ME2807
Voltage Detectors , ME2807 Series
General Description
Features
ME2807 Series are a set of three-terminal low
Highly accuracy: ± 1%
power voltage detectors implemented in CMOS
Low power consumption:TYP 1.8uA (Vin=3V)
technology. Each voltage detector in the series
Detect
detects a particular fixed voltage ranging from 2.0V
to 7.0V. The voltage detectors consist of a high
precision and low power consumption standard
voltage source, a comparator, hysteresis circuit, and
range : 2.0V~7.0V
in
0.1V
increments
Operating voltage range:1.5V~18V
Detect voltage temperature characteristics:
an output driver. CMOS technology ensures low
power consumption.
voltage
TYP ± 0.9mV/℃
Output configuration: CMOS
Selection Guide
Typical Application
Package
battery checkers
●3-pin SOT23、SOT23-3、TO-92
Level selectors
Power failure detectors
Microcomputer reset
Battery backup of Memories
Store non-volatile RAM signal protectors
Typical Application Circuit
VIN
VOUT
VIN
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VOUT
GND
Page 1 of 10
ME2807
Selection Guide
ME 28 07 X XX XX G
Environment mark
Package:
X:SOT23
M3:SOT23-3
T:TO-92
Output Voltage
Function
Product Type
Product Series
Microne
product series
product description
ME2807A27XG
VOUT =2.7V;Rising edge detection;Package:SOT23
ME2807A33XG
VOUT =3.3V;Rising edge detection;Package:SOT23
ME2807A22M3G
VOUT =2.2V;Rising edge detection;Package:SOT23-3
ME2807A33M3G
VOUT =3.3V;Rising edge detection;Package:SOT23-3
ME2807A22TG
ME2807B33M3G
VOUT =2.2V;Rising edge detection;Package:TO-92
VOUT =3.3V;Falling edge detection;Package:SOT23-3
NOTE: At present ,there are seventeen kinds of voltage value: 2.2V、2.4V、2.5V、2.7V、2.8V、
3.0V、3.2V、3.3V、3.5V、3.6V、3.8V、3.9V、4.0V、4.2V、4.3V、4.5V、5.0V。If you need other
voltage and package, please contact our sales staff.
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ME2807
Pin Configuration
3
3
MARK
MARK
1
2
1
SOT23
MARK
2
1 2
SOT23-3
3
TO-92
Pin Assignment
Pin Number
Pin Name
Functions
3
GND
Ground
1
1
VOUT
Output Voltage
3
2
VIN
Input Voltage
SOT23
SOT23-3
TO-92
2
2
1
3
Block Diagram
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Page 3 of 10
ME2807
Absolute Maximum Ratings
PARAMETER
SYMBAL
RATINGS
UNITS
VIN Input Voltage
VIN
18
V
Output Current
IOUT
50
mA
VOUT
GND-0.3~ VIN +0.3
V
Output Voltage
CMOS
SOT23
Continuous Total Power
Dissipation
250
SOT23-3
PD
300
TO-92
mW
500
Operating Ambient Temperature
TOpr
-40~+85
℃
Storage Temperature
Tstg
-50~+125
℃
Soldering temperature and time
Tsolder
260℃, 10s
Electrical Characteristics (VDET =2.0V to 7.0V ,TA=25℃ ,unless otherwise noted)
Parameter
Symbol
VDET
VHYS
Min.
Typ.
Max.
Units
Detect Voltage
VDET×0.99
VDET
VDET×1.01
V
Hysteresis
Width
VDET×0.02
VDET×0.05
VDET×0.1
V
Operating
Current
IIN
VIN
Operating
Voltage
IOL
Output Sink
Current
Output
Source Current
IOH
∆VDET/∆TA
Temperature
characteristics
Conditions
VDET=2.0V~ 2.8V
VIN =3.0V
-
1.8
4
VDET =2.8V~ 3.6V
VIN =4.0V
-
1.8
4
VDET =3.6V ~ 4.7V
VIN =5.0V
-
2.1
7
VDET =4.7V~7.0V
VIN =6.0V
-
2.5
7
VDET =2.0V to 7.0V
VDET=2.2V
0.7
-
VIN =2V
VOUT=0.2V
0.5
VDET=2.2V
VIN =2.5V
VOUT =2.2V
-0.3
-0.5
VDET=2.4V
VIN =3V
VOUT =2.7V
-0.3
-0.5
VDET=2.7V
VIN =3.2V
VOUT =2.9V
-0.3
-0.5
VDET=2.4V
VDET=2.7V
0℃≤Topr≤70℃
18
1
mA
±0.9
mV/℃
2、VDF :Actual Detection Voltage value
3、Release Voltage:VDR=VDF+VHYS (ME2807A series)
VDR=VDF-VHYS (ME2807B series)
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V
mA
Note: 1、VDF(S) :Specified Detection Voltage value
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μA
Page 4 of 10
ME2807
Functional Description
The ME2807 series is a set of voltage detectors equipped with a high stability voltage reference which is
connected to the negative input of a comparator — denoted as VREF in the following figure (Fig. 1).When the voltage
drop to the positive input of the comparator (i,e,VB) is higher than VREF, VOUT goes high, M1 turns off, and VB is
ex-pressed as VBH=VIN×(RB+RC)/(RA+RB+RC).If VIN is decreased so that VB falls to a value that is less than VREF, the
comparator output inverts (from high to low), VOUT goes low, VC is high, M1 turns on, RC is bypassed, and VB
becomes: VBL=VIN×RB/(RA+RB), which is less than VBH. By so doing the comparator out-put will stay low to prevent
the circuit from oscillating when VB ≈ VREF. If VIN falls bellow the minimum operating voltage, the output becomes
undefined. When VIN goes from low to VIN×RB/(RA+RB) >VREF, the comparator output goes high and VOUT goes high
again. The detection voltage is as defined:
VDET(–)=( RA+RB+RC)×VREF/( RB+RC)
The release voltage is as defined:
VDET(+)=(RA+RB)×VREF / RB
The hysteresis width is:
VHYS=VDET(+)–VDET(–)
Figure 1 demonstrates the CMOS output type with positive output polarity (VOUT is normally high, active low).
Fig.1 CMOS output voltage detector (ME2807)
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ME2807
Timing Chart
ME2807A:
ME2807B:
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Page 6 of 10
ME2807
Packaging Information
● SOT23
DIM
Millimeters
Inches
Min
Max
Min
Max
A
0.9
1.2
0.0354
0.0472
A1
0
0.14
0.0000
0.0055
A2
0.9
1.05
0.0354
0.0413
b
0.28
0.52
0.0110
0.0205
c
0.07
0.23
0.0028
0.0091
D
2.8
3.0
0.1102
0.1181
e1
1.8
2.0
0.0709
0.0787
E
1.2
1.4
0.0472
0.0551
E1
2.2
2.6
0.0866
0.1024
e
0.95(TYP)
0.0374(TYP)
L
0.55(TYP)
0.0217(TYP)
L1
0.25
0.55
0.0098
0.0217
θ
0
8°
0.0000
8°
c1
V04
0.25(TYP)
0.0098(TYP)
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Page 7 of 10
ME2807
● SOT23-3
DIM
A
A1
A2
A3
b
c
D
E
E1
e
L
L1
θ
c1
L1
θ
c1
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Millimeters
Min
1
0
0.9
0.6
0.25
0.1
2.8
2.6
1.5
Inches
Max
1.5
0.15
1.3
0.7
0.5
0.25
3.1
3.1
1.8
Min
0.0394
0.0000
0.0354
0.0236
0.0098
0.0039
0.1102
0.1023
0.0591
0.95(TYP)
0.25
0.0374(TYP)
0.6
0.0098
0.59(TYP)
0
0.0236
0.0232(TYP)
8°
0.0000
0.2(TYP)
0.59(TYP)
0
Max
0.0591
0.0059
0.0512
0.0276
0.0197
0.0098
0.1220
0.1220
0.0709
8°
0.0079(TYP)
0.0232(TYP)
8°
0.2(TYP)
0.0000
8°
0.0079(TYP)
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Page 8 of 10
ME2807
● TO-92
DIM
A
A1
b
c
D
D1
E
e
e1
L
h
Φ
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Millimeters
Min
3.3
1.1
0.38
0.36
4.3
3.43
4.3
Inches
Max
3.7
1.4
0.55
0.51
4.7
一
4.7
Min
0.1299
0.0433
0.015
0.0142
0.1693
0.135
0.1693
1.27TYP
2.44
14.1
0
一
Max
0.1457
0.0551
0.0217
0.0201
0.185
一
0.185
0.05TYP
2.64
14.5
0.38
1.6
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0.0961
0.5551
0
一
0.1039
0.5709
0.015
0.063
Page 9 of 10
ME2807
The information described herein is subject to change without notice.
Nanjing Micro One Electronics Inc is not responsible for any problems caused by circuits or diagrams
described herein whose related industrial properties, patents, or other rights belong to third parties.
The application circuit examples explain typical applications of the products, and do not guarantee the
success of any specific mass-production design.
Use of the information described herein for other purposes and/or reproduction or copying without the
express permission of Nanjing Micro One Electronics Inc is strictly prohibited.
The products described herein cannot be used as part of any device or equipment affecting the human
body, such as exercise equipment, medical equipment, security systems, gas equipment, or any
apparatus installed in airplanes and other vehicles, without prior written permission of Nanjing Micro
One Electronics Inc.
Although Nanjing Micro One Electronics Inc exerts the greatest possible effort to ensure high quality
and reliability, the failure or malfunction of semiconductor products may occur. The user of these
products should therefore give thorough consideration to safety design, including redundancy,
fire-prevention measures, and malfunction prevention, to prevent any accidents, fires, or community
damage that may ensue.
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Page 10 of 10
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