R3111X RICOH | Alldatasheet

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Technical content

NO.EA-056-070829 OUTLINE The R3111x 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. Three output types, Nch open drain “L” type, Nch open drain “H” type and CMOS type are available. The R3111x Series are operable at a lower voltage t han that for the Rx5VL series, and can be driven by a single battery. Six types of packages, TO-92, SOT-89, SOT-23-3, SOT-23-5, SC-82AB, and SON1612-6 are available.

FEATURES

SC-82AB, SON1612-6

APPLICATIONS

  • CPU and Logic Circuit Reset
  • Battery Checker
  • Window Comparator
  • Wave Shaping Circuit
  • Battery Back-up Circuit
  • Power Failure Detector

The package type, the detector thre shold, the output type and the taping type for the ICs can be selected at the users’ request. The selection can be made with designating the part number as shown below; R3111x xxxx-xx-x ← Part Number a b c d e f Code Contents a Designation of Package Type; D: SON1612-6 E: TO-92 H: SOT-89 N: SOT-23-5, SOT-23-3 Q: SC-82AB b Setting Detector Threshold (−VDET); Stepwise setting with a step of 0.1V in the range of 0.9V to 6.0V is possible. c Designation of Package Type 1: except SOT-23-3 2: SOT-23-3 d Designation of Output Type; A: Nch Open Drain (Output “L” at VDD=−VDET) B: Nch Open Drain (Output “H” at VDD=−VDET) C: CMOS (Output “L” at VDD=−VDET) e Designation of Packing or Taping Type ; Ex.TO-92: TZ, SOT-89: T1, SOT-23-3, SOT-23-5, SC-82AB, SON1612-6: TR prescribed as standard directions. (Refer to Taping Specifications.) Antistatic bag for TO-92: C f Designation of Composition of pin plating -F: Lead free plating (TO-92, SOT-89, SOT-23-3, SOT-23-5, SC-82AB, SON1612-6)

z TO-92 z SOT-89 z SOT-23-3 z SOT-23-5 z SC-82AB z SON1612-6 3 12 (mark side) 3 12 (mark side) 1 2 (mark side) 12 3 (mark side) 1 2 (mark side) 1 2 3 6 5 4 (mark side) PIN DESCRIPTIONS z TO-92 z SOT-89 z SOT-23-3 Pin No. Symbol Pin No. Symbol Pin No. Symbol

1 VDD 1 OUT 1 OUT

2 GND 2 VDD 2 GND

3 OUT 3 GND 3 VDD

z SOT-23-5 z SC-82AB z SON1612-6 Pin No. Symbol Pin No. Symbol Pin No. Symbol

1 OUT 1 OUT 1 OUT

2 VDD 2 VDD 2 VDD

3 GND 3 NC 3 GND

4 NC 4 GND 4 NC

5 NC 5 VDD

VOUT1 Output Voltage (CMOS) VSS−0.3 to VDD+0.3 V VOUT2 Output Voltage (Nch) VSS−0.3 to 12 V IOUT Output Current 70 mA Power Dissipation (TO-92)* 300 Power Dissipation (SOT-89)* 900 Power Dissipation (SOT-23-3)* 420 Power Dissipation (SOT-23-5)* 420 Power Dissipation (SC-82AB)* 380 PD Power Dissipation (SON1612-6)* 500 mW Topt Operating Temperature Range −40 to 85 °C Tstg Storage Temperature Range −55 to 125 °C Tsolder Lead temperature (Soldering) 260°C, 10s * ) For Power Dissipation, please refer to PACKAGE INFORMATION to be described.

ELECTRICAL CHARACTERISTICS

  • R3111x09xA/C Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit −VDET Detector Threshold 0.882 0.900 0.918 V VHYS Detector Threshold Hysteresis 0.027 0.045 0.063 V ISS Supply Current VDD=0.80V VDD=2.90V 0.8 0.9 2.4 2.7 µA VDDH Maximum Operating Voltage 10 V Topt=25°C 0.55 0.70 VDDL Minimum Operating Voltage∗Note1 V Nch VDS=0.05V,VDD=0.70V VDS=0.50V,VDD=0.85V 0.01 0.05 0.05 0.50 mA IOUT Output Current (Driver Output Pin) Pch VDS=−2.1V,VDD=4.5V 1.0 2.0 mA tPLH Output Delay Time∗Note2 100 µs ∆−VDET/ ∆Topt Detector Threshold Temperature Coefficient −40°C < = Topt < = 85°C ±100 ppm/°C
  • R3111x18xA/C Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit −VDET Detector Threshold 1.764 1.800 1.836 V VHYS Detector Threshold Hysteresis 0.054 0.090 0.126 V ISS Supply Current VDD=1.70V VDD=3.80V 0.8 1.0 2.4 3.0 µA VDDH Maximum Operating Voltage 10 V Topt=25°C 0.55 0.70 VDDL Minimum Operating Voltage∗Note1 V Nch VDS=0.05V, VDD=0.70V VDS=0.50V, VDD=1.50V 0.01 1.00 0.05 2.00 mA IOUT Output Current (Driver Output Pin) Pch VDS=−2.1V,VDD=4.5V 1.0 2.0 mA tPLH Output Delay Time∗Note2 100 µs ∆−VDET/ ∆Topt Detector Threshold Temperature Coefficient −40°C < = Topt < = 85°C ±100 ppm/°C ∗Note1: Minimum operating voltage means the value of input voltage when output voltage maintains 0.1V or less. (In the case of Nch Open Drain Output type, the output pin is pulled up with a resistance of 470kΩ to 5.0V.) ∗Note2: In the case of CMOS Output type: The time interval between the rising edge of VDD input pulse from 0.7V to (+VDET)+2.0V and output voltage level becoming to ((+VDET)+2.0V)/2. In the case of Nch Open Drain Output type: The output pin is pulled up with a resistance of 470kΩ to 5.0V, the time interval between the rising edge of V DD input pulse from 0.7V to (+VDET)+2.0V and output voltage level becoming to 2.5V.
  • R3111x27xA/C Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit −VDET Detector Threshold 2.646 2.700 2.754 V VHYS Detector Threshold Hysteresis 0.081 0.135 0.189 V ISS Supply Current VDD=2.60V VDD=4.70V 0.9 1.1 2.7 3.3 µA VDDH Maximum Operating Voltage 10 V Topt=25°C 0.55 0.70VDDL Minimum Operating Voltage∗Note1 V Nch VDS=0.05V,VDD=0.70V VDS=0.50V,VDD=1.50V 0.01 1.00 0.05 2.00 mA IOUT Output Current (Driver Output Pin) Pch VDS=−2.1V,VDD=4.5V 1.0 2.0 mA tPLH Output Delay Time∗Note2 100 µs ∆−VDET/ ∆Topt Detector Threshold Temperature Coefficient −40°C < = Topt < = 85°C ±100 ppm/°C
  • R3111x36xA/C Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit −VDET Detector Threshold 3.528 3.600 3.672 V VHYS Detector Threshold Hysteresis 0.108 0.180 0.252 V ISS Supply Current VDD= 3.47V VDD= 5.60V 1.0 1.2 3.0 3.6 µA VDDH Maximum Operating Voltage 10 V Topt=25°C 0.55 0.70VDDL Minimum Operating Voltage∗Note1 V Nch VDS=0.05V,VDD=0.70V VDS=0.50V,VDD=1.50V 0.01 1.00 0.05 2.00 mA IOUT Output Current (Driver Output Pin) Pch VDS=−2.1V,VDD=4.5V 1.0 2.0 mA tPLH Output Delay Time∗Note2 100 µs ∆−VDET/ ∆Topt Detector Threshold Temperature Coefficient −40°C < = Topt < = 85°C ±100 ppm/°C ∗Note1: Minimum operating voltage means the value of input voltage when output voltage maintains 0.1V or less. (In the case of Nch Open Drain Output type, the output pin is pulled up with a resistance of 470kΩ to 5.0V.) ∗Note2: In the case of CMOS Output type: The time interval between the rising edge of VDD input pulse from 0.7V to (+VDET)+2.0V and output voltage level becoming to ((+VDET)+2.0V)/2. In the case of Nch Open Drain Output type: The output pin is pulled up with a resistance of 470kΩ to 5.0V, the time interval between the rising edge of V DD input pulse from 0.7V to (+VDET)+2.0V and output voltage level becoming to 2.5V.
  • R3111x45xA/C Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit −VDET Detector Threshold 4.410 4.500 4.590 V VHYS Detector Threshold Hysteresis 0.135 0.225 0.315 V ISS Supply Current VDD=4.34V VDD=6.50V 1.1 1.3 3.3 3.9 µA VDDH Maximum Operating Voltage 10 V Topt=25°C 0.55 0.70 VDDL Minimum Operating Voltage∗Note1 V Nch VDS=0.05V, VDD=0.70V VDS=0.50V, VDD=1.50V 0.01 1.00 0.05 2.00 mA IOUT Output Current (Driver Output Pin) Pch VDS=−2.1V,VDD=8.0V 1.5 3.0 mA tPLH Output Delay Time∗Note2 100 µs ∆−VDET/ ∆Topt Detector Threshold Temperature Coefficient −40°C < = Topt < = 85°C ±100 ppm/°C
  • R3111x54xA/C Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit −VDET Detector Threshold 5.292 5.400 5.508 V VHYS Detector Threshold Hysteresis 0.162 0.270 0.378 V ISS Supply Current VDD=5.20V VDD=7.40V 1.2 1.4 3.6 4.2 µA VDDH Maximum Operating Voltage 10 V Topt=25°C 0.55 0.70 VDDL Minimum Operating Voltage∗Note1 V Nch VDS=0.05V, VDD=0.70V VDS=0.50V, VDD=1.50V 0.01 1.00 0.05 2.00 mA IOUT Output Current (Driver Output Pin) Pch VDS=−2.1V, VDD=8.0V 1.5 3.0 mA tPLH Output Delay Time∗Note2 100 µs ∆−VDET/ ∆Topt Detector Threshold Temperature Coefficient −40°C < = Topt < = 85°C ±100 ppm/°C ∗Note1: Minimum operating voltage means the value of input voltage when output voltage maintains 0.1V or less. (In the case of Nch Open Drain Output type, the output pin is pulled up with a resistance of 470kΩ to 5.0V.) ∗Note2: In the case of CMOS Output type: The time interval between the rising edge of VDD input pulse from 0.7V to (+VDET)+2.0V and output voltage level becoming to ((+VDET)+2.0V)/2. In the case of Nch Open Drain Output type: The output pin is pulled up with a resistance of 470kΩ to 5.0V, the time interval between the rising edge of V DD input pulse from 0.7V to (+VDET)+2.0V and output voltage level becoming to 2.5V.
  • R3111Q231B Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit −VDET Detector Threshold 2.254 2.300 2.346 V VHYS Detector Threshold Hysteresis 0.069 0.115 0.161 V ISS Supply Current VDD=2.2V VDD=4.3V 0.9 1.1 2.7 3.3 µA VDDH Maximum Operating Voltage 10 V Topt=25°C 0.55 0.70VDDL Minimum Operating Voltage∗Note1 V IOUT Output Current (Driver Output Pin) Nch VDS=0.50V,VDD=3.0V 2.5 mA tPLH Output Delay Time∗Note2 100 µs ∆−VDET/ ∆Topt Detector Threshold Temperature Coefficient −40°C < = Topt < = 85°C ±100 ppm/°C
  • R3111Q441B Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit −VDET Detector Threshold 4.312 4.400 4.488 V VHYS Detector Threshold Hysteresis 0.132 0.220 0.308 V ISS Supply Current VDD=4.24V VDD=6.4V 1.1 1.3 3.3 3.9 µA VDDH Maximum Operating Voltage 10 V Topt=25°C 0.55 0.70VDDL Minimum Operating Voltage∗Note1 V IOUT Output Current (Driver Output Pin) Nch VDS=0.50V, VDD=5.5V 2.5 mA tPLH Output Delay Time∗Note2 100 µs ∆−VDET/ ∆Topt Detector Threshold Temperature Coefficient −40°C < = Topt < = 85°C ±100 ppm/°C ∗Note1: Minimum operating voltage means the value of input voltage when output voltage maintains 0.1V or less. (In the case of Nch Open Drain Output type, the output pin is pulled up with a resistance of 470kΩ to 5.0V.) ∗Note2: In the case of CMOS Output type: The time interval between the rising edge of VDD input pulse from 0.7V to (+VDET)+2.0V and output voltage level becoming to ((+VDET)+2.0V)/2. In the case of Nch Open Drain Output type: The output pin is pulled up with a resistance of 470kΩ to 5.0V, the time interval between the rising edge of V DD input pulse from 0.7V to (+VDET)+2.0V and output voltage level becoming to 2.5V.

-VDET +VDET Detector Threshold Released Voltage Minimum Operating Voltage Pull-up Voltage Supply Voltage (VDD) Output Voltage (VOUT) R3111xxxxA R 3111xxxxB R3111xxxxC Detector Threshold Detector Threshold Hysteresis Hysteresis Hysteresis DEFINITION OF OUTPUT DELAY TIME Output Delay Time (tPLH) is defined as follows: 1. In the case of Nch Open Drain Output:(R3111xxxxA/B) Under the condition of the output pin (OUT) is pulled up through a resistor of 470kΩ to 5V, the time interval between the rising edge of VDD pulse from 0.7V to (+VDET)+2.0V and becoming of the output voltage to 2.5V. 2. In the case of CMOS Output:(R3111xxxxC) The time interval between the rising edge of VDD pulse from 0.7V to (+VDET)+2.0V and becoming of the output voltage to ((+VDET)+2.0V)/2. +VDET+2.0V 0.7V Supply Voltage (VDD) GND 5.0V 2.5V GND Output Voltage (VOUT) tPLH tPHL +VDET+2.0V 0.7V GND 5.0V 2.5V GND tPLHtPHL Supply Voltage (VDD) Output Voltage (VOUT) +VDET+2.0V 0.7V GND GND tPLHtPHL +VDET+2.0V +VDET+2.0V Supply Voltage (VDD) Output Voltage (VOUT) Nch Open Drain Output Nch Open Drain Output CMOS Output (R3111xxxxA) (R3111xxxxB) (R31 11xxxxC)

ELECTRICAL CHARACTERISTICS BY DETECTOR THRESHOLD

  • R3111x09x to R3111x60x Detector Threshold Detector Threshold Hysteresis Supply Current 1 Supply Current 2 −VDET[V] VHYS[V] ISS1[µA] ISS2[µA] Part Number 0.8 2.4 1.0 3.0 VDD= (−VDET) −0.10V 0.9 2.7 1.1 3.3 VDD= (−VDET) −0.13V 1.0 3.0 1.2 3.6 VDD= (−VDET) −0.16V 1.1 3.3 1.3 3.9 VDD= (−VDET) −0.20V 1.2 3.6 VDD= (−VDET) +2.0V 1.4 4.2 R3111 *1) In the case of CMOS output type; when the voltage is forced to VDD from 0.7V to (+VDET)+2.0V, time interval between the rising edge of V DD and the reaching point at ((+VDET)+2.0V)/2. I n the case of Nch open drain output type : The output pin is pulled up to 5V thr ough 470kΩ, and when the voltage is forced to VDD from 0.7V to (+VDET)+2.0V, time interval between the rising edge of VDD and the reaching point at ((+VDET)+2.0V)/2. *2) V DD value when Output Voltage is equal or less than 0.1V. In the case of Nch open drain output type, the output pin is pulled up to 5V through 470kΩ resistor. Condition 1: Topt=25°C Condition 2: −40°C < = Topt < = 85°C

Output Current 1 *3 Output Current 2 *3 Output Delay Time Minimum Operating Voltage Detector Threshold Temperature Coefficient IOUT1[mA] IOUT2[mA] tPLH[µs] VDDL[V] ∆−VDET/∆Topt[ppm/°C] VDD= 0.85V 0.05 0.5 VDD= 1.0V 0.2 1.0 Nch VDS=0.05V VDD=0.7V 0.01 0.05 Nch VDS= 0.5V VDD= 1.5V 1.0 2.0 100 *1 Condition 1 0.55 Condition 2 0.65 Condition 1 0.70 Condition 2 0.80 −40°C < = Topt < = 85°C ±100 *3) Output Current (IOUT) of R3111xxxxB has not been described. Please inquire details.

  • Operation of R3111xxxxA Vref Ra Rb Rc VDD OUT GND Tr.1 Nch Comparator OUT pin should be pulled-up to VDD or an external voltage level. Block Diagram (R3111xxxxA) 13 5 A B tPLH 2 4 GND GND VDDL -VDET +VDET Detector Threshold Released Voltage Minimum Operating Voltage Pull-up Voltage Detector Threshold Hysteresis Supply Voltage (VDD) Output Voltage (VOUT) Step 1 2 3 4 5 Comparator (+) Pin Input Voltage I II II II I Comparator Output H L Indefinite L H Tr.1 O FF ON Indefinite ON OFF Output Tr. Nch OFF ON Indefinite ON OFF I ×VDD Rb+Rc Ra+Rb+Rc II ×VDD Rb Ra+Rb Operation Diagram Output Delay Time
  • Explanation of operation Step 1. The output voltage is equal to the pull-up voltage. Step 2. At Point “A”, Vref > = VDD×(Rb+Rc)/(Ra+Rb+Rc) is true, a s a result, the output of comp arator is reversed from "H" to "L", therefore the output voltage becomes the GND level. The voltage level of Point A means a detector threshold voltage (−VDET). Step 3. When the su pply volt age is lowe r than the minimum operatin g volt age, t he operation of the outpu t transistor becomes indefinite. The output voltage is equal to the pull-up voltage. Step 4. The output Voltage is equal to the GND level. Step 5. At Point “B”, Vref < = VDD×Rb/(Ra+Rb) is true, as a result, the output of comparator is reversed from "L" to "H", 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.
  • Operation of R3111xxxxB Vref Ra Rb Rc VDD OUT GND Tr.1 Nch Comparator OUT pin should be pulled-up to VDD or an external voltage level. Block Diagram (R3111xxxxB) tPLH GND GND VDDL -VDET +VDET Detector Threshold Released Voltage Minimum Operating Voltage Pull-up Voltage 1 2 3 A BDetector Threshold Hysteresis Supply Voltage (VDD) Output Voltage (VOUT) Step 1 2 3 Comparator (+) Pin Input Voltage I II I Comparator Output L H L Tr.1 OF F ON OFF Output Tr. Nch ON OFF ON I ×VDD Rb+Rc Ra+Rb+Rc II ×VDD Rb Ra+Rb Operation Diagram Output Delay Time
  • Explanation of operation Step 1. The output voltage is equal to the GND level. Step 2. At Point “A”, Vref > = VDD×(Rb+Rc)/(Ra+Rb+Rc) is true, a s a result, the output of comp arator is reversed from "L" to "H", therefore the output volt age becomes the pull-u p voltage. The voltage level of Point A means a detector threshold voltage (−VDET). Step 3. At Point “B”, Vref < = VDD×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 GND level. The volt age level of Point B means a release d voltage (+VDET). ∗) The difference between a released voltage and a detector threshold voltage is a detector threshold hysteresis.
  • Operation of R3111xxxxC Vref Ra Rb Rc VDD OUT GND Tr.1 Nch PchComparator Block Diagram (R3111xxxxC) tPLH GND GND VDDL -VDET +VDET Detector Threshold Released Voltage Minimum Operating Voltage 12 3 4 5 A BDetector Threshold Hysteresis Supply Voltage (VDD) Output Voltage (VOUT) Step 1 2 3 4 5 Comparator (−) Pin Input Voltage I II II II I Comparator Output H L Indefinite L H Tr.1 O FF ON Indefinite ON OFF Pch ON O FF Indefinite OFF ON Output Tr. Nch OFF O N Indefinite ON OFF I ×VDD Rb+Rc Ra+Rb+Rc II ×VDD Rb Ra+Rb Operation Diagram Output Delay Time
  • Explanation of operation Step 1. The output voltage is equal to the supply voltage (VDD). Step 2. At Point “A”, Vref > = VDD×(Rb+Rc)/(Ra+Rb+Rc) is true, a s a result, the output of comp arator is reversed from "H" to " L", therefore the outp ut voltage b ecomes th e G ND level. Th e voltage level of Point A means a detector threshold voltage (−VDET). Step 3. When the su pply volt age is lowe r than the minimum operatin g volt age, t he operation of the outpu t transistor becomes indefinite. Step 4. The output Voltage is equal to the GND level. Step 5. At Point “B”, Vref < = VDD×Rb/(Ra+Rb) is true, as a result, the output of comparator is reversed from "L" to "H", then the output voltage is equal to the supply volt age (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.

470Ω VOUT Supply Current Test Circuit Detector Threshold Test Circuit (Pull-up circuit is not necessary for CMOS Output type.) GND VDD VIN R3111x Series OUT VDS IOUT GND VDD VIN R3111x Series OUT VDD−VDS IOUT VDS Nch Driver Output Current Test Circuit Pch Driver Output Current Test Circuit ∗Apply to CMOS Output type only GND VDD R3111x Series OUT VDS OUT ROUT 470kΩ P.G. +VDET+2.0V 0.7V VSS COUT GND VDD R3111x Series OUT VDS OUT ROUT 470kΩ P.G. +VDET+2.0V 0.7V VSS RIN 470kΩ CIN Output Delay Time Test Circuit (1) Output Delay Time Test Circuit (2) (Pull-up circuit is not necessary for CMOS Output type.)

1) Supply Current vs. Input Voltage R31 11x09xC R3111x27xC Topt=85°C 25°C -40°C 2.5 2.0 1.5 1.0 0.5 0.0 Input Voltage VIN(V) 02 4 6 8 Supply Current ISS(µA) Topt=85°C 25°C -40°C 2.0 1.5 1.0 0.5 0.0 Input Voltage VIN(V) 02 4 6 8 Supply Current ISS(µA) R31 11x45xC Topt=85°C 25°C -40°C 2.0 1.5 1.0 0.5 0.0 Input Voltage VIN(V) 02 4 6 8 Supply Current ISS(µA) 2) Detector Threshold Hysteresis vs. Temperature R31 11x09xC R3111x27xC +VDET -VDET 1.00 0.98 0.96 0.94 0.92 0.90 0.88 0.84 0.86 Temperature Topt(°C) -60 0 204 06 08 0-40 -20 100 Detector Threshold -VDET(V) 2.9 2.8 2.7 2.6 2.5 +VDET -VDET Temperature Topt(°C) -60 0 204 06 08 0-40 -20 100 Detector Threshold -VDET(V)

4.8 4.7 4.6 4.5 4.4 +VDET -VDET Temperature Topt(°C) -60 0 204 06 08 0-40 -20 100 Detector Threshold -VDET(V) 3) Output Voltage vs. Input Voltage R31 11x09xC R3111x09xA Topt=-40°C 25°C 85°C 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.0 0.2 Input Voltage VIN(V) Output Voltage VOUT(V) 5V Pull-up 470kΩ6 Input Voltage VIN(V) Output Voltage VOUT(V) Topt=-40°C 25°C 85°C R31 11x27xC R3111x27xA Topt=-40°C 25°C 85°C 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.0 0.5 Input Voltage VIN(V) 0 1.5 2 2.5 3 3.50.5 1 4 Output Voltage VOUT(V) 5V Pull-up 470kΩ6 Input Voltage VIN(V) 0 1.5 2 2.5 3 3.50.5 1 4 Output Voltage VOUT(V) Topt=-40°C 25°C 85°C

Topt=-40°C 25°C 85°C Input Voltage VIN(V) 02 316 54 Output Voltage VOUT(V) 5V Pull-up 470kΩ6 Input Voltage VIN(V) 02 316 54 Output Voltage VOUT(V) Topt=-40°C 25°C 85°C 4) Nch Driver Output Current vs. VDS R31 11x09xC R3111x09xC Topt=25°C VDD=0.85V 0.7V 700 600 500 400 300 200 100 VDS(V) 0 0.2 0.4 0.6 0.8 Output Current IOUT(µA) VDD=0.8V 0.7V Topt=25°C300 250 200 150 100 VDS(V) Output Current IOUT(µA) R31 11x27xC R3111x27xC Topt=25°C VDD=2.5V 2.0V 1.5V VDS(V) 0 0.5 1 1.5 2 2.5 Output Current IOUT(mA) VDD=0.8V 0.7V Topt=25°C300 250 200 150 100 VDS(V) Output Current IOUT(µA)

Topt=25°C VDD=4.5V 4.0V 3.5V 3.0V 2.5V 2.0V 1.5V VDS(V) Output Current IOUT(mA) VDD=0.8V 0.7V Topt=25°C300 250 200 150 100 VDS(V) Output Current IOUT(µA) 5) Nch Driver Output Current vs. Input Voltage R31 11x09xC R3111x27xC 900 800 700 600 500 400 300 200 100 Input Voltage VIN(V) 0 0.2 0.4 0.6 10.8 Output Current IOUT(µA) Topt=-85°C 25°C -40°C Input Voltage VIN(V) 0 0.5 1 1.5 1 2.5 3 Output Current IOUT(mA) Topt=-40°C 25°C 85°C R31 11x45xC Input Voltage VIN(V) 01 2 3 4 5 Output Current IOUT(mA) Topt=-40°C 25°C 85°C

6) Pch Driver Output Current vs. Input Voltage R31 11x09xC R3111x27xC Topt=25°C VDS=0.7V 0.5V 1.4 1.2 1.0 0.8 0.6 0.4 0.0 0.2 Input Voltage VIN(V) 024 6 Output Current IOUT(mA) Topt=25°C VDS=2.1V 1.5V 0.5V 1.0V 3.5 3.0 2.5 2.0 1.5 1.0 0.0 0.5 Input Voltage VIN(V) 01 2 436 57 Output Current IOUT(mA) R31 11x45xC Topt=25°C VDS=2.1V 1.5V 0.5V 1.0V 4.5 3.5 4.0 3.0 2.5 2.0 1.5 1.0 0.0 0.5 Input Voltage VIN(V) 02 4 861 Output Current IOUT(mA) 7) Output Delay Time vs. Load Capacitance (Topt=25°C) R31 11x09xA R3111x27xA tPLH tPHL 100 0.1 0.01 0.001 Load Capacitance COUT(µF) 0.0001 0.010.001 0.1 Output Delay Time tP(ms) tPLH tPHL 100 0.1 0.01 0.001 Load Capacitance COUT(µF) 0.0001 0.010.001 0.1 Output Delay Time tP(ms)

0.1 0.01 0.001 Load Capacitance COUT(µF) 0.0001 0.010.001 0.1 Output Delay Time tP(ms) 8) Output Delay Time vs. Input Pin Capacitance R31 11x09xA R3111x27xA tPHL tPLH 100 0.1 0.01 0.001 Input Pin Capacitance CIN(µF) 0.0001 0.010.001 0.1 Output Delay Time tP(ms) tPLH tPHL 100 0.1 0.01 0.001 Input Pin Capacitance CIN(µF) 0.0001 0.010.001 0.1 Output Delay Time tP(ms) R31 11x45xA tPLH tPHL 100 0.1 0.01 0.001 Input Pin Capacitance CIN(µF) 0.001 0.10.01 1 Output Delay Time tP(ms)

  • R3111xxxxA CPU Reset Circuit (Nch Open Drain Output) Case 1. Input Voltage to R3111xxxxA is equal to Input Voltage to CPU Case 2. Input Voltage to R3111xxxxA is unequal to Input Voltage to CPU R3111xxxxA Series VDD GND OUT R VDD RESET CPU GND VDD 470kΩ R3111xxxxA Series VDD GND OUT R VDD RESET CPU GND VDD2VDD 470kΩ
  • R3111xxxxC CPU Reset Circuit (CMOS Output) R3111xxxxC Series VDD GND OUT VDD RESET CPU GND VDD
  • R3111xxxxA Output Delay Time Circuit 1 (Nch Open Drain Output)
  • R3111xxxxA Output Delay Time Circuit 2 (Nch Open Drain Output) R3111xxxxA Series VDD GND OUT R VDD RESET CPU GND VDD 470kΩ R3111xxxxA Series VDD GND OUT R2 VDD RESET CPU GND VDD 470kΩ R1100kΩ
  • Memory Back-up Circuit R3111xxxxC Series GND VDD VDD GND OUT A B C VCC VCC RAM1 GND CS VCC RAM2 GND CS VCC RAM3 GND CS VCC RAM4 GND CS
  • Voltage level Indicator Circuit (lighted when the power runs out) (Nch Open Drain Output) R3111xxxxA Series VDD GND OUT VDD
  • Detector Threshold Adjustable Circuit (Nch Open Drain Output) R3111xxxxA Series GND VDD Rb VDD C RaOUT Adjusted Detector Threshold =(−VDET)×(Ra+Rb)/Rb Hysteresis Voltage =(VHYS)×(Ra+Rb)/Rb ∗) If the value of Ra is set excessively large, voltage drop may occur caused by the supply current of IC itself, and detector threshold may vary.
  • Window Comparator Circuit (Nch Open Drain Output) R3111xxxxA Series VDD GND OUT VDD R3111xxxxA Series VDD GND OUT VDET1 OUT VDD VDET1 VSS VSS OUT VDET2
  • Over-charge Preventing Circuit R3111xxxxC Series VDD GND OUT R4R2R1 Light Solar Battery Load

When R3111xxxxA/B (Nch Open Drain Output Type) is used in Figure A or Figure B, if impedance of Voltage Supply pin, VDD and VDD of this IC is large, detector thre shold level would shift by voltage dropdown caused by the consumption current of the IC itself. Released voltage may also shif t and delay time for start-up might be generated by this usage. When R3111xxxxC (CMOS Output Type) is used in Figur e A or Figure B, Output level c ould be unstable by cross conduction current which is generated at detector threshold level or at released voltage level, therefore, do not use this IC with the connection in Figure A or Figure B. The connection in Figure C may cause the oscillation in both R3111xxxxC (CMOS Output) and R3111xxxxA/B (Nch Open Drain Output), therefore do not use R3111x Series with the connection in Figure C. GND VDD R3111x Series OUTR2 R3111x Series OUT GND GND VDD R3111x Series OUT VDD VDD VDD Figure A Figure B Figure C

PACKAGE INFORMATION PE-TO-92-0611

  • TO-92 (SC-43A) Unit: mm PACKAGE DIMENSIONS 5.2Max. 4.2Max. 2.3Max. 5.2Max.12.7Min. 0.6Max. 0.55Max. 1.27 2.54 1 2 3 0.7 0.5Max. 5.2 Max. 4.2 Max. 2.3 Max. 5.2 Max.12.7 Min. 0.6 Max. 0.55 1 2 3 0.5 Max. Max. 2.5 –0.1 +0.4 0.7 TAPING SPECIFICATION RF RR ±1.0 0.3 12.7 12.7 φ4.0±0.2 6.0±0.5 9.0±0.5 0.5 Max. 18.0+1.0 –0.5 16.0±0.5 19.0±0.5 24.7 Max. * : Mark Side User Direction of Feed (Note) (Note) When taping is performed,the pins of TO-92 are subjected to a particular forming. (Note) TZ type tape is not in the form of a reel,but is packed in a zigzag state in box.Therefore,the tape can be used as either an RF type tape or an RR type tape,depending upon the pulling out direction (B or F). When TZ type tape is pulled out from the direction B When TZ type tape is pulled out from the direction F 1.45 Max. 0.7±0.2 TAPING REEL DIMENSIONS (RF, RR) PACKING BOX DIMENSIONS (TZ) (1reel=2000pcs) (1box=2500pcs) ∅30 ∅80 ∅360 335 265 or 200 F B

PACKAGE INFORMATION PE-TO-92-0611 POWER DISSIPATION (TO-92) This specification is at mounted on board. Measurement Result (Topt=25 °C,Tjmax=125°C) Free Air Power Dissipation 300mW Thermal Resistance θja=(125−25°C)/0.3W=333°C/W 0 50 10025 75 85 125 150 200 100 300 400 500 Free Air Ambient Temperature (°C) Power Dissipation PD(mW) Po wer Dissipation

PACKAGE INFORMATION PE-SOT-89-0512

  • SOT-89 (SC-62) Unit: mm PACKAGE DIMENSIONS 4.5±0.1 0.4±0.1 0.4±0.1 1.5±0.1 1.6±0.2 1.5±0.1 ±0.1 1.5±0.1 2.5±0.1 0.4MIN. 4.25MAX. 0.8 ∅1.0 12 3 0.42±0.2 0.42±0.2 0.47 TAPING SPECIFICATION (T1: Standard Type) User Direction of Feed 8.0±0.1 5.0 ∅1.5 4.0±0.1 2.0±0.05 1.5±0.15.65±0.05 12±0.3 +0.1 2.5MAX. 0.3±0.1 4.7 ∅1.6±0.1 TAPING REEL DIMENSIONS (1reel=1000pcs) 15.4±1.0 13±0.3 21±0.8 2±0.5 ∅ 60 0∅ 180−1.5 13±0.2∅

PACKAGE INFORMATION PE-SOT-89-0512 POWER DISSIPATION (SOT-89) This specification is at mounted on board. Power Dissipation (PD) depends on conditions of mounting on board. This specification is based on the measurement at the condition below: Measurement Conditions Standard Land Pattern Environment Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plactic (Double sided) Board Dimensions 50mm × 50mm × 1.6mm Copper Ratio Top side : Approx. 10% , Back side : Approx. 100% Through-hole - Measurement Result ( T o p t = 2 5 °C,Tjmax=125°C) Standard Land Pattern Free Air Power Dissipation 900mW 500mW Thermal Resistance θja=(125−25°C)/0.9W=111°C/W 200 °C/W 0 50 10025 75 125 150 Ambient Temperature (°C) 250 500 900 750 1000Power Dissipation PD(mW) On Board Free Air Power Dissipation Measurement Board Pattern IC Mount Area (Unit : mm) RECOMMENDED LAND PATTERN (SOT-89) 3.0 45° 0.71.5 1.51.5 1.01.01.0 2.0 (Unit : mm)

PACKAGE INFORMATION PE-SOT-23-5-0610

  • SOT-23-5 (SC-74A) Unit: mm PACKAGE DIMENSIONS 2.9±0.2 0.4±0.1 1.9±0.2 (0.95) (0.95) 123 +0.2 −0.11.6 +0.2 −0.11.1 +0.1 −0.050.15 2.8±0.3 0 to 0.1 0.8±0.1 0.2 Min. TAPING SPECIFICATION 2.0Max. 0.3±0.1 4.0±0.1 2.0±0.05 4.0±0.1 3.3 3.2 8.0±0.3 1.75±0.13.5±0.05 φ1.5+0.1 ∅1.1±0.1 TR User Direction of Feed TAPING REEL DIMENSIONS REUSE REEL (EIAJ-RRM-08Bc) (1reel=3000pcs) 2±0.5 11.4±1.0 9.0±0.313±0.2∅ 60∅ +1 180∅ 0 −1.5 21±0.8

PACKAGE INFORMATION PE-SOT-23-5-0610 POWER DISSIPATION (SOT-23-5) This specification is at mounted on board. Power Dissipation (PD) depends on conditions of mounting on board. This specification is based on the measurement at the condition below: (Power Dissipation (SOT-23-5) is substitution of SOT-23-6.) Measurement Conditions Standard Land Pattern Environment Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plactic (Double sided) Board Dimensions 40mm × 40mm × 1.6mm Copper Ratio Top side : Approx. 50% , Back side : Approx. 50% Through-hole φ0.5mm × 44pcs Measurement Result (Topt=25 °C,Tjmax=125°C) Standard Land Pattern Free Air Power Dissipation 420mW 250mW Thermal Resistance θja=(125−25°C)/0.42W=263°C/W 400 °C/W 0 50 10025 75 85 125 150 Ambient Temperature (°C) 200 100 300 400 250 420 500 600Power Dissipation PD(mW) On Board Free Air Power Dissipation Measurement Board Pattern IC Mount Area Unit : mm RECOMMENDED LAND PATTERN 0.7 MAX. 0.950.95 1.9 2.4 1.0 (Unit: mm)

PACKAGE INFORMATION PE-SOT-23-3-0510

  • SOT-23-3 (SC-59A) Unit: mm PACKAGE DIMENSIONS 2.9±0.2 0.4±0.1 1.9±0.2 (0.95) (0.95) 1.6±0.2 +0.2 –0.11.1 +0.1 –0.060.16 2.8±0.3 0.2 MIN. 0.8 0 to 0.1 1.4MAX. TAPING SPECIFICATION (T1: Standard Type) 2.0MAX. 0.3±0.1 4.0±0.1 2.0±0.05 4.0±0.1 3.3 3.2 8.0±0.3 1.75±0.13.5±0.05 1.5+0.1 ∅1.1±0.1 TR User Direction of Feed TAPING REEL DIMENSIONS (1reel=3000pcs) 21±0.8 11.4±1.0 9.0±0.3 2±0.5 13±0.2 180 –1.5

PACKAGE INFORMATION PE-SOT-23-3-0510 POWER DISSIPATION (SOT-23-3) This specification is at mounted on board. Power Dissipation (PD) depends on conditions of mounting on board. This specification is based on the measurement at the condition below: (Power Dissipation (SOT-23-3) is substitution of SOT-23-6.) Measurement Conditions Standard Land Pattern Environment Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plactic (Double sided) Board Dimensions 40mm × 40mm × 1.6mm Copper Ratio Top side : Approx. 50% , Back side : Approx. 50% Through-hole φ0.5mm × 44pcs Measurement Result (Topt=25 °C,Tjmax=125°C) Standard Land Pattern Free Air Power Dissipation 420mW 250mW Thermal Resistance θja=(125−25°C)/0.42W=263°C/W 400 °C/W 0 50 10025 75 85 125 150 Ambient Temperature (°C) 200 100 300 400 250 420 500 600Power Dissipation PD(mW) On Board Free Air Power Dissipation Measurement Board Pattern IC Mount Area Unit : mm RECOMMENDED LAND PATTERN (SOT-23-3) 0.7 MAX. 0.950.95 1.9 2.4 1.0 (Unit: mm)

PACKAGE INFORMATION PE-SC-82AB-0512

  • SC-82AB Unit: mm PACKAGE DIMENSIONS 0.3±0.2 1.3±0.2 0.9±0.1 0 to 0.1 0.3±0.1 0.4±0.1 0.05 0.16+0.1 −0.06 2±0.2 2.1±0.3 1.25±0.2 −0.1 TAPING SPECIFICATION 2.0±0.05 4.0±0.10.2±0.1 +0.1 2.2 4.0±0.11.6MAX. 3.5±0.05 8.0±0.3 1.75±0.1 2.6 ∅1.5 TR User Direction of Feed ∅1.1±0.1 TAPING REEL DIMENSIONS (1reel=3000pcs) 2±0.5 13±0.2 180 −1.5 21±0.8 11.4±1.0 9.0±0.3

PACKAGE INFORMATION PE-SC-82AB-0512 POWER DISSIPATION (SC-82AB) This specification is at mounted on board. Power Dissipation (PD) depends on conditions of mounting on board. This specification is based on the measurement at the condition below: Measurement Conditions Standard Land Pattern Environment Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plactic (Double sided) Board Dimensions 40mm × 40mm × 1.6mm Copper Ratio Top side : Approx. 50% , Back side : Approx. 50% Through-hole φ0.5mm × 44pcs Measurement Result (Topt=25 °C,Tjmax=125°C) Standard Land Pattern Free Air Power Dissipation 380mW 150mW Thermal Resistance θja=(125−25°C)/0.38W=263°C/W 667 °C/W 0 50 10025 75 85 125 150 Ambient Temperature (°C) 200 100 300 400 150 380 500 600Power Dissipation PD(mW) On Board Free Air Power Dissipation Measurement Board Pattern IC Mount Area (Unit : mm) RECOMMENDED LAND PATTERN 0.8 0.60.65 0.650.65 1.90.6 0.8 0.8 0.6 0.6 0.8 0.8 (Unit: mm)

PACKAGE INFORMATION PE-SON1612-6-0510

  • SON1612-6 Unit: mm PACKAGE DIMENSIONS 1.6±0.1 0.125±0.055 0.22±0.05 0.3TYP. 1.2±0.050.6MAX. (0.2) (0.3)(0.3) 1.6±0.05 0.08 0.5 0.08 M TAPING SPECIFICATION 1.5 +0.1 4.0±0.1 1.75 1.75 1.1±0.1 3.5±0.05 8.0±0.3 1.75±0.1 2.0±0.05 4.0±0.1 0.25±0.1 1.1MAX. TR User Direction of Feed TAPING REEL DIMENSIONS (1reel=4000pcs) 2±0.5 11.4±1.0 9.0±0.313±0.2∅ 60∅ +1 180∅ 0 −1.5 21±0.8

PACKAGE INFORMATION PE-SON1612-6-0510 Power Dissipation (SON1612-6) This specification is at mounted on board. Power Dissipation (P D) depends on conditions of mounting on board. This specification is based on the measurement at the condition below: Measurement Conditions Standard Land Pattern Environment Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plactic (Double sided) Board Dimensions 40mm × 40mm × 1.6mm Copper Ratio Top side : Approx . 50%, Back side : Approx.50% Through-hole φ0.5mm × 24pcs Measurement Result ( T o p t = 2 5 °C,Tjmax=125°C) Standard Land Pattern Power Dissipation 500mW Thermal Resistance θja=(125−25°C)/0.5W=200°C/W 0 50 10025 75 85 125 150 Ambient Temperature (°C) 200 100 300 400 600 500Power Dissipation PD(mW) On Board Power Dissipation Measurement Board Pattern IC Mount Area Unit : mm RECOMMENDED LAND PATTERN 0.50.28 0.450.45 (Unit: mm)

MARK INFORMATION ME-R3111E-0310 R3111E SERIES MARK SPECIFICATION

  • TO-92 (SC-43A) 1 2 3 4 5 6 7 8 9 10 11 12 1 to 5 : Series Name: R3111 (fixed) 6 , 7 : Detector Threshold: ex. −VDET=3.0V→30 8 : Output Type: Nch →A, CMOS→C 9 to 12 : Lot Number

MARK INFORMATION ME-R3111H-0310 R3111H SERIES MARK SPECIFICATION

  • SOT-89 (SC-62) 1 2 3 4 5 6 1 to 4 : Product Code (refer to Part Number vs. Product Code) 5 , 6 : Lot Number
  • Part Number vs. Product Code Product Code Product Code Product Code Product Code Part Number 1 2 3 4 Part Number 1 2 3 4 Part Number 1 2 3 4 Part Number 1 2 3 4 R3111H091A A 0 9 A R3111H351A A 3 5 A R3111H091C A 0 9 C R3111H351C A 3 5 C R3111H101A A 1 0 A R3111H361A A 3 6 A R3111H101C A 1 0 C R3111H361C A 3 6 C R3111H111A A 1 1 A R3111H371A A 3 7 A R3111H111C A 1 1 C R3111H371C A 3 7 C R3111H121A A 1 2 A R3111H381A A 3 8 A R3111H121C A 1 2 C R3111H381C A 3 8 C R3111H131A A 1 3 A R3111H391A A 3 9 A R3111H131C A 1 3 C R3111H391C A 3 9 C R3111H141A A 1 4 A R3111H401A A 4 0 A R3111H141C A 1 4 C R3111H401C A 4 0 C R3111H151A A 1 5 A R3111H411A A 4 1 A R3111H151C A 1 5 C R3111H411C A 4 1 C R3111H161A A 1 6 A R3111H421A A 4 2 A R3111H161C A 1 6 C R3111H421C A 4 2 C R3111H171A A 1 7 A R3111H431A A 4 3 A R3111H171C A 1 7 C R3111H431C A 4 3 C R3111H181A A 1 8 A R3111H441A A 4 4 A R3111H181C A 1 8 C R3111H441C A 4 4 C R3111H191A A 1 9 A R3111H451A A 4 5 A R3111H191C A 1 9 C R3111H451C A 4 5 C R3111H201A A 2 0 A R3111H461A A 4 6 A R3111H201C A 2 0 C R3111H461C A 4 6 C R3111H211A A 2 1 A R3111H471A A 4 7 A R3111H211C A 2 1 C R3111H471C A 4 7 C R3111H221A A 2 2 A R3111H481A A 4 8 A R3111H221C A 2 2 C R3111H481C A 4 8 C R3111H231A A 2 3 A R3111H491A A 4 9 A R3111H231C A 2 3 C R3111H491C A 4 9 C R3111H241A A 2 4 A R3111H501A A 5 0 A R3111H241C A 2 4 C R3111H501C A 5 0 C R3111H251A A 2 5 A R3111H511A A 5 1 A R3111H251C A 2 5 C R3111H511C A 5 1 C R3111H261A A 2 6 A R3111H521A A 5 2 A R3111H261C A 2 6 C R3111H521C A 5 2 C R3111H271A A 2 7 A R3111H531A A 5 3 A R3111H271C A 2 7 C R3111H531C A 5 3 C R3111H281A A 2 8 A R3111H541A A 5 4 A R3111H281C A 2 8 C R3111H541C A 5 4 C R3111H291A A 2 9 A R3111H551A A 5 5 A R3111H291C A 2 9 C R3111H551C A 5 5 C R3111H301A A 3 0 A R3111H561A A 5 6 A R3111H301C A 3 0 C R3111H561C A 5 6 C R3111H311A A 3 1 A R3111H571A A 5 7 A R3111H311C A 3 1 C R3111H571C A 5 7 C R3111H321A A 3 2 A R3111H581A A 5 8 A R3111H321C A 3 2 C R3111H581C A 5 8 C R3111H331A A 3 3 A R3111H591A A 5 9 A R3111H331C A 3 3 C R3111H591C A 5 9 C R3111H341A A 3 4 A R3111H601A A 6 0 A R3111H341C A 3 4 C R3111H601C A 6 0 C

MARK INFORMATION ME-R3111Nxx1-0310 R3111Nxx1 SERIES MARK SPECIFICATION

  • SOT-23-5 (SC-74A) 1 2 3 4 1 , 2 : Product Code (refer to Part Number vs. Product Code) 3 , 4 : Lot Number
  • Part Number vs. Product Code Product Code Product Code Product Code Product Code Part Number 1 2 Part Number 1 2 Part Number 1 2 Part Number 1 2 R3111N091A 9 A R3111N351A 5 D R3111N091C 9 H R3111N351C 5 L R3111N101A 0 B R3111N361A 6 D R3111N101C 0 J R3111N361C 6 L R3111N111A 1 B R3111N371A 7 D R3111N111C 1 J R3111N371C 7 L R3111N121A 2 B R3111N381A 8 D R3111N121C 2 J R3111N381C 8 L R3111N131A 3 B R3111N391A 9 D R3111N131C 3 J R3111N391C 9 L R3111N141A 4 B R3111N401A 0 E R3111N141C 4 J R3111N401C 0 M R3111N151A 5 B R3111N411A 1 E R3111N151C 5 J R3111N411C 1 M R3111N161A 6 B R3111N421A 2 E R3111N161C 6 J R3111N421C 2 M R3111N171A 7 B R3111N431A 3 E R3111N171C 7 J R3111N431C 3 M R3111N181A 8 B R3111N441A 4 E R3111N181C 8 J R3111N441C 4 M R3111N191A 9 B R3111N451A 5 E R3111N191C 9 J R3111N451C 5 M R3111N201A 0 C R3111N461A 6 E R3111N201C 0 K R3111N461C 6 M R3111N211A 1 C R3111N471A 7 E R3111N211C 1 K R3111N471C 7 M R3111N221A 2 C R3111N481A 8 E R3111N221C 2 K R3111N481C 8 M R3111N231A 3 C R3111N491A 9 E R3111N231C 3 K R3111N491C 9 M R3111N241A 4 C R3111N501A 0 F R3111N241C 4 K R3111N501C 0 N R3111N251A 5 C R3111N511A 1 F R3111N251C 5 K R3111N511C 1 N R3111N261A 6 C R3111N521A 2 F R3111N261C 6 K R3111N521C 2 N R3111N271A 7 C R3111N531A 3 F R3111N271C 7 K R3111N531C 3 N R3111N281A 8 C R3111N541A 4 F R3111N281C 8 K R3111N541C 4 N R3111N291A 9 C R3111N551A 5 F R3111N291C 9 K R3111N551C 5 N R3111N301A 0 D R3111N561A 6 F R3111N301C 0 L R3111N561C 6 N R3111N311A 1 D R3111N571A 7 F R3111N311C 1 L R3111N571C 7 N R3111N321A 2 D R3111N581A 8 F R3111N321C 2 L R3111N581C 8 N R3111N331A 3 D R3111N591A 9 F R3111N331C 3 L R3111N591C 9 N R3111N341A 4 D R3111N601A 0 G R3111N341C 4 L R3111N601C 0 P

MARK INFORMATION ME-R3111Nxx2-0310 R3111Nxx2x SERIES MARK SPECIFICATION

  • SOT-23-3 (SC-59A) 1 2 3 4 1 , 2 : Product Code (refer to Part Number vs. Product Code) 3 , 4 : Lot Number
  • Part Number vs. Product Code Product Code Product Code Product Code Product Code Part Number 1 2 Part Number 1 2 Part Number 1 2 Part Number 1 2 R3111N092A A 9 R3111N352A D 5 R3111N092C H 9 R3111N352C L 5 R3111N102A B 0 R3111N362A D 6 R3111N102C J 0 R3111N362C L 6 R3111N112A B 1 R3111N372A D 7 R3111N112C J 1 R3111N372C L 7 R3111N122A B 2 R3111N382A D 8 R3111N122C J 2 R3111N382C L 8 R3111N132A B 3 R3111N392A D 9 R3111N132C J 3 R3111N392C L 9 R3111N142A B 4 R3111N402A E 0 R3111N142C J 4 R3111N402C M 0 R3111N152A B 5 R3111N412A E 1 R3111N152C J 5 R3111N412C M 1 R3111N162A B 6 R3111N422A E 2 R3111N162C J 6 R3111N422C M 2 R3111N172A B 7 R3111N432A E 3 R3111N172C J 7 R3111N432C M 3 R3111N182A B 8 R3111N442A E 4 R3111N182C J 8 R3111N442C M 4 R3111N192A B 9 R3111N452A E 5 R3111N192C J 9 R3111N452C M 5 R3111N202A C 0 R3111N462A E 6 R3111N202C K 0 R3111N462C M 6 R3111N212A C 1 R3111N472A E 7 R3111N212C K 1 R3111N472C M 7 R3111N222A C 2 R3111N482A E 8 R3111N222C K 2 R3111N482C M 8 R3111N232A C 3 R3111N492A E 9 R3111N232C K 3 R3111N492C M 9 R3111N242A C 4 R3111N502A F 0 R3111N242C K 4 R3111N502C N 0 R3111N252A C 5 R3111N512A F 1 R3111N252C K 5 R3111N512C N 1 R3111N262A C 6 R3111N522A F 2 R3111N262C K 6 R3111N522C N 2 R3111N272A C 7 R3111N532A F 3 R3111N272C K 7 R3111N532C N 3 R3111N282A C 8 R3111N542A F 4 R3111N282C K 8 R3111N542C N 4 R3111N292A C 9 R3111N552A F 5 R3111N292C K 9 R3111N552C N 5 R3111N302A D 0 R3111N562A F 6 R3111N302C L 0 R3111N562C N 6 R3111N312A D 1 R3111N572A F 7 R3111N312C L 1 R3111N572C N 7 R3111N322A D 2 R3111N582A F 8 R3111N322C L 2 R3111N582C N 8 R3111N332A D 3 R3111N592A F 9 R3111N332C L 3 R3111N592C N 9 R3111N342A D 4 R3111N602A G 0 R3111N342C L 4 R3111N602C P 0

MARK INFORMATION ME-R3111Q-070918 R3111Q SERIES MARK SPECIFICATION

  • SC-82AB 1 , 2 : Product Code (refer to Part Number vs. Product Code) 3 , 4 : Lot Number
  • Part Number vs. Product Code Product Code Product Code Product Code Product Code Part Number 1 2 Part Number 1 2 Part Number 1 2 Part Number 1 2 R3111Q091A K 9 R3111Q481A P 8 R3111Q351B 3 5 R3111Q221C V 2 R3111Q101A L 0 R3111Q491A P 9 R3111Q361B 3 6 R3111Q231C V 3 R3111Q111A L 1 R3111Q501A R 0 R3111Q371B 3 7 R3111Q241C V 4 R3111Q121A L 2 R3111Q511A R 1 R3111Q381B 3 8 R3111Q251C V 5 R3111Q131A L 3 R3111Q521A R 2 R3111Q391B 3 9 R3111Q261C V 6 R3111Q141A L 4 R3111Q531A R 3 R3111Q401B 4 0 R3111Q271C V 7 R3111Q151A L 5 R3111Q541A R 4 R3111Q411B 4 1 R3111Q281C V 8 R3111Q161A L 6 R3111Q551A R 5 R3111Q421B 4 2 R3111Q291C V 9 R3111Q171A L 7 R3111Q561A R 6 R3111Q431B 4 3 R3111Q301C W 0 R3111Q181A L 8 R3111Q571A R 7 R3111Q441B 4 4 R3111Q311C W 1 R3111Q191A L 9 R3111Q581A R 8 R3111Q451B 4 5 R3111Q321C W 2 R3111Q201A M 0 R3111Q591A R 9 R3111Q461B 4 6 R3111Q331C W 3 R3111Q211A M 1 R3111Q601A S 0 R3111Q471B 4 7 R3111Q341C W 4 R3111Q221A M 2 R3111Q091B 0 9 R3111Q481B 4 8 R3111Q351C W 5 R3111Q231A M 3 R3111Q101B 1 0 R3111Q491B 4 9 R3111Q361C W 6 R3111Q241A M 4 R3111Q111B 1 1 R3111Q501B 5 0 R3111Q371C W 7 R3111Q251A M 5 R3111Q121B 1 2 R3111Q511B 5 1 R3111Q381C W 8 R3111Q261A M 6 R3111Q131B 1 3 R3111Q521B 5 2 R3111Q391C W 9 R3111Q271A M 7 R3111Q141B 1 4 R3111Q531B 5 3 R3111Q401C X 0 R3111Q281A M 8 R3111Q151B 1 5 R3111Q541B 5 4 R3111Q411C X 1 R3111Q291A M 9 R3111Q161B 1 6 R3111Q551B 5 5 R3111Q421C X 2 R3111Q301A N 0 R3111Q171B 1 7 R3111Q561B 5 6 R3111Q431C X 3 R3111Q311A N 1 R3111Q181B 1 8 R3111Q571B 5 7 R3111Q441C X 4 R3111Q321A N 2 R3111Q191B 1 9 R3111Q581B 5 8 R3111Q451C X 5 R3111Q331A N 3 R3111Q201B 2 0 R3111Q591B 5 9 R3111Q461C X 6 R3111Q341A N 4 R3111Q211B 2 1 R3111Q601B 6 0 R3111Q471C X 7 R3111Q351A N 5 R3111Q221B 2 2 R3111Q091C T 9 R3111Q481C X 8 R3111Q361A N 6 R3111Q231B 2 3 R3111Q101C U 0 R3111Q491C X 9 R3111Q371A N 7 R3111Q241B 2 4 R3111Q111C U 1 R3111Q501C Y 0 R3111Q381A N 8 R3111Q251B 2 5 R3111Q121C U 2 R3111Q511C Y 1 R3111Q391A N 9 R3111Q261B 2 6 R3111Q131C U 3 R3111Q521C Y 2 R3111Q401A P 0 R3111Q271B 2 7 R3111Q141C U 4 R3111Q531C Y 3 R3111Q411A P 1 R3111Q281B 2 8 R3111Q151C U 5 R3111Q541C Y 4 R3111Q421A P 2 R3111Q291B 2 9 R3111Q161C U 6 R3111Q551C Y 5 R3111Q431A P 3 R3111Q301B 3 0 R3111Q171C U 7 R3111Q561C Y 6 R3111Q441A P 4 R3111Q311B 3 1 R3111Q181C U 8 R3111Q571C Y 7 R3111Q451A P 5 R3111Q321B 3 2 R3111Q191C U 9 R3111Q581C Y 8 R3111Q461A P 6 R3111Q331B 3 3 R3111Q201C V 0 R3111Q591C Y 9 R3111Q471A P 7 R3111Q341B 3 4 R3111Q211C V 1 R3111Q601C Z 0

MARK INFORMATION ME-R3111D-070918 R3111D SERIES MARK SPECIFICATION

  • SON1612-6 1 2 3 4 5 6 1 to 4 : Product Code (refer to Part Number vs. Product Code) 5 , 6 : Lot Number
  • Part Number vs. Product Code Product Code Product Code Product Code Product Code Part Number 1 2 3 4 Part Number 1 2 3 4 Part Number 1 2 3 4 Part Number 1 2 3 4 R3111D091A A 0 9 A R3111D481A A 4 8 A R3111D351B A 3 5 B R3111D221C A 2 2 C R3111D101A A 1 0 A R3111D491A A 4 9 A R3111D361B A 3 6 B R3111D231C A 2 3 C R3111D111A A 1 1 A R3111D501A A 5 0 A R3111D371B A 3 7 B R3111D241C A 2 4 C R3111D121A A 1 2 A R3111D511A A 5 1 A R3111D381B A 3 8 B R3111D251C A 2 5 C R3111D131A A 1 3 A R3111D521A A 5 2 A R3111D391B A 3 9 B R3111D261C A 2 6 C R3111D141A A 1 4 A R3111D531A A 5 3 A R3111D401B A 4 0 B R3111D271C A 2 7 C R3111D151A A 1 5 A R3111D541A A 5 4 A R3111D411B A 4 1 B R3111D281C A 2 8 C R3111D161A A 1 6 A R3111D551A A 5 5 A R3111D421B A 4 2 B R3111D291C A 2 9 C R3111D171A A 1 7 A R3111D561A A 5 6 A R3111D431B A 4 3 B R3111D301C A 3 0 C R3111D181A A 1 8 A R3111D571A A 5 7 A R3111D441B A 4 4 B R3111D311C A 3 1 C R3111D191A A 1 9 A R3111D581A A 5 8 A R3111D451B A 4 5 B R3111D321C A 3 2 C R3111D201A A 2 0 A R3111D591A A 5 9 A R3111D461B A 4 6 B R3111D331C A 3 3 C R3111D211A A 2 1 A R3111D601A A 6 0 A R3111D471B A 4 7 B R3111D341C A 3 4 C R3111D221A A 2 2 A R3111D091B A 0 9 B R3111D481B A 4 8 B R3111D351C A 3 5 C R3111D231A A 2 3 A R3111D101B A 1 0 B R3111D491B A 4 9 B R3111D361C A 3 6 C R3111D241A A 2 4 A R3111D111B A 1 1 B R3111D501B A 5 0 B R3111D371C A 3 7 C R3111D251A A 2 5 A R3111D121B A 1 2 B R3111D511B A 5 1 B R3111D381C A 3 8 C R3111D261A A 2 6 A R3111D131B A 1 3 B R3111D521B A 5 2 B R3111D391C A 3 9 C R3111D271A A 2 7 A R3111D141B A 1 4 B R3111D531B A 5 3 B R3111D401C A 4 0 C R3111D281A A 2 8 A R3111D151B A 1 5 B R3111D541B A 5 4 B R3111D411C A 4 1 C R3111D291A A 2 9 A R3111D161B A 1 6 B R3111D551B A 5 5 B R3111D421C A 4 2 C R3111D301A A 3 0 A R3111D171B A 1 7 B R3111D561B A 5 6 B R3111D431C A 4 3 C R3111D311A A 3 1 A R3111D181B A 1 8 B R3111D571B A 5 7 B R3111D441C A 4 4 C R3111D321A A 3 2 A R3111D191B A 1 9 B R3111D581B A 5 8 B R3111D451C A 4 5 C R3111D331A A 3 3 A R3111D201B A 2 0 B R3111D591B A 5 9 B R3111D461C A 4 6 C R3111D341A A 3 4 A R3111D211B A 2 1 B R3111D601B A 6 0 B R3111D471C A 4 7 C R3111D351A A 3 5 A R3111D221B A 2 2 B R3111D091C A 0 9 C R3111D481C A 4 8 C R3111D361A A 3 6 A R3111D231B A 2 3 B R3111D101C A 1 0 C R3111D491C A 4 9 C R3111D371A A 3 7 A R3111D241B A 2 4 B R3111D111C A 1 1 C R3111D501C A 5 0 C R3111D381A A 3 8 A R3111D251B A 2 5 B R3111D121C A 1 2 C R3111D511C A 5 1 C R3111D391A A 3 9 A R3111D261B A 2 6 B R3111D131C A 1 3 C R3111D521C A 5 2 C R3111D401A A 4 0 A R3111D271B A 2 7 B R3111D141C A 1 4 C R3111D531C A 5 3 C R3111D411A A 4 1 A R3111D281B A 2 8 B R3111D151C A 1 5 C R3111D541C A 5 4 C R3111D421A A 4 2 A R3111D291B A 2 9 B R3111D161C A 1 6 C R3111D551C A 5 5 C R3111D431A A 4 3 A R3111D301B A 3 0 B R3111D171C A 1 7 C R3111D561C A 5 6 C R3111D441A A 4 4 A R3111D311B A 3 1 B R3111D181C A 1 8 C R3111D571C A 5 7 C R3111D451A A 4 5 A R3111D321B A 3 2 B R3111D191C A 1 9 C R3111D581C A 5 8 C R3111D461A A 4 6 A R3111D331B A 3 3 B R3111D201C A 2 0 C R3111D591C A 5 9 C R3111D471A A 4 7 A R3111D341B A 3 4 B R3111D211C A 2 1 C R3111D601C A 6 0 C