R3111X NISSHINBO | Alldatasheet

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NO.EA-056-170428 R3111E (TO-92) is the discontinued product as of April, 2017. 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 compa rator, resistors for detector threshold setting, an output driver and a hysteresis circuit. The detector thresho ld 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 than that for the Rx5VL series, and can be driven by a single battery. Seven types of packages, TO-92, SOT-89, SOT-23-3, SOT-23-5, SC- 82AB, SC-88A and SON1612-6 are available.

FEATURES

( For other voltages, please refer to MARK INFORMATIONS.) C MOS S O T - 2 3 - 5 , SOT-89, TO-92

APPLICATIONS

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

 R3111E (TO-92) is the discontinued product as of April, 2017. BLOCK DIAGRAMS R3111xxxxA R3111xxxxB OUTVDD Vref GND OUTVDD Vref GND R3111xxxxC OUT VDD GND Vref

R3111E (TO-92) is the discontinued product as of April, 2017. SELECTION GUIDE The package type, the detector threshold, the output type and t he 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; Product Name Package Quantity per Reel Pb Free Halogen Free R3111Dxx1-TR-FE SON1612-6 4,000 pcs Yes Yes R3111Qxx1-TR-FE SC-82AB 3,000 pcs Yes Yes R3111Qxx2-TR-FE SC-88A 3,000 pcs Yes Yes R3111Nxx1-TR-FE SOT-23-5 3,000 pcs Yes Yes R3111Nxx2$-TR-FE SOT-23-3 3,000 pcs Yes Yes R3111Hxx1$-T1-FE SOT-89 1,000 pcs Yes Yes R3111Exx1$-TZ-F TO-92 2,500 pcs Yes No xx : The detector threshold can be designated in the range from 0.9V(09) to 6.0V(60) in 0.1V steps. (For other voltages, please refer to MARK INFORMATIONS.)  : Designation of Output Type ( A ) N c h Open Drain (Output "L" at Detection) ( B ) N c h Open Drain (Output "H" at Detection) ( C ) C M O S ( O u t p u t " L " a t D e t e c t i o n ) $ : Designation of Output Type ( A ) N c h Open Drain (Output "L" at Detection) ( C ) C M O S ( O u t p u t " L " a t D e t e c t i o n )

 R3111E (TO-92) is the discontinued product as of April, 2017. PIN CONFIGURATIONS  TO-92  SOT-89  SOT-23-3  SOT-23-5 3 12 (mark side) 312 (mark side) (mark side) 123 4 5 (mark side)  SC-82AB  SC-88A  SON1612-6 4 3 1 2 (mark side) 5 4 1 32 (mark side) 123 654 (mark side) PIN DESCRIPTIONS  TO-92  SOT-89  SOT-23-3  SOT-23-5 Pin No. Symbol Pin No. Symbol Pin No. Symbol Pin No. Symbol

1 V DD 1 OUT 1 OUT 1 OUT

2 GND 2 V DD 2 GND 2 V DD

3 OUT 3 GND 3 V DD 3 GND

 SC-82AB  SC-88A  SON1612-6 Pin No. Symbol Pin No. Symbol Pin No. Symbol

1 O U T 1 O U T 1 O U T

2 V DD 2 * N C 2 V DD

3 NC 3 V DD 3 GND

4 GND 4 NC 4 NC

5 GND 5 V DD

6 N C

  • Pin No. 2 is connected to the bottom of the IC. It is recommended that the pin be connected to the VDD pin on the board, or otherwise be left floating so that there is no contact with other potentials.

R3111E (TO-92) is the discontinued product as of April, 2017. ABSOLUTE MAXIMUM RATINGS Symbol Item Rating Unit VDD Supply Voltage 12 V VOUT Output Voltage (CMOS) VSS0.3 to VDD0.3 V Output Voltage (Nch) VSS0.3 to 12 IOUT Output Current 70 mA PD Power Dissipation (TO-92)* 300 mW Power Dissipation (SOT-89)* 900 Power Dissipation (SOT-23-3)* 420 Power Dissipation (SOT-23-5)* 420 Power Dissipation (SC-82AB)* 380 Power Dissipation (SC-88A)* 380 Power Dissipation (SON1612-6)* 500 Ta Operating Temperature Range 40 to 85 C Tstg Storage Temperature Range 55 to 125 C * ) For Power Dissipation, please refer to PACKAGE INFORMATION. ABSOLUTE MAXIMUM RATINGS 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. RECOMMENDED OPERATING CONDITIONS (ELECTRICAL CHARACTERISTICS) 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 ov er 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.

 R3111E (TO-92) is the discontinued product as of April, 2017.

ELECTRICAL CHARACTERISTICS

 R3111xxxxA Ta25C Symbol Item Conditions Min. Typ. Max. Unit -VDET Detector Threshold -VDET  0.98 -VDET  1.02 V VHYS Detector Threshold Hysteresis -VDET  0.03 -VDET  0.05 -VDET  0.07 V ISS Supply Current VDD-VDET +2.0V 1.0 3.0 VDD-VDET +2.0V 1.1 3.3 VDD-VDET +2.0V 1.2 3.6 VDD-VDET +2.0V 1.3 3.9 VDD-VDET +2.0V 1.4 4.2 VDDH Maximum Operating Voltage 1 0 V VDDL Minimum Operating Voltage1 Ta25C 0.55 0.70 V IOUT Output Current (Driver Output Pin) Nch VDS0.05V, VDD0.70V 0.01 0.05 mA 0.9V ≤ -VDET < 1.1V VDS0.50V VDD0.85V 0.05 0.5 mA 1.1V ≤ -VDET < 1.6V VDS0.50V VDD1.00V 0.2 1.0 1.6V ≤ -VDET ≤ 6.0V VDS0.50V VDD1.50V 1.0 2.0 tPLH Output Delay Time2 100 s -VDET/ Ta Detector Threshold Temperature Coefficient C 1: Minimum operating voltage means the value of input voltage when output voltage maintains 0.1V or less. (In the case of the output pin is pulled up with a resistanc e of 470k to 5.0V.) 2: The output pin is pulled up with a resistance of 470k  to 5.0V, the time interva l between the rising edge of V DD input pulse from 0.7V to  (VDET)2.0V and output voltage level becoming to 2.5V.

R3111E (TO-92) is the discontinued product as of April, 2017.  R3111xxxxB Ta25C Symbol Item Conditions Min. Typ. Max. Unit -VDET Detector Threshold -VDET  0.98 -VDET  1.02 V VHYS Detector Threshold Hysteresis -VDET  0.03 -VDET  0.05 -VDET  0.07 V ISS Supply Current VDD-VDET +2.0V 1.0 3.0 VDD-VDET +2.0V 1.1 3.3 VDD-VDET +2.0V 1.2 3.6 VDD-VDET +2.0V 1.3 3.9 VDD-VDET +2.0V 1.4 4.2 VDDH Maximum Operating Voltage 1 0 V VDDL Minimum Operating Voltage1 Ta25C 0.55 0.70 V IOUT Output Current (Driver Output Pin) Nch VDS0.10V, VDD6.5V 2.5 mA tPLH Output Delay Time2 100 s -VDET/ Ta Detector Threshold Temperature Coefficient C 1: Minimum operating voltage means the value of input voltage when output voltage maintains 0.1V or less. (In the case of the output pin is pulled up with a resistanc e of 470k to 5.0V.) 2: The output pin is pulled up with a resistance of 470k  to 5.0V, the time interva l between the rising edge of V DD input pulse from 0.7V to  (VDET)2.0V and output voltage level becoming to 2.5V.

 R3111E (TO-92) is the discontinued product as of April, 2017.  R3111xxxxC Ta25C Symbol Item Conditions Min. Typ. Max. Unit -VDET Detector Threshold -VDET  0.98 -VDET  1.02 V VHYS Detector Threshold Hysteresis -VDET  0.03 -VDET  0.05 -VDET  0.07 V ISS Supply Current VDD-VDET +2.0V 1.0 3.0 VDD-VDET +2.0V 1.1 3.3 VDD-VDET +2.0V 1.2 3.6 VDD-VDET +2.0V 1.3 3.9 VDD-VDET +2.0V 1.4 4.2 VDDH Maximum Operating Voltage 1 0 V VDDL Minimum Operating Voltage1 Ta25C 0.55 0.70 V IOUT Output Current (Driver Output Pin) Nch VDS0.05V, VDD0.70V 0.01 0.05 mA 0.9V ≤ -VDET < 1.1V VDS0.50V VDD0.85V 0.05 0.5 mA 1.1V ≤ -VDET < 1.6V VDS0.50V VDD1.00V 0.2 1.0 1.6V ≤ -VDET ≤ 6.0V VDS0.50V VDD1.50V 1.0 2.0 Pch 0.9V ≤ -VDET < 4.0V VDS2.1V VDD4.5V 1.0 2.0 4.0V ≤ -VDET ≤ 6.0V VDS2.1V VDD8.0V 1.5 3.0 tPLH Output Delay Time2 100 s -VDET/ Ta Detector Threshold Temperature Coefficient C 1: Minimum operating voltage means the value of input voltage when output voltage maintains 0.1V or less. 2: 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 (( VDET)2.0V)/2.

R3111E (TO-92) is the discontinued product as of April, 2017. TIMING CHART Detector Threshold tPLH tPLH tPLH GND GND VDDL -VDET +VDET Detector Threshold Released Voltage Minimum Operating Voltage Pull-up Voltage Supply Voltage (VDD) Output Voltage (VOUT) R3111xxxxA R3111xxxxB R3111xxxxC Detector Threshold Detector Threshold Hysteresis HysteresisHysteresis DEFINITION OF OUTPUT DELAY TIME Output Delay Time (tPLH) is defined as follows: 1. In the case of Nch Open Dr ain Output:(R3111xxxxA/B) Under the condition of the output pin (OUT) is pulled up throu gh a resistor of 470k  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 V DD 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 OUT) tPLH tPHL VDET2.0V 0.7V GND 5.0V 2.5V GND t PLHtPHL 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 Op en Drain Output CMOS Output (R3111xxxxA) (R3111xxxxB) (R3111xxxxC)

 R3111E (TO-92) is the discontinued product as of April, 2017. ELECTRICAL CHARACTERISTICS BY DETECTOR THRESHOLD  R3111x09x to R3111x60x Part Number Detector Threshold Detector Threshold Hysteresis Supply Current 1 Supply Current 2 -VDET[V] V HYS[V] ISS1[A] I SS2[A] VDD (-VDET) 0.10V 0.8 2.4 VDD (-VDET) 2.0V 0.9 2.7 1.0 3.0 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 1.4 4.2 *1) In the case of CMOS output type; when the voltage is forced to V DD 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. In the case of Nch open drain output type : The output pin is pulled up to 5V through 470k , and when the voltage is forced to V DD from 0.7V to (VDET)2.0V, time interval between the rising edge of VDD and the reac hing 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 470k  resistor. Condition 1: Ta25C

R3111E (TO-92) is the discontinued product as of April, 2017. Output Current 1 Output Current 2 *3 Output Delay Time Minimum Operating Voltage Detector Threshold Temperature Coefficient IOUT1[mA] I OUT2[mA] tPLH[s] VDDL[V] -VDET/Ta[ppm/C] <A/C version> Nch V DS0.05V VDD0.7V <B version> Nch V DS0.10V VDD6.5V 0.01 2.5 0.05 Nch V DS 0.5V VDD 0.85V 0.05 0.5 100 *1 Condition 1 0.55 Condition 2 0.65 Condition 1 0.70 Condition 2 0.80 Ta 100 VDD 1.0V 0.2 1.0 V DD 1.5V 1.0 2.0 *3) Only A/C versions.

 R3111E (TO-92) is the discontinued product as of April, 2017. OPERATION  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 OUT) Step 1 2 3 4 5 Comparator () Pin Input Voltage I II II II I Comparator Output H L Indefinite L H Tr.1 OFF 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  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, as a result, the output of comparator 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 supply voltage is lower than the minimum operating voltage, the operation of the output 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. Output Delay Time

R3111E (TO-92) is the discontinued product as of April, 2017.  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 OUT) S t e p 1 2 3 Comparator () Pin Input Voltage I II I Comparator Output L H L Tr.1 OFF ON OFF Output Tr. Nch ON OFF ON I VDD RbRc RaRbRc II VDD Rb RaRb Operation Diagram  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, as a result, the output of comparator is reversed from "L" to "H", therefore the output voltage becomes the pull- up 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 vol tage 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. Output Delay Time

 R3111E (TO-92) is the discontinued product as of April, 2017.  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 OUT) Step 1 2 3 4 5 Comparator (+) Pin Input Voltage I II II II I Comparator Output H L Indefinite L H Tr.1 OFF ON Indefinite ON OFF Pch ON OFF Indefinite OFF ON Output Tr. Nch OFF ON Indefinite ON OFF I VDD RbRc RaRbRc II VDD Rb RaRb Operation Diagram  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, as a result, the output of comparator 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 supply voltage is lower than the minimum operating voltage, the operation of the output 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 voltage (V DD). 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. Output Delay Time

R3111E (TO-92) is the discontinued product as of April, 2017. TEST CIRCUITS GND VDD VIN ISS R3111x Series OUT GND VDD VIN R3111x Series OUT 470k 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 Curre nt Test Circuit Apply to CMOS Output type only GND VDD R3111x Series OUT VDS VOUT ROUT 470k P. G. +VDET+2.0V 0.7V GND COUT GND VDD R3111x Series OUT VDS VOUT ROUT 470k P. G. +VDET+2.0V 0.7V GND RIN 470k CIN Output Delay Time Test Circuit ( 1) Output Delay Time Test Circ uit (2) (Pull-up circuit is not necessary for CMOS Output type.)

 R3111E (TO-92) is the discontinued product as of April, 2017. Power Dissipation PD (mW) 600 500 400 300 200 100 25 50 75 1 0 0 1 2 5 1 5 0 Ambient Temperature (C) SON1612-6 Power Dissipation On Board  Power Dissipation (SON1612-6) 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 plastic (Double layers) Board Dimensions 40mm  40mm  1.6mm Copper Ratio Top side: Approx . 50%, Back side: Approx. 50% Through - hole  0.5mm  24pcs Measurement Results (Ta=25C, Tjmax=125C) Standard Land Pattern Power Dissipation 500mW Thermal Resistance ja = (125-25C)/ 0.5W = 200C/W Measurement Board Pattern IC Mount Area Unit : mm

R3111E (TO-92) is the discontinued product as of April, 2017.  Package Dimensions (SON1612-6) Unit: mm 1.6±0.1 6 4 1 3 1.6±0.05 1.2±0.05 0.6MAX 0.08 0.22±0.05 0.08 M 0.3TYP . 0.5 (0.3) (0.3) (0.2) 0.125±0.055  Mark Specification (SON1612-6)  : Product Code … Refer to Mark Specification Table (SON1612-6).  : Lot No. ………... Alphanumeric Serial Number 6 5 4 1 2 3  

 R3111E (TO-92) is the discontinued product as of April, 2017.  Marking Specification Table (SON1612-6) R3111Dxx1A R3111Dxx1C R3111Dxx1B R3111D091A R3111D101A R3111D111A R3111D121A R3111D131A R3111D141A R3111D151A R3111D161A R3111D171A R3111D181A R3111D191A R3111D201A R3111D211A R3111D221A R3111D231A R3111D241A R3111D251A R3111D261A R3111D271A R3111D281A R3111D291A R3111D301A R3111D311A R3111D321A R3111D331A R3111D341A R3111D351A R3111D361A R3111D371A R3111D381A R3111D391A R3111D401A R3111D411A R3111D421A R3111D431A R3111D441A R3111D451A R3111D461A R3111D471A R3111D481A R3111D491A R3111D501A R3111D511A R3111D521A R3111D531A R3111D541A R3111D551A R3111D561A R3111D571A R3111D581A R3111D591A R3111D601A A09A A10A A11A A12A A13A A14A A15A A16A A17A A18A A19A A20A A21A A22A A23A A24A A25A A26A A27A A28A A29A A30A A31A A32A A33A A34A A35A A36A A37A A38A A39A A40A A41A A42A A43A A44A A45A A46A A47A A48A A49A A50A A51A A52A A53A A54A A55A A56A A57A A58A A59A A60A R3111D091C R3111D101C R3111D111C R3111D121C R3111D131C R3111D141C R3111D151 C R3111D161C R3111D171C R3111D181C R3111D191C R3111D201C R3111D211C R3111D221C R3111D231C R3111D241C R3111D251C R3111D261C R3111D271C R3111D281C R3111D291C R3111D301C R3111D311C R3111D321C R3111D331C R3111D341C R3111D351C R3111D361C R3111D371C R3111D381C R3111D391C R3111D401C R3111D411C R3111D421C R3111D431C R3111D441C R3111D451C R3111D461C R3111D471C R3111D481C R3111D491C R3111D501C R3111D511C R3111D521C R3111D531C R3111D541C R3111D551C R3111D561C R3111D571C R3111D581C R3111D591C R3111D601C A09C A10C A11C A12C A13C A14C A15C A16C A17C A18C A19C A20C A21C A22C A23C A24C A25C A26C A27C A28C A29C A30C A31C A32C A33C A34C A35C A36C A37C A38C A39C A40C A41C A42C A43C A44C A45C A46C A47C A48C A49C A50C A51C A52C A53C A54C A55C A56C A57C A58C A59C A60C R3111D091B R3111D101B R3111D111B R3111D121B R3111D131B R3111D141B R3111D151B R3111D161B R3111D171B R3111D181B R3111D191B R3111D201B R3111D211B R3111D221B R3111D231B R3111D241B R3111D251B R3111D261B R3111D271B R3111D281B R3111D291B R3111D301B R3111D311B R3111D321B R3111D331B R3111D341B R3111D351B R3111D361B R3111D371B R3111D381B R3111D391B R3111D401B R3111D411B R3111D421B R3111D431B R3111D441B R3111D451B R3111D461B R3111D471B R3111D481B R3111D491B R3111D501B R3111D511B R3111D521B R3111D531B R3111D541B R3111D551B R3111D561B R3111D571B R3111D581B R3111D591B R3111D601B A09B A10B A11B A12B A13B A14B A15B A16B A17B A18B A19B A20B A21B A22B A23B A24B A25B A26B A27B A28B A29B A30B A31B A32B A33B A34B A35B A36B A37B A38B A39B A40B A41B A42B A43B A44B A45B A46B A47B A48B A49B A50B A51B A52B A53B A54B A55B A56B A57B A58B A59B A60B

R3111E (TO-92) is the discontinued product as of April, 2017. Power Dissipation PD (mW) 600 500 400 300 200 100 25 50 75 1 0 0 1 2 5 1 5 0 Ambient Temperature (C) Power Dissipation On Board 380 150 Free Air  Power Dissipation (SC-82AB) Power Dissipation (P D) depends on conditions of mounti ng on board. This specificatio n 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 plastic (Double Layers) Board Dimensions 40mm  40mm  1.6mm Copper Ratio Top side: Approx. 50%, Back side: Approx. 50% Through-hole 0.5mm  44pcs Measurement Result (Ta=25C, Tjmax=125C) Standard Land Pattern Free Air Power Dissipation 380mW 150mW Thermal Resistance ja=(125-25C)/0.38W=263C/W 667 C/W Measurement Board Pattern I C M ount Area (Unit : mm)

 R3111E (TO-92) is the discontinued product as of April, 2017.  Package Dimensions (SC-82AB) 2±0.2 1.3±0.2 1 2 +0.2 1.25-0.1 2.1±0.3 0.3±0.1 Unit : mm 0.4±0.1 0.3±0.1 0.05 (0.7) 0.9±0.1 0 to 0.1 0.16-0.06 +0.1 0.3±0.2 0.3±0.1 1.0-0.2 +0.05  Mark Specification (SC-82AB)  : Product Code …Refer to Mark Specification Table (SC-82AB).  : Lot No. ………... Alphanumeric Serial Number 1 2

R3111E (TO-92) is the discontinued product as of April, 2017.  Marking Specification Table (SC-82AB) R3111Qxx1A R3111Qxx1C R3111Qxx1B Part Number  Part Number  Part Number  R3111Q091A R3111Q101A R3111Q111A R3111Q121A R3111Q131A R3111Q141A R3111Q151A R3111Q161A R3111Q171A R3111Q181A R3111Q191A R3111Q201A R3111Q211A R3111Q221A R3111Q231A R3111Q241A R3111Q251A R3111Q261A R3111Q271A R3111Q281A R3111Q291A R3111Q301A R3111Q311A R3111Q321A R3111Q331A R3111Q341A R3111Q351A R3111Q361A R3111Q371A R3111Q381A R3111Q391A R3111Q401A R3111Q411A R3111Q421A R3111Q431A R3111Q441A R3111Q451A R3111Q461A R3111Q471A R3111Q481A R3111Q491A R3111Q501A R3111Q511A R3111Q521A R3111Q531A R3111Q541A R3111Q551A R3111Q561A R3111Q571A R3111Q581A R3111Q591A R3111Q601A R3111Q091C R3111Q101C R3111Q111C R3111Q121C R3111Q131C R3111Q141C R3111 Q151C R3111Q161C R3111Q171C R3111Q181C R3111Q191C R3111Q201C R3111Q211C R3111Q221C R3111Q231C R3111Q241C R3111Q251C R3111Q261C R3111Q271C R3111Q281C R3111Q291C R3111Q301C R3111Q311C R3111Q321C R3111Q331C R3111Q341C R3111Q351C R3111Q361C R3111Q371C R3111Q381C R3111Q391C R3111Q401C R3111Q411C R3111Q421C R3111Q431C R3111Q441C R3111Q451C R3111Q461C R3111Q471C R3111Q481C R3111Q491C R3111Q501C R3111Q511C R3111Q521C R3111Q531C R3111Q541C R3111Q551C R3111Q561C R3111Q571C R3111Q581C R3111Q591C R3111Q601C R3111Q091B R3111Q101B R3111Q111B R3111Q121B R3111Q131B R3111Q141B R3111Q151B R3111Q161B R3111Q171B R3111Q181B R3111Q191B R3111Q201B R3111Q211B R3111Q221B R3111Q231B R3111Q2 41B R3111Q251B R3111Q261B R3111Q271B R3111Q281B R3111Q291B R3111Q301B R3111Q311B R3111Q321B R3111Q331B R3111Q341B R3111Q351B R3111Q361B R3111Q371B R3111Q381B R3111Q391B R3111Q401B R3111Q411B R3111Q421B R3111Q431B R3111Q441B R3111Q451B R3111Q461B R3111Q471B R3111Q481B R3111Q491B R3111Q501B R3111Q511B R3111Q521B R3111Q531B R3111Q541B R3111Q551B R3111Q561B R3111Q571B R3111Q581B R3111Q591B R3111Q601B

 R3111E (TO-92) is the discontinued product as of April, 2017. Power Dissipation PD (mW) 600 500 400 300 200 100 25 50 75 1 0 0 1 2 5 1 5 0 Ambient Temperature (C) Power Dissipation On Board 380 150 Free Air  Power Dissipation (SC-88A) Power Dissipation (P D) depends on conditions of mounti ng on board. This specificatio n 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 plastic (Double Layers) Board Dimensions 40mm  40mm  1.6mm Copper Ratio Top side: Approx . 50%, Back side: Approx. 50% Through-hole 0.5mm  44pcs Measurement Result (Ta=25C, Tjmax=125C) Standard Land Pattern Free Air Power Dissipation 380mW 150mW Thermal Resistance jc=75C/W - Measurement Board Pattern I C M ount Area (Unit : mm)

R3111E (TO-92) is the discontinued product as of April, 2017.  Package Dimensions (SC-88A) 2.0±0.2 1.3±0.2 1 2 3 +0.2 -0.1 1.25 2.1±0.3 0~0.1 Unit : mm 0.2 A 0.65 0.15±0.07 0~14 0.15 0.36±0.1 +0.1 -0.05 B

0.10 S AB

0.10 S +0.1 -0.2 0.9 1.1Max. S  Mark Specification (SC-88A)  : Product Code …Refer to Mark Specification Table (SC-88A).  : Lot No. ………... Alphanumeric Serial Number ①②③ ④⑤⑥ 1 2 3

 R3111E (TO-92) is the discontinued product as of April, 2017.  Marking Specification Table (SC-88A) R3111Qxx2A R3111Qxx2C R3111Qxx2B R3111Q092A R3111Q102A R3111Q112A R3111Q122A R3111Q132A R3111Q142A R3111Q152A R3111Q162A R3111Q172A R3111Q182A R3111Q192A R3111Q202A R3111Q212A R3111Q222A R3111Q232A R3111Q242A R3111Q252A R3111Q262A R3111Q272A R3111Q282A R3111Q292A R3111Q302A R3111Q312A R3111Q322A R3111Q332A R3111Q342A R3111Q352A R3111Q362A R3111Q372A R3111Q382A R3111Q392A R3111Q402A R3111Q412A R3111Q422A R3111Q432A R3111Q442A R3111Q452A R3111Q462A R3111Q472A R3111Q482A R3111Q492A R3111Q502A R3111Q512A R3111Q522A R3111Q532A R3111Q542A R3111Q552A R3111Q562A R3111Q572A R3111Q582A R3111Q592A R3111Q602A R3111Q222A5 U009 U010 U011 U012 U013 U014 U015 U016 U017 U018 U019 U020 U021 U022 U023 U024 U025 U026 U027 U028 U029 U030 U031 U032 U033 U034 U035 U036 U037 U038 U039 U040 U041 U042 U043 U044 U045 U046 U047 U048 U049 U050 U051 U052 U053 U054 U055 U056 U057 U058 U059 U060 U001 R3111Q092C R3111Q102C R3111Q112C R3111Q122C R3111Q132C R3111Q142C R3111 Q152C R3111Q162C R3111Q172C R3111Q182C R3111Q192C R3111Q202C R3111Q212C R3111Q222C R3111Q232C R3111Q242C R3111Q252C R3111Q262C R3111Q272C R3111Q282C R3111Q292C R3111Q302C R3111Q312C R3111Q322C R3111Q332C R3111Q342C R3111Q352C R3111Q362C R3111Q372C R3111Q382C R3111Q392C R3111Q402C R3111Q412C R3111Q422C R3111Q432C R3111Q442C R3111Q452C R3111Q462C R3111Q472C R3111Q482C R3111Q492C R3111Q502C R3111Q512C R3111Q522C R3111Q532C R3111Q542C R3111Q552C R3111Q562C R3111Q572C R3111Q582C R3111Q592C R3111Q602C V009 V010 V011 V012 V013 V014 V015 V016 V017 V018 V019 V020 V021 V022 V023 V024 V025 V026 V027 V028 V029 V030 V031 V032 V033 V034 V035 V036 V037 V038 V039 V040 V041 V042 V043 V044 V045 V046 V047 V048 V049 V050 V051 V052 V053 V054 V055 V056 V057 V058 V059 V060 R3111Q092B R3111Q102B R3111Q112B R3111Q122B R3111Q132B R3111Q142B R3111Q152B R3111Q162B R3111Q172B R3111Q182B R3111Q192B R3111Q202B R3111Q212B R3111Q222B R3111Q232B R3111Q242B R3111Q252B R3111Q262B R3111Q272B R3111Q282B R3111Q2 92B R3111Q302B R3111Q312B R3111Q322B R3111Q332B R3111Q342B R3111Q352B R3111Q362B R3111Q372B R3111Q382B R3111Q392B R3111Q402B R3111Q412B R3111Q422B R3111Q432B R3111Q442B R3111Q452B R3111Q462B R3111Q472B R3111Q482B R3111Q492B R3111Q502B R3111Q512B R3111Q522B R3111Q532B R3111Q542B R3111Q552B R3111Q562B R3111Q572B R3111Q582B R3111Q592B R3111Q602B W009 W010 W011 W012 W013 W014 W015 W016 W017 W018 W019 W020 W021 W022 W023 W024 W025 W026 W027 W028 W029 W030 W031 W032 W033 W034 W035 W036 W037 W038 W039 W040 W041 W042 W043 W044 W045 W046 W047 W048 W049 W050 W051 W052 W053 W054 W055 W056 W057 W058 W059 W060

R3111E (TO-92) is the discontinued product as of April, 2017. Power Dissipation PD (mW) 600 500 400 300 200 100 0 2 5 5 0 7 5 100 125 150 Ambient Temperature (C) Power Dissipation Free Air On Board 250 420  Power Dissipation (SOT-23-5) Power Dissipation (P D) depends on conditions of mounti ng on board. This specificatio n is based on the measurement at the condition below: (Power Dissipation (SOT-23-5) is substitution of SOT-23-6.) Measurement Conditions Standard Test Land Pattern Environment Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plastic (Double sided) Board Dimensions 40mm  40mm  1.6mm Copper Ratio Top side: Approx. 50%, Back side: Approx. 50% Through-holes  0.5mm  44pcs Measurement Result (Ta=25C, Tjmax=125C) Standard Land Pattern Free Air Power Dissipation 420mW 250mW Thermal Resistance ja = (125-25C)/0.42W = 238C/W 400C/W Measurement Board Pattern IC Mount Area (Unit: mm)

 R3111E (TO-92) is the discontinued product as of April, 2017.  Package Dimensions (SOT-23-5) 2.9±0.2 1.9±0.2 5 4 1 2 3 1.6-0.1 +0.2 2.8±0.3 0.4±0.1 0.8±0.1 1.1±0.1 0~0.1 0.15-0.05 +0.1 Unit : mm 0.2min.  Mark Specification (SOT-23-5)  : Product Code …Refer to Mark Specification Table (SOT-23-5).  : Lot No. ………... Alphanumeric Serial Number 5 4  1 2 3

R3111E (TO-92) is the discontinued product as of April, 2017.  Marking Specification Table (SOT-23-5) R3111Nxx1A R3111Nxx1C R3111Nxx1B Part Number  Part Number  Part Number  R3111N091A R3111N101A R3111N111A R3111N121A R3111N131A R3111N141A R3111N151A R3111N161A R3111N171A R3111N181A R3111N191A R3111N201A R3111N211A R3111N221A R3111N231A R3111N241A R3111N251A R3111N261A R3111N271A R3111N281A R3111N291A R3111N301A R3111N311A R3111N321A R3111N331A R3111N341A R3111N351A R3111N361A R3111N371A R3111N381A R3111N391A R3111N401A R3111N411A R3111N421A R3111N431A R3111N441A R3111N451A R3111N461A R3111N471A R3111N481A R3111N491A R3111N501A R3111N511A R3111N521A R3111N531A R3111N541A R3111N551A R3111N561A R3111N571A R3111N581A R3111N591A R3111N601A R3111N091C R3111N101C R3111N111C R3111N121C R3111N131C R3111N141C R3111N151 C R3111N161C R3111N171C R3111N181C R3111N191C R3111N201C R3111N211C R3111N221C R3111N231C R3111N241C R3111N251C R3111N261C R3111N271C R3111N281C R3111N291C R3111N301C R3111N311C R3111N321C R3111N331C R3111N341C R3111N351C R3111N361C R3111N371C R3111N381C R3111N391C R3111N401C R3111N411C R3111N421C R3111N431C R3111N441C R3111N451C R3111N461C R3111N471C R3111N481C R3111N491C R3111N501C R3111N511C R3111N521C R3111N531C R3111N541C R3111N551C R3111N561C R3111N571C R3111N581C R3111N591C R3111N601C R3111N091B R3111N101B R3111N111B R3111N121B R3111N131B R3111N141B R3111N151B R3111N161B R3111N171B R3111N181B R3111N191B R3111N201B R3111N211B R3111N221B R3111N231B R3111N241B R3111N251B R3111N261B R3111N271B R3111N281B R3111N291B R3111N301B R3111N311B R3111N321B R3111N331B R3111N341B R3111N351B R3111N361B R3111N371B R3111N381B R3111N391B R3111N401B R3111N411B R3111N421B R3111N431B R3111N441B R3111N451B R3111N461B R3111N471B R3111N481B R3111N491B R3111N501B R3111N511B R3111N521B R3111N531B R3111N541B R3111N551B R3111N561B R3111N571B R3111N581B R3111N591B R3111N601B EB EC ED EE EF EG EH EJ EK KB KC KD KE KF KG KH KJ KK QB QC QD QE QF QG QH QJ QK VB VC VD VE VF VG VH VJ VK

 R3111E (TO-92) is the discontinued product as of April, 2017. Power Dissipation PD (mW) 600 500 400 300 200 100 0 2 5 5 0 7 5 100 125 150 Ambient Temperature (C) Power Dissipation Free Air On Board 250 420  Power Dissipation (SOT-23-3) Power Dissipation (P D) depends on conditions of mounti ng on board. This specificatio n is based on the measurement at the condition below: (Power Dissipation (SOT-23-3) is substitution of SOT-23-6.) Measurement Conditions Standard Test Land Pattern Environment Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plastic (Double sided) Board Dimensions 40mm  40mm  1.6mm Copper Ratio Top side: Approx . 50%, Back side: Approx. 50% Through-holes  0.5mm  44pcs Measurement Result ( T a = 2 5C, Tjmax=125C) Standard Land Pattern Free Air Power Dissipation 420mW 250mW Thermal Resistance ja = (125-25C)/0.42W = 238C/W 400 C/W Measurement Board Pattern IC Mount Area (Unit: mm)

R3111E (TO-92) is the discontinued product as of April, 2017.  Package Dimensions (SOT-23-3) Unit: mm 0.8 0~0.1 2.9±0.2 1.9±0.2 1.6±0.2 2.8±0.3 0.4±0.1 1 2 0.16-0.06 +0.1 1.1-0.1 0.2MIN. 1.4MAX. +0.2  Mark Specification (SOT-23-3)  : Product Code …Refer to Mark Specification Table (SOT-23-3).  : Lot No. ………... Alphanumeric Serial Number 

 R3111E (TO-92) is the discontinued product as of April, 2017.  Marking Specification Table (SOT-23-3) R3111Nxx2A R3111Nxx2C Part Number  Part Number  R3111N092A R3111N102A R3111N112A R3111N122A R3111N132A R3111N142A R3111N152A R3111N162A R3111N172A R3111N182A R3111N192A R3111N202A R3111N212A R3111N222A R3111N232A R3111N242A R3111N252A R3111N262A R3111N272A R3111N282A R3111N292A R3111N302A R3111N312A R3111N322A R3111N332A R3111N342A R3111N352A R3111N362A R3111N372A R3111N382A R3111N392A R3111N402A R3111N412A R3111N422A R3111N432A R3111N442A R3111N452A R3111N462A R3111N472A R3111N482A R3111N492A R3111N502A R3111N512A R3111N522A R3111N532A R3111N542A R3111N552A R3111N562A R3111N572A R3111N582A R3111N592A R3111N602A R3111N092C R3111N102C R3111N112C R3111N122C R3111N132C R3111N142C R3111N152C R3111N162C R3111N172C R3111N182C R3111N192C R3111N202 C R3111N212C R3111N222C R3111N232C R3111N242C R3111N252C R3111N262C R3111N272C R3111N282C R3111N292C R3111N302C R3111N312C R3111N322C R3111N332C R3111N342C R3111N352C R3111N362C R3111N372C R3111N382C R3111N392C R3111N402C R3111N412C R3111N422C R3111N432C R3111N442C R3111N452C R3111N462C R3111N472C R3111N482C R3111N492C R3111N502C R3111N512C R3111N522C R3111N532C R3111N542C R3111N552C R3111N562C R3111N572C R3111N582C R3111N592C R3111N602C

R3111E (TO-92) is the discontinued product as of April, 2017. Power Dissipation PD (mW) 0 2 5 5 0 7 5 100 125 150 Ambient Temperature (C) Power Dissipation 1000 750 500 250 Free Air On Board 900  Power Dissipation (SOT-89-3) Power Dissipation (P D) depends on conditions of mounti ng on board. This specificatio n 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 plastic (Double sided) Board Dimensions 50mm  50mm  1.6mm Copper Ratio Top side : Approx. 10% , Back side : Approx. 100% Through-hole - Measurement Result (Ta=25C,Tjmax=125C) Standard Land Pattern Free Air Power Dissipation 900mW 500mW Thermal Resistance ja = (125-25C)/0.9W = 111C/W 200 C/W Measurement Board Pattern IC Mount Area Unit : mm

 R3111E (TO-92) is the discontinued product as of April, 2017.  Package Dimensions (SOT-89-3) Unit: mm 4.5±0.1 1.6±0.2 1 2 3 φ1.0 1.5±0.1 0.42±0.1 1.5±0.1 0.47±0.1 4.0 +0.25 -0.35 0.3±0.2 1.5±0.1 0.4±0.1 0.4±0.1 0.1 S S 3 2 1 Bottom View  Mark Specification (SOT-89-3)  : Product Code …Refer to Mark Specification Table (SOT-89-3).  : Lot No. ………... Alphanumeric Serial Number ①②③ ④⑤⑥

R3111E (TO-92) is the discontinued product as of April, 2017.  Marking Specification Table (SOT-89-3) R3111Hxx1A R3111Hxx1C R3111H091A R3111H101A R3111H111A R3111H121A R3111H131A R3111H141A R3111H151A R3111H161A R3111H171A R3111H181A R3111H191A R3111H201A R3111H211A R3111H221A R3111H231A R3111H241A R3111H251A R3111H261A R3111H271A R3111H281A R3111H291A R3111H301A R3111H311A R3111H321A R3111H331A R3111H341A R3111H351A R3111H361A R3111H371A R3111H381A R3111H391A R3111H401A R3111H411A R3111H421A R3111H431A R3111H441A R3111H451A R3111H461A R3111H471A R3111H481A R3111H491A R3111H501A R3111H511A R3111H521A R3111H531A R3111H541A R3111H551A R3111H561A R3111H571A R3111H581A R3111H591A R3111H601A A09A A10A A11A A12A A13A A14A A15A A16A A17A A18A A19A A20A A21A A22A A23A A24A A25A A26A A27A A28A A29A A30A A31A A32A A33A A34A A35A A36A A37A A38A A39A A40A A41A A42A A43A A44A A45A A46A A47A A48A A49A A50A A51A A52A A53A A54A A55A A56A A57A A58A A59A A60A R3111H091C R3111H101C R3111H111C R3111H121C R3111H131C R3111H141C R3111H151C R3111H161C R3111H171 C R3111H181C R3111H191C R3111H201C R3111H211C R3111H221C R3111H231C R3111H241C R3111H251C R3111H261C R3111H271C R3111H281C R3111H291C R3111H301C R3111H311C R3111H321C R3111H331C R3111H341C R3111H351C R3111H361C R3111H371C R3111H381C R3111H391C R3111H401C R3111H411C R3111H421C R3111H431C R3111H441C R3111H451C R3111H461C R3111H471C R3111H481C R3111H491C R3111H501C R3111H511C R3111H521C R3111H531C R3111H541C R3111H551C R3111H561C R3111H571C R3111H581C R3111H591C R3111H601C A09C A10C A11C A12C A13C A14C A15C A16C A17C A18C A19C A20C A21C A22C A23C A24C A25C A26C A27C A28C A29C A30C A31C A32C A33C A34C A35C A36C A37C A38C A39C A40C A41C A42C A43C A44C A45C A46C A47C A48C A49C A50C A51C A52C A53C A54C A55C A56C A57C A58C A59C A60C

 R3111E (TO-92) is the discontinued product as of April, 2017. TYPICAL CHARACTERISTICS 1) Supply Current vs. Input Voltage R3111x09xx R3111x27xx Topt=85°C 25°C -40°C 2.5 2.0 1.5 1.0 0.5 0.0 Input Voltage V IN(V) 02468 1 0 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) 02468 1 0 Supply Current ISS(μA) R3111x45xx Topt=85°C 25°C -40°C 2.0 1.5 1.0 0.5 0.0 Input Voltage V IN(V) 02468 1 0 Supply Current ISS(μA) 2) Detector Threshold Hysteresis vs. Temperature R3111x09xx R3111x27xx +VDET -VDET 1.00 0.98 0.96 0.94 0.92 0.90 0.88 0.84 0.86 Temperature Topt(°C) - 6 0 0 2 04 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) - 6 0 0 2 04 06 08 0-40 -20 100 Detector Threshold -VDET(V)

R3111E (TO-92) is the discontinued product as of April, 2017. R3111x45xx 4.8 4.7 4.6 4.5 4.4 +VDET -VDET Temperature Topt(°C) - 6 0 0 2 04 06 08 0-40 -20 100 Detector Threshold -VDET(V) 3) Output Voltage vs. Input Voltage R3111x09xC 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 R3111x27xC 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

 R3111E (TO-92) is the discontinued product as of April, 2017. R3111x45xC R3111x45xA Topt=-40°C 25°C 85°C Input Voltage VIN(V) 02 3 16 5 4 Output Voltage VOUT(V) 5V Pull-up 470kΩ6 Input Voltage VIN(V) 02 3 16 5 4 Output Voltage VOUT(V) Topt=-40°C 25°C 85°C 4) Nch Driver Output Current vs. VDS R3111x09xx R3111x09xx 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) R3111x27xx R3111x27xx 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)

R3111E (TO-92) is the discontinued product as of April, 2017. R3111x45xx R3111x45xx 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 R3111x09xx R3111x27xx 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 R3111x45xx Input Voltage V IN(V) 0123456 Output Current IOUT(mA) Topt=-40°C 25°C 85°C

 R3111E (TO-92) is the discontinued product as of April, 2017. 6) Pch Driver Output Current vs. Input Voltage R3111x09xC 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) 02468 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) 012 4 36 57 Output Current IOUT(mA) R3111x45xC 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) 024 8 61 0 Output Current IOUT(mA) 7) Output Delay Time vs. Load Capacitance (Ta25C) R3111x09xA 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)

R3111E (TO-92) is the discontinued product as of April, 2017. R3111x45xA 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) 8) Output Delay Time vs. Input Pin Capacitance R3111x09xA 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) R3111x45xA 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)

 R3111E (TO-92) is the discontinued product as of April, 2017. TYPICAL APPLICATION  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 470k R3111xxxxA Series VDD GND OUT R VDD RESET CPU GND VDD2VDD 470k  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 470k R3111xxxxA Series VDD GND OUT R2 VDD RESET CPU GND VDD 470k R1100k  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

R3111E (TO-92) is the discontinued product as of April, 2017.  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 WC_OUTVDET2 VDD VDET1 GND WC_OUT VDET2 GND  Over-charge Preventing Circuit R3111xxxxC Series VDD GND OUT R4R2R1 Light Solar Battery Load

 R3111E (TO-92) is the discontinued product as of April, 2017. TECHNICAL NOTES When connecting resistors to the device’s input pin When connecting a resistor (R1) to an input of this device, the input voltage decreases by [Device’s Consumption Current] x [Resistance Value] only. And, the cross conduction current* 1, which occurs when changing from the detecting state to the release state, is decr eased the input voltage by [Cross Conduction Current] x [Resistance Value] only. And then, this device will enter the re-detecting state if the input voltage reduction is larger than the difference between the detector voltage and the released voltage. When the input resistance value is large and the VDD is gone up at mildly in the vicinity of the released voltage, repeating the above operation may result in the occurrence of output. As shown in Figure A/B, set R1 to become 100 kΩ or less as a gu ide, and connect CIN of 0.1 μF and more to between the input pin and GND. Besides, make evaluations includ ing temperature properties under the actual usage condition, with using the evaluation board like this way. As a result, make sure that the cross conduction current has no problem. VDD GND OUT pin CIN*2 Figure A Voltage Detector VDD GND OUT pin CIN*2 Figure B Voltage Detector 1 In the CMOS output type, a charging current for OUT pin is included. *2 Note the bias dependence of capacitors.

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