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Número de pieza | S-1003 | |
Descripción | HIGH-ACCURACY VOLTAGE DETECTOR | |
Fabricantes | Seiko Instruments | |
Logotipo | ||
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© Seiko Instruments Inc., 2013
MANUAL RESET BUILT-IN DELAY CIRCUIT (EXTERNAL DELAY TIME SETTING)
HIGH-ACCURACY VOLTAGE DETECTOR
Rev.1.0_00
The S-1003 Series is a high-accuracy voltage detector developed using CMOS technology. The detection voltage is fixed
internally with an accuracy of ±1.0% (−VDET ≥ 2.2 V). It operates with current consumption of 500 nA typ.
The release signal can be delayed by setting a capacitor externally. Delay time accuracy is ±15%.
Moreover, since the S-1003 Series includes the manual reset function, the reset signal can be also output forcibly.
Two output forms Nch open-drain output and CMOS output are available.
Features
• Detection voltage:
• Detection voltage accuracy:
• Current consumption:
• Operation voltage range:
• Hysteresis width:
• Manual reset function:
• Delay time accuracy:
• Output form:
• Operation temperature range:
• Lead-free (Sn 100%), halogen-free
1.2 V to 5.0 V (0.1 V step)
±1.0% (2.2 V ≤ −VDET ≤ 5.0 V)
±22 mV (1.2 V ≤ −VDET < 2.2 V)
500 nA typ.
0.95 V to 10.0 V
5% ± 2%
MR pin logic active "L", active "H"
±15% (CD = 4.7 nF)
Nch open-drain output (Active "L")
CMOS output (Active "L")
Ta = −40°C to +85°C
Applications
• Power supply monitor for microcomputer and reset for CPU
• Constant voltage power supply monitor for TV, Blu-ray recorder and home appliance
• Power supply monitor for portable devices such as notebook PC, digital still camera and mobile phone
Packages
• SOT-23-5
• SNT-6A
Seiko Instruments Inc.
1
1 page MANUAL RESET BUILT-IN DELAY CIRCUIT (EXTERNAL DELAY TIME SETTING) HIGH-ACCURACY VOLTAGE DETECTOR
Rev.1.0_00
S-1003 Series
4. Product name list
4. 1 S-1003 Series NA type
Output form: Nch open-drain output (Active "L")
MR pin logic: Active "L"
Detection Voltage
1.2 V ± 22 mV
1.3 V ± 22 mV
1.4 V ± 22 mV
1.5 V ± 22 mV
1.6 V ± 22 mV
1.7 V ± 22 mV
1.8 V ± 22 mV
1.9 V ± 22 mV
2.0 V ± 22 mV
2.1 V ± 22 mV
2.2 V ± 1.0%
2.3 V ± 1.0%
2.4 V ± 1.0%
2.5 V ± 1.0%
2.6 V ± 1.0%
2.7 V ± 1.0%
2.8 V ± 1.0%
2.9 V ± 1.0%
3.0 V ± 1.0%
3.1 V ± 1.0%
3.2 V ± 1.0%
3.3 V ± 1.0%
3.4 V ± 1.0%
3.5 V ± 1.0%
3.6 V ± 1.0%
3.7 V ± 1.0%
3.8 V ± 1.0%
3.9 V ± 1.0%
4.0 V ± 1.0%
4.1 V ± 1.0%
4.2 V ± 1.0%
4.3 V ± 1.0%
4.4 V ± 1.0%
4.5 V ± 1.0%
4.6 V ± 1.0%
4.7 V ± 1.0%
4.8 V ± 1.0%
4.9 V ± 1.0%
5.0 V ± 1.0%
Table 3
SOT-23-5
S-1003NA12I-M5T1U
S-1003NA13I-M5T1U
S-1003NA14I-M5T1U
S-1003NA15I-M5T1U
S-1003NA16I-M5T1U
S-1003NA17I-M5T1U
S-1003NA18I-M5T1U
S-1003NA19I-M5T1U
S-1003NA20I-M5T1U
S-1003NA21I-M5T1U
S-1003NA22I-M5T1U
S-1003NA23I-M5T1U
S-1003NA24I-M5T1U
S-1003NA25I-M5T1U
S-1003NA26I-M5T1U
S-1003NA27I-M5T1U
S-1003NA28I-M5T1U
S-1003NA29I-M5T1U
S-1003NA30I-M5T1U
S-1003NA31I-M5T1U
S-1003NA32I-M5T1U
S-1003NA33I-M5T1U
S-1003NA34I-M5T1U
S-1003NA35I-M5T1U
S-1003NA36I-M5T1U
S-1003NA37I-M5T1U
S-1003NA38I-M5T1U
S-1003NA39I-M5T1U
S-1003NA40I-M5T1U
S-1003NA41I-M5T1U
S-1003NA42I-M5T1U
S-1003NA43I-M5T1U
S-1003NA44I-M5T1U
S-1003NA45I-M5T1U
S-1003NA46I-M5T1U
S-1003NA47I-M5T1U
S-1003NA48I-M5T1U
S-1003NA49I-M5T1U
S-1003NA50I-M5T1U
SNT-6A
S-1003NA12I-I6T1U
S-1003NA13I-I6T1U
S-1003NA14I-I6T1U
S-1003NA15I-I6T1U
S-1003NA16I-I6T1U
S-1003NA17I-I6T1U
S-1003NA18I-I6T1U
S-1003NA19I-I6T1U
S-1003NA20I-I6T1U
S-1003NA21I-I6T1U
S-1003NA22I-I6T1U
S-1003NA23I-I6T1U
S-1003NA24I-I6T1U
S-1003NA25I-I6T1U
S-1003NA26I-I6T1U
S-1003NA27I-I6T1U
S-1003NA28I-I6T1U
S-1003NA29I-I6T1U
S-1003NA30I-I6T1U
S-1003NA31I-I6T1U
S-1003NA32I-I6T1U
S-1003NA33I-I6T1U
S-1003NA34I-I6T1U
S-1003NA35I-I6T1U
S-1003NA36I-I6T1U
S-1003NA37I-I6T1U
S-1003NA38I-I6T1U
S-1003NA39I-I6T1U
S-1003NA40I-I6T1U
S-1003NA41I-I6T1U
S-1003NA42I-I6T1U
S-1003NA43I-I6T1U
S-1003NA44I-I6T1U
S-1003NA45I-I6T1U
S-1003NA46I-I6T1U
S-1003NA47I-I6T1U
S-1003NA48I-I6T1U
S-1003NA49I-I6T1U
S-1003NA50I-I6T1U
Seiko Instruments Inc.
5
5 Page MANUAL RESET BUILT-IN DELAY CIRCUIT (EXTERNAL DELAY TIME SETTING) HIGH-ACCURACY VOLTAGE DETECTOR
Rev.1.0_00
S-1003 Series
Electrical Characteristics
1. Nch open-drain output product
Table 10
(Ta = +25°C unless otherwise specified)
Item Symbol
Condition
Min.
Typ.
Max.
Unit
Test
Circuit
Detection voltage*1
−VDET
1.2 V ≤ −VDET < 2.2 V
2.2 V ≤ −VDET ≤ 5.0 V
−VDET(S)
− 0.022
−VDET(S)
× 0.99
−VDET(S)
−VDET(S)
−VDET(S)
+ 0.022
−VDET(S)
× 1.01
V
V
1
1
Hysteresis width
VHYS
−
−VDET
× 0.03
−VDET
× 0.05
−VDET
× 0.07
V
1
Current consumption ISS
Operation voltage
VDD
Output current
IOUT
VDD = −VDET(S) + 1.0 V
−
Output transistor
VDD = 0.95 V
Nch
VDS*2 = 0.5 V
MR pin active
VDD = 1.2 V
VDD = 2.4 V
VDD = 4.8 V
Output transistor
− 0.50 0.90 μA 2
0.95 − 10.0 V 1
0.59 1.00 − mA 3
0.73 1.33 − mA 3
1.47 2.39 − mA 3
1.86 2.50 − mA 3
Leakage current
Delay time*3
Detection voltage
temperature
coefficient*4
ILEAK
tD
Nch
VDD = 10.0 V, VOUT = 10.0 V
MR pin non-active
CD = 4.7 nF
Δ−VDET
ΔTa • −VDET
Ta = −40°C to +85°C
− − 0.08 μA 3
8.5 10.0 11.5 ms 4
− ±100 ±350 ppm/°C 1
MR pin
input voltage "H"
VMRH
NA type
(MR pin logic active "L")
NB type
(MR pin logic active "H")
VDD
− 0.3
1.2
−
−
− V6
− V6
MR pin
input voltage "L"
VMRL
NA type
(MR pin logic active "L")
NB type
(MR pin logic active "H")
−
−
VDD
− 1.2
V
6
− − 0.3 V 6
MR pin
input resistance
RMR
− 0.5 1.0 1.6 MΩ 6
*1. −VDET: Actual detection voltage value, −VDET(S): Set detection voltage value (the center value of the detection voltage
range in Table 3 or Table 4.)
*2. VDS: Drain-to-source voltage of the output transistor
*3. The time period from when the pulse voltage of 0.95 V → −VDET(S) + 1.0 V is applied to the VDD pin to when VOUT
reaches VDD × 0.9, after the output pin is pulled up to VDD by the resistance of 100 kΩ.
*4. The temperature change of the detection voltage [mV/°C] is calculated by using the following equation.
Δ − VDET
ΔTa
[mV/°C]*1 = −VDET(S) (typ.)[V]*2 ×
Δ − VDET
ΔTa • −VDET
[ppm/°C]*3 ÷ 1000
*1. Temperature change of the detection voltage
*2. Set detection voltage
*3. Detection voltage temperature coefficient
Seiko Instruments Inc.
11
11 Page |
Páginas | Total 30 Páginas | |
PDF Descargar | [ Datasheet S-1003.PDF ] |
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