MAX4840 MAXIM [Maxim Integrated Products], MAX4840 Datasheet

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MAX4840

Manufacturer Part Number
MAX4840
Description
Overvoltage Protection Controllers with Status FLAG
Manufacturer
MAXIM [Maxim Integrated Products]
Datasheet

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The MAX4838–MAX4841 are overvoltage protection ICs
that protect low-voltage systems against voltages of up
to 28V. If the input voltage exceeds the overvoltage trip
level, the MAX4838–MAX4841 turn off the low-cost
external N-channel FET(s) to prevent damage to the
protected components. An internal charge pump elimi-
nates the need for external capacitors and drives the
FET gate for a simple, robust solution.
The MAX4838/MAX4839 have a 7.4V overvoltage
threshold, and the MAX4840/MAX4841 have a 5.8V
overvoltage threshold. All devices have an undervolt-
age lockout threshold of 3.25V. In addition to the single
FET configuration, the devices can be configured with
back-to-back external FETs to prevent currents from
being back-driven into the adapter.
On power-up, the device waits for 50ms before driving
GATE high. FLAG is held low for an additional 50ms
after GATE goes high before deasserting. The
MAX4838/MAX4840 have an open-drain FLAG output,
and the MAX4839/MAX4841 have a push-pull FLAG
output. The FLAG output asserts immediately to an
overvoltage fault.
Additional features include a 15kV ESD-protected input
(when bypassed with a 1µF capacitor) and a shutdown
pin (EN) to turn off the device (MAX4838/MAX4840).
All devices are offered in a small 6-pin SC70 package
and are specified for operation from -40°C to +85°C.
19-3044; Rev 0; 10/03
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.
MAX4838EXT-T
MAX4839EXT-T
MAX4840EXT-T
MAX4841EXT-T
PART
Cell Phones
Digital Still Cameras
PDAs and Palmtop Devices
MP3 Players
THRESHOLD
________________________________________________________________ Maxim Integrated Products
Overvoltage Protection Controllers with
UVLO
3.25
3.25
3.25
3.25
(V)
General Description
LEVEL
TRIP
OV
Selector Guide
(V)
7.4
7.4
5.8
5.8
Applications
INPUT
Yes
Yes
EN
No
No
Open-Drain
Open-Drain
OUTPUT
Push-Pull
Push-Pull
FLAG
o Overvoltage Protection Up to 28V
o Preset 7.4V or 5.8V Overvoltage Trip Level
o Drive Low-Cost NMOS FET
o Internal 50ms Startup Delay
o Internal Charge Pump
o Undervoltage Lockout
o 15kV ESD-Protected Input
o Voltage Fault FLAG Indicator
o 6-Pin SC70 Package
Pin Configuration appears at end of data sheet.
MAX4838EXT-T
MAX4839EXT-T
MAX4840EXT-T
MAX4841EXT-T
+1.2V TO +28V
PART
INPUT
1µF
Typical Operating Circuit
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
TEMP RANGE
1
6
2
Ordering Information
IN
EN
GND
MAX4838–
MAX4841
Status FLAG
FLAG
GATE
PIN-
PACKAGE
6 SC70-6
6 SC70-6
6 SC70-6
6 SC70-6
4
3
NOTE: EN AND PULLUP
RESISTOR ON MAX4838/
MAX4840 ONLY.
Features
NMOS
V
OUTPUT
IO
MARK
ABW
TOP
ABY
ABX
ABZ
1

Related parts for MAX4840

MAX4840 Summary of contents

Page 1

... Additional features include a 15kV ESD-protected input (when bypassed with a 1µF capacitor) and a shutdown pin (EN) to turn off the device (MAX4838/MAX4840). All devices are offered in a small 6-pin SC70 package and are specified for operation from -40°C to +85°C. ...

Page 2

... IN SINK V OL ≥ OVLO 1mA IN SINK = 100µA, FLAG deasserted, I SOURCE V OH MAX4839/MAX4841 = 5.5V, FLAG deasserted, V FLAG I OH MAX4838/MAX4840 V MAX4838/MAX4840 IH V MAX4838/MAX4840 IL MAX4838/MAX4840 GND or 5.5V LKG Human Body Model ≥ 1µ IEC 1000-4-2 = +25°C.) (Note 1) MIN TYP MAX 1.2 28.0 3.0 3.25 3.5 50 7.0 7.4 7.8 5.5 5.8 6.1 100 80 = 5.4V 140 240 ...

Page 3

... FLAG V = 0.4V, Figure 2 FLAG V increasing from OVP Figure 3 GATE 2.4V 0.3V, EN GATE t DIS MAX4838/MAX4840, Figure 4 Typical Operating Characteristics REVERSE CURRENT vs. OUTPUT VOLTAGE 1000 SINGLE MOSFET 100 10 1 BACK-TO-BACK MOSFETS 0.1 30 3.5 4.0 4.5 5.0 OUTPUT VOLTAGE (V) Status FLAG = +25°C.) (Note 1) A MIN ...

Page 4

Overvoltage Protection Controllers with Status FLAG (V = +5V, MAX4838; Si9936DY external MOSFET in back-to-back configuration GATE VOLTAGE vs. INPUT VOLTAGE 11.0 10.5 10.0 9.5 9.0 5.0 5.1 5.2 5.3 INPUT VOLTAGE (V) POWER-UP RESPONSE 5V 0V 10V ...

Page 5

... Ground Fault Indication Output, Active Low. FLAG is asserted low during undervoltage lockout and overvoltage lockout conditions. FLAG is deasserted during normal operation. FLAG is open-drain on the MAX4838/MAX4840, and push-pull on the MAX4839/MAX4841. Gate-Drive Output. GATE is the output of an on-chip charge pump. When GATE is driven high to turn on the external N-channel MOSFET(s). ...

Page 6

... V IN The MAX4838 and MAX4840 have an open-drain FLAG output. Connect a pullup resistor from FLAG to the logic I/O voltage of the host system. EN Enable Input active-low enable input on the MAX4838 and MAX4840 only. Drive EN low or connect to ground to 6 _______________________________________________________________________________________ 5.5V 2x CHARGE GATE DRIVER REGULATOR ...

Page 7

... Status FLAG NMOS GATE V IO MAX4838– MAX4841 FLAG NOTE: EN AND PULLUP 2 GND RESISTOR ON MAX4838/ MAX4840 ONLY. MOSFET Selection specified for a V DS(ON) GS voltage. Also the V should be 30V for the DS Table 1 shows a selection of IN Bypass Considerations ESD Test Conditions OUTPUT of 4.5V 7 ...

Page 8

Overvoltage Protection Controllers with Status FLAG Table 1. MOSFET Suggestions CONFIGURATION/ PART PACKAGE Si9936DY Dual/SO8 Si5904DC Dual/1206-8 Si1426DH Single/SC70-6 FDC6305N Dual/SSOT-6 FDS8926A Dual/SO8 FDG315N Single/SC70-6 IRF7752 Dual/TSSOP-8 IRF7303 Dual/SO8 IRF7607 Single/Micro-8 Human Body Model Figure 8 shows the Human Body ...

Page 9

Overvoltage Protection Controllers with 50Ω to 100Ω 330Ω DISCHARGE CHARGE-CURRENT- RESISTANCE LIMIT RESISTOR HIGH STORAGE VOLTAGE 150pF CAPACITOR DC SOURCE Figure 10. IEC 1000-4-2 ESD Test Model Pin Configuration TOP VIEW IN 1 MAX4838– ...

Page 10

Overvoltage Protection Controllers with Status FLAG (The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information go to www.maxim-ic.com/packages.) Maxim cannot assume responsibility for use of any circuitry other than ...

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