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PDF XC61CN1502TH Data sheet ( Hoja de datos )

Número de pieza XC61CN1502TH
Descripción LOW VOLTAGE DETECTORS
Fabricantes Torex Semiconductor 
Logotipo Torex Semiconductor Logotipo



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XC61C Series
Low Voltage Detectors (VDF= 0.8V1.5V)
Standard Voltage Detectors (VDF 1.6V6.0V)
ETR0201_015a
GENERAL DESCRIPTION
The XC61C series are highly precise, low power consumption voltage detectors, manufactured using CMOS and laser
trimming technologies.
Detect voltage is extremely accurate with minimal temperature drift.
Both CMOS and N-ch open drain output configurations are available.
APPLICATIONS
Microprocessor reset circuitry
Memory battery back-up circuits
Power-on reset circuits
Power failure detection
System battery life and charge voltage monitors
FEATURES
Highly Accurate
: ± 2%
: ± 1%(Standard Voltage VD: 2.6V~5.1V)
Low Power Consumption : 0.7μA (TYP.) [VIN=1.5V]
Detect Voltage Range : 0.8V ~ 6.0V in 0.1V increments
Operating Voltage Range : 0.7V ~ 6.0V (Low Voltage)
0.7V10.0V (Standard Voltage)
Detect Voltage Temperature Characteristics
: ±100ppm/(TYP.)
Output Configuration : N-ch open drain or CMOS
Packages
: SSOT-24
SOT-23
SOT-89
TO-92
Environmentally Friendly : EU RoHS Compliant, Pb Free
TYPICAL APPLICATION CIRCUITS
TYPICAL PERFORMANCE CHARACTERISTICS
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1 page




XC61CN1502TH pdf
XC61C
Series
OPERATIONAL EXPLANATION
(Especially prepared for CMOS output products)
When input voltage (VIN) is higher than detect voltage (VDF), output voltage (VOUT) will be equal to VIN.
(A condition of high impedance exists with N-ch open drain output configurations.)
When input voltage (VIN) falls below detect voltage (VDF), output voltage (VOUT) will be equal to the ground voltage (VSS)
level.
When input voltage (VIN) falls to a level below that of the minimum operating voltage (VMIN), output will become
unstable. (As for the N-ch open drain product of XC61CN, the pull-up voltage goes out at the output voltage.)
When input voltage (VIN) rises above the ground voltage (VSS) level, output will be unstable at levels below the
minimum operating voltage (VMIN). Between the VMIN and detect release voltage (VDR) levels, the ground voltage (VSS)
level will be maintained.
When input voltage (VIN) rises above detect release voltage (VDR), output voltage (VOUT) will be equal to VIN.
(A condition of high impedance exists with N-ch open drain output configurations.)
The difference between VDR and VDF represents the hysteresis range.
Timing Chart
5/18

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XC61CN1502TH arduino
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
Standard Voltage (Continued)
(3) Output Voltage vs. Input Voltage
XC61CN1802 (1.V)
2
Ta=25
XC61CN2702 (2.7V)
3
Ta=25
2
1
1
0
01
Input Voltage: VIN (V)
2
0
012
Input Voltage: VIN (V)
3
XC61CN3602 (.V)
4
Ta=25
3
2
1
XC61CN4502 (.V)
5
Ta=25
4
3
2
1
0
0123
Input Voltage: VIN (V)
4
0
01234
Input Voltage: VIN (V)
Note : The N-chaonpneenl odpraeinn dprualilnupurlel suipstraenscisetavnaclueeviaslu1e00iskΩ10.0k Ω.
5
(4) N-ch Driver Output Current vs. VDS
XC61CC1802 (.8V)
10
Ta=25
VIN =1.5V
8
6
4
1.0V
2
0
0 0.5 1.0 1.5 2.0
VDS (V)
XC61CC3602 (.6V)
40
Ta=25
VIN =3.0V
30
2.5V
20
2.0V
10
1.5V
0
0 0.5 1.0 1.5 2.0 2.5 3.0
VDS (V)
XC61CC2702 (.V)
30
Ta=25
25
VIN =2.5V
20
2.0V
15
10
1.5V
5
1.0V
0
0 0.5 1.0 1.5 2.0 2.5 3.0
VDS (V)
XC6XXCC6611CCCC44550022((4(.45V..5VV)))
8800
7700
TTaa==2255
VIN =4.0V
6600
5500
VIN =4.0V
33.5.5VV
4400
3300
2200
1100
00 00
3.03V.0V
2.52.V5V
2.20.V0V
1.15.5VV
00.5.5 11.0.0 1.15.5 2.20.0 2.52.5 3.03.03.53.54.04.0
VDVSDS(V(V) )
XC61C
Series
11/18

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