional to the reference current. The current moni-
tors have six decades of dynamic range and monitor
reference currents of 250nA to 2.5mA with better than
5% accuracy. The photodiode current can be moni-
tored from 10nA to 10mA with reduced accuracy.
The MAX4007/MAX4008 accept a supply voltage of
+2.7V to +76V, suitable for APD or PIN photodiode appli-
cations. Internal current limiting (20mA, typ) protects the
devices against short circuit to ground. A clamp diode
protects the monitor output from overvoltage. Additionally,
these devices feature thermal shutdown if the die temper-
ature reaches +150°C.
The MAX4007/MAX4008 are available in tiny, space-
saving 6-pin SOT23 packages, and operate over the
extended temperature range of -40°C to +85°C.
Features
Wide Reference Current Dynamic Range
Guaranteed 250nA to 2.5mA with 5% Monitor
Accuracy
Extended 10nA to 10mA with 10% Monitor
Accuracy
Current (MAX4007) or Voltage (MAX4008) Monitor
Outputs
Reference Current-Limit Protection (20mA, typ)
Voltage Clamp Protects Subsequent Output
Circuitry
+2.7V to +76V Wide Voltage Range Operation
6-Pin SOT23 Packages
MAX4007/MAX4008
Ordering Information
PART
MAX4007EUT-T
MAX4008EUT-T
PIN-PACKAGE
6 SOT23-6
6 SOT23-6
TOP MARK
ABNM
ABNO
PKG
CODE
U6S-3
U6S-3
Applications
Photodiode Current-Monitoring Systems
Portable Instrumentation
Medical Instrumentation
Laboratory Instrumentation
Consumer Electronics
Current-to-Voltage Conversion
Level Translation
Note:
All devices are specified over the -40°C to +85°C operating
temperature range.
Pin Configuration
Selector Guide
TOP VIEW
CLAMP
1
6
BIAS
PART
MAX4007EUT-T
MAX4008EUT-T
PIN-
PACKAGE
6 SOT23-6
6 SOT23-6
INTERNAL
TYPICAL
RESISTOR ACCURACY (%)
None
10kΩ
5
1
GND
2
MAX4007
MAX4008
5
N.C.
OUT
3
4
REF
Typical Operating Circuit appears at end of data sheet.
SOT23
________________________________________________________________
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.
High-Accuracy, 76V, High-Side
Current Monitors in SOT23
MAX4007/MAX4008
ABSOLUTE MAXIMUM RATINGS
CLAMP to GND ......................................................-0.3V to +80V
BIAS, REF to GND ..................................................-0.3V to +80V
OUT to GND .........................................-0.3V to (V
CLAMP
+ 0.6V)
Short Circuit, REF to GND ..........................................Continuous
Current into Any Pin..........................................................±30mA
Continuous Power Dissipation (T
A
= +70°C)
6-Pin SOT23 (derate 8.7mW/°C above +70°C)............696mW
Operating Temperature Range ...........................-40°C to +85°C
Junction Temperature ......................................................+150°C
Storage Temperature Range .............................-65°C to +150°C
Lead Temperature (soldering, 10s) .................................+300°C
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.
ELECTRICAL CHARACTERISTICS
(V
BIAS
= 40V, GND = 0V, REF = open, V
OUT
= 0V (MAX4007), CLAMP = open, T
A
= -40°C to +85°C. Typical values are at T
A
= +25°C,
unless otherwise noted.) (Note 1)
PARAMETER
Bias Voltage Range
Bias Quiescent Current
Reference Voltage
Thermal Shutdown
Engage Temperature
Trip-Point Temperature
Hysteresis
Input Current Limit
MAX4007
Output Current Noise
SYMBOL
V
BIAS
I
BIAS
V
REF
T
SHDN
T
HYS
I
LIM
CONDITIONS
Inferred from power-supply
rejection test
I
REF
= 250nA
I
REF
= 2.5mA
I
REF
= 2.5mA
REF shorted to GND, junction
temperature rising
REF shorted to GND, junction
temperature falling
V
REF
= V
BIAS
- 5V
f = 0.1Hz to 10Hz
iNOUT
MIN
2.7
TYP
MAX
76
UNITS
V
µA
mA
V
°C
°C
mA
90
3.6
V
BIAS -
1.1
V
BIAS -
0.8
150
5
20
I
REF
= 250nA
I
REF
= 2.5mA
I
REF
= 250nA
I
REF
= 2.5mA
I
REF
= 250nA
I
REF
= 2.5mA
I
REF
= 250nA
I
REF
= 2.5mA
I
REF
= 250nA
I
REF
= 2.5mA
0.3
63
9.2
1240
0.041
0.63
1.3
12.5
50
5
10
1
0 to
V
BIAS
- 1.5
0 to
V
BIAS
- 0.85
0.6
200
4
pA
RMS
f = 0.1Hz to 10kHz
f = 0.1Hz to 10Hz
MAX4008
Output Voltage Noise
e
NOUT
f = 0.1Hz to 10kHz
MAX4007
MAX4008
Output Leakage
Output Voltage Range
V
OUT
V
OUT
-
V
CLAMP
REF = open
µV
RMS
pA
V
Output Resistance
R
OUT
V
BIAS
= 2.7V to 76V, I
REF
= 0 to 1mA,
MAX4007:
ΔI
OUT
/I
OUT
=
±1%,
MAX4008:
ΔV
OUT
/I
OUT
=
±1%
Output Clamp Voltage
V
2
_______________________________________________________________________________________
High-Accuracy, 76V, High-Side
Current Monitors in SOT23
ELECTRICAL CHARACTERISTICS (continued)
(V
BIAS
= 40V, GND = 0V, REF = open, V
OUT
= 0V (MAX4007), CLAMP = open, T
A
= -40°C to +85°C. Typical values are at T
A
= +25°C,
unless otherwise noted.) (Note 1)
PARAMETER
Output Clamp Leakage
MAX4007 Current Gain
I
OUT
/I
REF
SYMBOL
CONDITIONS
V
CLAMP
= 0 to 76V
I
REF
= 250nA
I
REF
= 2.5mA
I
REF
= 10mA, V
BIAS
= 12V
MAX4008
Transimpedance Gain
I
REF
= 250nA
V
OUT
/I
REF
(ΔI
OUT
/I
OUT
)
/ΔV
BIAS
(
ΔV
OUT
/V
OUT
)
/ΔV
BIAS
I
REF
= 2.5mA
I
REF
= 10mA, V
BIAS
= 12V
Power-Supply Rejection
Ratio (PSRR)
I
REF
= 250nA
MAX4007:
V
BIAS
= 2.7V to 76V I
REF
= 1mA
MAX4008:
I
REF
= 1mA
V
BIAS
= 2.7V to 76V
I
OUT
settles within
0.1%, C
IN
= 10nF
between REF and
GND
I
REF
= 250nA
I
REF
= 2.5mA
0.9
0.95
0.09
0.094
MIN
TYP
1
0.0999
0.0998
0.0997
0.992
0.998
1.00
50
50
50
7.5
90
1000
1000
1000
ms
µs
ppm/V
1.1
1.05
V/mA
0.11
0.106
mA/mA
MAX
UNITS
pA
MAX4007/MAX4008
Power-Up Settling Time
t
S
Note 1:
All devices are 100% tested at room temperature (T
A
= +25°C). All temperature limits are guaranteed by design.
_______________________________________________________________________________________
3
High-Accuracy, 76V, High-Side
Current Monitors in SOT23
MAX4007/MAX4008
Typical Operating Characteristics
(T
A
= +25°C, unless otherwise noted.)
BIAS CURRENT
vs. SUPPLY VOLTAGE
MAX4007/08 toc01
BIAS CURRENT
vs. REFERENCE CURRENT
MAX4007/08 toc02
BIAS CURRENT
vs. TEMPERATURE
I
REF
= 2.5mA
MAX4007/08 toc03
10
I
REF
= 2.5mA
100.00
V
BIAS
= 40V
10.00
10
BIAS CURRENT (mA)
BIAS CURRENT (mA)
BIAS CURRENT (mA)
1
1
1.00
0.1
I
REF
= 250nA
0.1
I
REF
= 250nA
0.10
V
BIAS
= 40V
0.01
2
8
14
SUPPLY VOLTAGE (V)
20
26
0.01
10n
100n
10μ
I
REF
(A)
100μ
1m
10m
0.01
-40
-15
10
35
60
85
TEMPERATURE (°C)
GAIN ERROR vs.
REFERENCE CURRENT
MAX4007/08 toc04
GAIN ERROR vs. TEMPERATURE
MAX4007/08 toc05
GAIN ERROR vs. BIAS VOLTAGE
0
-0.2
GAIN ERROR (%)
-0.4
-0.6
-0.8
-1.0
-1.2
-1.4
I
REF
= 250nA
I
REF
= 25μA
I
REF
= 2.5mA
I
REF
= 5mA
MAX4007/08 toc06
5
4
3
GAIN ERROR (%)
2
1
0
-1
-2
-3
-4
-5
10n
100n
10μ
I
REF
(A)
100μ
1m
V
BIAS
= 40V
9
8
7
GAIN ERROR (%)
6
5
4
3
2
1
0
-1
V
BIAS
= 40V
I
REF
= 10nA
0.2
I
REF
= 250nA
I
REF
= 2.5μA
I
REF
= 250μA
I
REF
= 2.5mA
I
REF
= 10mA
10m
-40
-15
10
35
60
85
2.0
20.5
39.0
V
BIAS
(V)
57.5
76.0
TEMPERATURE (°C)
TRANSIENT RESPONSE
(V
BIAS
= 40V)
MAX4007/8 toc07
STARTUP DELAY
(V
BIAS
= 40V, I
REF
= 250nA)
MAX4007/8 toc08
STARTUP DELAY
(V
BIAS
= 40V, I
REF
= 2.5mA)
MAX4007/8 toc09
A
CH1
V
BIAS
BIAS
D.U.T.
REF
OUT
R1
CH2
CH1
40V
BIAS
D.U.T.
REF
OUT
CH1
6.3kΩ
CH2
12.1kΩ
R
REF
13pF
R
TEST
CH1
CH1
V
BIAS
BIAS
D.U.T.
REF
OUT
R1
CH2
R
REF
13pF
B
0V
CH2
0V
20ms/div
0V
CH2
0V
20ms/div
BGND
AGND
10kΩ
R
TEST
400ns/div
A: CH2, 5V/div, I
REF
= 0 TO 2.5mA
B: CH1, 1V/div, I
OUT
= 0 TO 0.25mA
R
REF
= 158mΩ
R1 = 118mΩ
R
TEST
= 1.67mΩ
CH1: 10V/div
CH2: 20mV/div
R
REF
= 15.8kΩ
R1 = 0Ω
R
TEST
= 140kΩ
CH1: 10V/div
CH2: 10V/div
4
_______________________________________________________________________________________
High-Accuracy, 76V, High-Side
Current Monitors in SOT23
MAX4007/MAX4008
Typical Operating Characteristics (continued)
(T
A
= +25°C, unless otherwise noted.)
STARTUP DELAY
(V
BIAS
= 5V, I
REF
= 250nA)
STARTUP DELAY
(V
BIAS
= 5V, I
REF
= 2.5mA)
SHORT-CIRCUIT RESPONSE
(V
BIAS
= 40V)
T
A
= +85°C
MAX4007/8 toc10
MAX4007/8 toc11
MAX4007/8 toc12
CH1
0V
CH1
A
CH1
V
BIAS
BIAS
D.U.T.
REF
OUT
R1
B
C
D
0V
CH1
V
BIAS
BIAS
D.U.T.
REF
OUT
CH1
CH2
CH2
0V
CH2
R
REF
13pF
R
TEST
CH2
R
REF
13pF
R1
0A
0V
40ms/div
R
REF
= 16.8mΩ
R1 = 118mΩ
R
TEST
= 1.67mΩ
CH1: 2V/div
CH2: 10V/div
R
REF
= 1.68kΩ
R1 = 0Ω
R
TEST
= 14.0kΩ
CH1: 2V/div
CH2: 1V/div
4ms/div
R
TEST
20ms/div
CH1: I
BIAS
, 10.0mA/div
A: REF SHORTS TO GND
B: CURRENT LIMIT ACTIVE
C: THERMAL SHUTDOWN
D: POST COOL-DOWN RETRY
SHORT-CIRCUIT RESPONSE
(V
BIAS
= 76V)
T
A
= +85°C
VOLTAGE DROP
vs. REFERENCE CURRENT
V
BIAS
= 2.7V
1.20
1.00
MAX4007/08 toc14
MAX4007/8 toc13
1.40
A
B
C
D
V
BIAS
- V
REF
(V)
0.80
0.60
0.40
0.20
A
B
C
D
10μ
100μ
A: T
A
= -40°C
B: T
A
= +25°C
C: T
A
= +85°C
D: T
A
= +100°C
1m
10m
CH1
0A
40ms/div
CH1: I
BIAS
, 10.0mA/div
A: REF SHORTS TO GND
B: CURRENT LIMIT ACTIVE
C: THERMAL SHUTDOWN
D: POST COOL-DOWN RETRY
0
100n
REFERENCE CURRENT (A)
_______________________________________________________________________________________
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