r3117xxx1 2 Series
r3117xxx1 2 Series
Notice
If the SENSE pin voltage of R3117xxx1A/C and R3117Qxx2A/C make the gradual curve by rasing 0.5V/ms
or less, it may cause noise when the output voltage is switched from low to high.Please use R3117xxx3A/C
and R3117Qxx4A/C Series for new designs instead of these products to avoid the above problem.
OUTLINE
The R3117x series are CMOS-based voltage detector ICs with high detector threshold accuracy and ultra-low
supply current, which can be operated at an extremely low voltage and is used for system reset as an example.
Each of these ICs consists of a voltage reference unit, a comparator, resistors for detector threshold setting,
an output driver and a hysteresis circuit. The detector threshold is fixed with high accuracy internally and does
not require any adjustment.
The tolerance of the detector threshold is ±15mV (-VDET < = 1.5V) or ±1.0% (1.5V< -VDET). Since the sense pin is
separated from the VDD pin of the IC, therefore, even if the sense pin voltage becomes to 0V, the output voltage
keeps its "L" level.
Two output types, Nch open drain type and CMOS type are available.
Three types of packages, SOT-23-5, SC-88A, and DFN(PLP)1010-4 are available.
FEATURES∗
• Supply Current ......................................................................Typ. 0.29μA (VDD=6.0V)
Consumption current through SENSE pin is not included.
APPLICATIONS
• CPU and Logic Circuit Reset
• Battery Checker
• Window Comparator
• Wave Shaping Circuit
• Battery Back-up Circuit
• Power Failure Detector
1
R3117xxx1/2
BLOCK DIAGRAMS
SENSE SENSE
DOUT
Vref Vref
GND GND
SELECTION GUIDE
The package type, the detector threshold, the output type and the taping type for the ICs can be selected at
the users’ request.
2
R3117xxx1/2
PIN CONFIGURATIONS
• DFN(PLP)1010-4*1 • SC-88A • SOT-23-5
Top View Bottom View 5 4 5 4
4 3 3 4
1 2 2 1 1 2 3
1 2 3
PIN DESCRIPTIONS
• DFN(PLP)1010-4*1
Pin No. Symbol Description
1 DOUT Output Pin ("L" at detection)
2 SENSE Voltage Detector Voltage Sense Pin
3 GND Ground Pin
4 VDD Input Pin
∗1) Tab is GND level. (They are connected to the reverse side of this IC.)
The tab is better to be connected to the GND, but leaving it open is also acceptable.
• SC-88A
Pin No. Symbol Description
1 VDD Input Pin
2 NC No Connection*2
3 GND Ground Pin
4 SENSE Voltage Detector Voltage Sense Pin
5 DOUT Output Pin ("L" at detection)
∗2) In terms of NC pin of SC-88A, connect it to the GND or use it as open.
• SOT-23-5
Pin No. Symbol Description
1 DOUT Output Pin ("L" at detection)
2 VDD Input Pin
3 GND Ground Pin
4 NC No Connection
5 SENSE Voltage Detector Voltage Sense Pin
3
R3117xxx1/2
Electronic and mechanical stress momentarily exceeded absolute maximum ratings may cause the
permanent damages and may degrade the life time and safety for both device and system using the device
in the field. The functional operation at or over these absolute maximum ratings is not assured.
ELECTRICAL CHARACTERISTICS
• R3117xxxxA/C values indicate −40°C <
= Topt <
= 105°C, unless otherwise noted. Topt=25°C
4
R3117xxx1/2
All of electronic equipment should be designed that the mounted semiconductor devices operate within the
recommended operating conditions. The semiconductor devices cannot operate normally over the
recommended operating conditions, even if when they are used over such conditions by momentary
electronic noise or surge. And the semiconductor devices may receive serious damage when they continue
to operate over the recommended operating conditions.
5
R3117xxx1/2
6
R3117xxx1/2
VDD=
0.6V
0.020
VDS= VDD=
6 25 0.5V 5.0V 80
VDD= VSENSE=
6.0V
1.0V
0.400 ↓
VDS= 0V
0.5V
∗Note)
VDD=
5.0V
VDD= VSENSE=
VDD= 4.5V
1.5V 0.650 0V
1.000 VDS= ↓
VDS= 2.1V -VDET
0.5V +2.0V 40
VDD=
0.6V ∗Note)
7
VDS=
0.05V
5
VDD=
5.0V
40 40
VSENSE=
6.0V
↓
-VDET
-2.0V
VDD= ∗Note)
3.0V
2.400
VDS=
0.5V VDD=
5.0V
VDD=
6.0V VSENSE=
0.900 0V
VDS=
↓
2.1V
6.0V 80
10
∗Note)
7
R3117xxx1/2
TIMING CHART
Supply Voltage
(VDD)
Minimum Operating VDDL
Voltage
Detector Threshold Detector Threshold
Released Voltage +VDET Hysteresis Hysteresis
Detector Threshold -VDET
SENSE Pin Voltage
(VSENSE) GND
If the SENSE pin voltage is raised 0.5V/ms or less, it may cause noise when the output voltage is switched
from low to high.
GND GND
5.0V 5.0V
Output Voltage
(VOUT) 2.5V VDD/2
Output Voltage (VOUT)
GND GND
tPHL tPLH tPHL tPLH
Nch Open Drain Output CMOS Output
(R3117xxxxA) (R3117xxxxC)
8
R3117xxx1/2
OPERATION
• Operation of R3117xxxxA
SENSE
VDD
Ra Comparator
DOUT pin should be pulled-up to
DOUT VDD or an external voltage level.
Rb
Vref Nch
Tr.1
Rc
GND
1 2 3
Supply Voltage (VDD)
Minimum Operating VDDL
Voltage
Step 1 2 3
Released Voltage +VDET Comparator (−)
Detector Threshold B I II I
A Hysteresis Pin Input Voltage
Detector Threshold −VDET
Rb+Rc
I ×VSENSE
Ra+Rb+Rc
Pull-up Voltage
Output
Detect Delay Time Delay Time Rb
II ×VSENSE
Ra+Rb
Output Voltage tPHL tPLH
(VOUT)
GND
Operation Diagram
• Explanation of operation
Step 1. The output voltage is equal to the pull-up voltage.
Step 2. At Point "A", Vref > = VSENSE×(Rb+Rc)/(Ra+Rb+Rc) is true, as a result, the output of comparator is
reversed from "L" to "H", therefore the output voltage becomes the GND level. The voltage level of Point
A means a detector threshold voltage (-VDET). (When the supply voltage is lower than the minimum
operating voltage, the operation of the output transistor becomes indefinite. The output voltage is equal
to the GND level.)
Step 3. At Point "B", Vref <
= VSENSE×Rb/(Ra+Rb) is true, as a result, the output of comparator is reversed from "H"
to "L", then the output voltage is equal to the pull-up voltage. The voltage level of Point B means a
released voltage (+VDET).
∗) The difference between a released voltage and a detector threshold voltage is a detector threshold hysteresis.
9
R3117xxx1/2
• Operation of R3117xxxxC
SENSE
VDD
Ra Comparator Pch
DOUT
Rb
Vref Nch
Tr.1
Rc
GND
Block Diagram (R3117xxxxC)
1 2 3
Supply Voltage (VDD)
Minimum Operating VDDL
Voltage Step 1 2 3
Comparator (−)
I II I
Pin Input Voltage
Released Voltage +VDET Detector Threshold B
A Hysteresis Comparator Output L H L
Detector Threshold −VDET
Tr.1 OFF ON OFF
SENSE Pin Voltage
Pch ON OFF ON
(VSENSE) Output Tr.
GND
Nch OFF ON OFF
Rb+Rc
I ×VSENSE
Ra+Rb+Rc
Supply Voltage (VDD)
Output Rb
Detect Delay Time Delay Time II ×VSENSE
Ra+Rb
Output Voltage tPHL tPLH
(VOUT)
GND
Operation Diagram
• Explanation of operation
Step 1. The output voltage is equal to the supply voltage (VDD).
Step 2. At Point "A", Vref > = VSENSE×(Rb+Rc)/(Ra+Rb+Rc) is true, as a result, the output of comparator is
reversed from "L" to "H", therefore the output voltage becomes the GND level. The voltage level of Point
A means a detector threshold voltage (-VDET). (When the supply voltage is lower than the minimum
operating voltage, the operation of the output transistor becomes indefinite. The output voltage is equal
to the GND level.
Step 3. At Point "B", Vref <
= VSENSE×Rb/(Ra+Rb) is true, as a result, the output of comparator is reversed from "H"
to "L", then the output voltage is equal to the supply voltage (VDD). The voltage level of Point B means a
released voltage (+VDET).
∗) The difference between a released voltage and a detector threshold voltage is a detector threshold hysteresis.
10
R3117xxx1/2
VDD
+VDET
VSENSE
VOUT
11
R3117xxx1/2
Vs VDD Vs
Ra VDD Ra Ia R3117x
SENSE Series
-VDET R3117x -VDET
Series
SENSE DOUT ISENSE RSENSE
Rb Rb Ib
GND GND
Fig.2 Fig.3
VB
Vs R1
Ra VDD
SENSE R2
R3117x
-VDET
Series
DOUT
Rb
GND
Fig.4
12
R3117xxx1/2
140
120
100
Pulse Width (µs)
80
60
R3117x50xA/C
40
20
R3117x07xA/C
0
1 10 100 1000
Pulse Width
Sense Voltage (VSENSE)
This graph shows the maximum pulse conditions to keep the released voltage. If the pulse with larger
amplitude or wider width than the graph above, is input to SENSE pin, the reset signal may be output.
13
R3117xxx1/2
TEST CIRCUITS
ISS
5V or VDD
VDD VDD
470kΩ
R3117x R3117x
VIN VOUT
VIN Series Series
SENSE SENSE DOUT
GND GND
Nch Driver Output Current Test Circuit Pch Driver Output Current Test Circuit
∗Apply to CMOS Output type only
14
R3117xxx1/2
TYPICAL CHARACTERISTICS
1) Supply Current vs. Supply Voltage
0.2 0.2
0 0
0 1 2 3 4 5 6 0 1 2 3 4 5 6
Supply Voltage VDD (V) Supply Voltage VDD (V)
R3117x07xA/C R3117x30xA/C
VDD=5.0V VDD=5.0V
0.75 3.20
Detector Threshold VDET (V)
0.69 2.95
-40 -25 0 25 50 75 100 105 -40 -25 0 25 50 75 100 105
Temperature Topt (°C) Temperature Topt (°C)
R3117x50xA/C
VDD=5.0V
5.35
Detector Threshold VDET (V)
5.30
+VDET
5.25
5.20
5.15
5.10
5.05
-VDET
5.00
4.95
-40 -25 0 25 50 75 100 105
Temperature Topt (°C)
15
R3117xxx1/2
R3117x07xA/C R3117x30xA/C
0.708 3.03
Detector Threshold VDET (V)
R3117x50xA/C
5.05
Detector Threshold VDET (V)
5.04
Topt=- 40°C
5.03 Topt=25°C
5.02 Topt=105°C
5.01
5.00
4.99
4.98
4.97
4.96
4.95
1 2 3 4 5 6
Supply Voltage VDD (V)
R3117x07xA/C R3117x30xA/C
Detector Threshold Hysteresis VHYS (V)
0.049 0.21
Topt=- 40°C
Topt=- 40°C Topt=25°C
0.042 Topt=25°C 0.18 Topt=105°C
Topt=105°C
0.035 0.15
0.028 0.12
1 2 3 4 5 6 1 2 3 4 5 6
Supply Voltage VDD (V) Supply Voltage VDD (V)
16
R3117xxx1/2
R3117x50xA/C
Detector Threshold Hysteresis VHYS (V)
0.35
Topt=- 40°C
Topt=25°C
Topt=105°C
0.30
0.25
0.20
1 2 3 4 5 6
Supply Voltage VDD (V)
5) Output Voltage vs. SENSE pin Input Voltage (Nch Open Drain Output type is pulled up to VDD.)
R3117x07xA/C R3117x30xA/C
Topt=25°C Topt=25°C
6 6
VDD=5.0V VDD=5.0V
Output Voltage VOUT (V)
5 5
4 4
VDD=3.0V VDD=3.0V
3 3
2 2
VDD=1.0V VDD=1.0V
1 1
0 0
0 0.5 1.0 1.5 2.0 0 1 2 3 4 5
Sense Voltage VSENSE (V) Sense Voltage VSENSE (V)
R3117x50xA/C
Topt=25°C
6
Output Voltage VOUT (V)
5 VDD=5.0V
3 VDD=3.0V
1 VDD=1.0V
0
0 1 2 3 4 5 6
Sense Voltage VSENSE (V)
17
R3117xxx1/2
6) Nch Driver Output Current vs. Supply Voltage 7) Nch Driver Output Current vs. VDS
R3117xxxxA/C R3117xxxxA/C
VDS=0.5V Topt=25°C
Nch Driver Output Current IOUT (mA)
4
10
2
0 0
0 1 2 3 4 5 6 0 0.5 1.0 1.5 2.0
Supply Voltage VDD (V) VDS (V)
8) Pch Driver Output Current vs. Supply Voltage 9) Pch Driver Output Current vs. VDS
R3117xxxxC R3117xxxxC
VDS=2.1V Topt=25°C
Pch Driver Output Current IOUT (mA)
Pch Driver Output Current IOUT (mA)
2.0 2.5
VDD=6.0V
Topt=- 40°C VDD=5.0V
Topt=25°C 2.0 VDD=4.0V
1.5 Topt=105°C VDD=3.0V
VDD=2.0V
VDD=1.0V
1.5
1.0
1.0
0.5
0.5
0 0
0 1 2 3 4 5 6 0 1 2 3 4 5 6
Supply Voltage VDD (V) VDS (V)
18
R3117xxx1/2
TYPICAL APPLICATION
VDD
470kΩ R
VDD VDD
CPU
Vs R3117xxxxA
Series RESET
SENSE DOUT
GND GND
VDD1 VDD2
470kΩ R
VDD VDD
R3117xxxxA CPU
Vs
Series RESET
SENSE DOUT
GND GND
VDD
VDD VDD
R3117xxxxC CPU
Vs
Series RESET
SENSE DOUT
GND GND
19
R3117xxx1/2
TECHNICAL NOTES
When R3117xxxxA/C is used in the circuit as SENSE pin and VDD pin are connected each other such as in
Figure A, if the value of R1 is set excessively large, the dropdown voltage caused by the consumption current of
IC itself, may vary the detector threshold and the released voltage. Also, if the value of R1 is set excessively
large, there may cause oscillation generated by cross conduction current with released operation.
When R3117xxxxA/C is used in the circuit as SENSE pin and VDD pin are connected each other such as in
Figure B, if the value of R1 is set excessively large, the dropdown voltage caused by the consumption current of
IC itself, may vary the detecor threshold and the released voltage.
Also, if the value of R1 is set excessively large, there may be delay in start-up and may cause oscillation
generated by cross conduction current. Furthermore, if the value of R1 is set large and the value of R2 is set
small, released voltage level may shift and the minimum operating voltage may differ. If the value of R2 is set
excessively small from R1, release may not occur and may cause oscillation.
VDD VDD
R1 R1
VDD VDD R2
Figure A Figure B
20
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