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RICOH RP110x SERIES Manual

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1. 50 P tt 9 2 A WA JA 0 50 100 150 200 250 300 350 400 0 50 100 150 200 250 300 350 400 Time t us Time t us RICOH RP110x ESR vs Output Current When using these ICs consider the following points The relations between lour Output Current and ESR of an output capacitor are shown below The conditions when the white noise level is under 40uV Avg are marked as the hatched area in the graph Measurement conditions Frequency Band 10Hz to 2MHz Temperature 40 C to 85 C Hatched Area Noise level is under 40uV Avg Cin Cour O 1uF RP110x08xx RP110x25xx ViIN 1 4V to 5 25V VIN 2 5V to 5 25V 1000 100 c 10 84 1 0 1 0 01 0 25 50 75 100 125 150 0 25 50 75 100 125 150 Output Current lout mA Output Current lout mA RP110x36xx 3 6 to 5 25V 0 25 50 75 100 125 150 Output Current lout mA a RICOH 1 The products and the product specifications described in this document are subject to change or discontinuation of production without notice for reasons such as improvement Therefore before deciding to use the products please refer to Ricoh sales representatives for the latest information thereon 2 The materials in this document may not be copied or otherwise reproduced in whole or in part without prior written consent of Ricoh 3 Please be sure to take any necessary formalities under relevant laws or regulations before exporting or otherwise taking out of your country the
2. 8 1 3 5479 2857 Fax 81 3 5479 0502 RICOH EUROPE NETHERLANDS B V e Semiconductor Support Centre Prof W H Keesomlaan 1 1183 DL Amstelveen The Netherlands P O Box 114 1180 AC Amstelveen Phone 3 1 20 5474 309 Fax 31 20 5474 791 RICOH ELECTRONIC DEVICES KOREA Co Ltd 11 floor Haesung 1 building 942 Daechidong Gangnameu Seoul Korea Phone 82 2 2135 5700 Fax 82 2 2135 5705 RICOH ELECTRONIC DEVICES SHANGHAI Co Ltd Room403 No 2 Building 6902Bi Bo Road Pu Dong New district Shanghai 201203 People s Republic of China Phone 86 21 5027 3200 Fax 86 21 5027 3299 RICOH COMPANY LTD Electronic Devices Company Taipei office Room109 10F 1 No 51 Hengyang Rd Taipei City Taiwan R O C Phone 886 2 2313 1621 1622 Fax 886 2 2313 1623
3. RP110x RP110x36xx RP110x08xx Vin 4 6V C2 1 0uF Vin 1 8V C2 1 0uF 150 ES 1002 eS 5 l SP S gt Output Current gt Ba Output Current BEEN D lt gt 100mA 1mA lt 10mA i 5 E 5 POI LLL 2 O 39 O O 0 6 EE Output Voltage Py O 0 4 0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 Time t ms Time t ms RP110x25xx RP110x36xx VINZ3 5V C2 1 0uF Vin 4 6V C2 1 0uF M S lt S lt z 8 2 Output Current 3 3 ii Output Current BEEN 3 I IA U i 5 Sol 8 g 5 3 8 5 gt gt KL 9 z LE LI KELLI i E 2 3 6 4 wm Kul L 11 8 l 5 5 J 5 ES Output Voltage O 3 4 EN Output Voltage O 3 2 0 0 1 02 0 3 04 0 5 0 6 0 7 0 8 0 9 0 0 1 0 2 0 3 04 0 5 0 6 0 7 0 8 0 9 Time t ms Time t ms 12 Turn On Speed C1 Ceramic 0 1uF C2 Ceramic 0 1uF Topt 25 C RP110x08xC RP110x08xB D Vin 1 8V gt gt 1 0 2 l 2 e 2 e gt gt gt D louT 30mA G O O O ft lour 150mA S S gt gt gt gt 5 gt 2 2 8 E L 0 50 100 150 200 250 300 350 400 0 50 100 150 200 250 300 350 400 Time t us Time t us RICOH 20 RP110x RP110x25xC gt gt gt z gt gt 3 0 5 5 3 0 5 2 0 5 5 2 0 81 5 A m e 8 1 5 O 1 0 Outp
4. Vin 5 25V os LLLA _ L 0 100 200 300 400 Output Current lout mA Output Voltage Vout V 2 Output Voltage vs Input Voltage C1 Ceramic 0 1uF C2 Ceramic 0 1uF Topt 25 C RP110x08xx RP110x25xx lour 1mA our 30mA lour 5O0mA lour 1mA ouT 30MA lour 5O0mA Output Voltage Vour V Output Voltage Vour V Input Voltage Vin V RP110x RP110x36xx lour 1mA our 30mA lour 5O0mA Output Voltage Vour V Input Voltage Vin V 3 Supply Current vs Input Voltage C1 Ceramic 0 1uF C2 Ceramic 0 1uF Topt 25 C RP110x08xx RP110x25xx 1 4 8 1 0 8 c 0 8 is 3 0 6 3 gt gt a 0 4 Q Q Q 2 2 0 02 2 0 0 1 2 3 4 5 Input Voltage Vin V Input Voltage Vin V RP110x36xx lt e 2 5 O Q Q 2 N Input Voltage Vin V RICOH RP110x 4 Output Voltage vs Temperature C1 Ceramic 0 1uF C2 Ceramic 0 1uF lour 1mA RP110x08xx RP110x25xx Vin 1 8V ViIN 3 5V 0 86 gt 0 84 5 9 0 82 8 0 80 gt 0 78 2 0 76 0 74 40 25 0 25 50 75 85 40 25 0 25 50 75 95 Temperature Topt C Temperature Topt C RP110x36xx Vin 4 6V Temperature Topt C 5 Supply Current vs Temperature C1 Ceramic 0 1uF C2 Ceramic 0 1uF RP110x08xx RP110x25xx Vin 1 8V ViIN 3 5V 2 5 El El 2 0 t 1 5 O G 10 gt 3 3 2 2 0 5 0 40 25 0 25 50 7585 40 25 0 25 50 75 85 Te
5. and fail safe feature We do not assume any liability or responsibility for any loss or damage arising from misuse or inappropriate use of the products Anti radiation design is not implemented in the products described in this document 8 Please contact Ricoh sales representatives should you have any questions or comments concerning the products or the technical information RICOH COMPANY LTD Electronic Devices Company Ricoh continually strives to promote customer satisfaction and shares the achievements of its management quality improvement program with people and society Ricoh presented with the Japan Management Quality Award for 1999 E awarded ISO 14001 certification Our current aim is to obtain ISO 14001 certification for all of our business offices The Ricoh Group was awarded ISO 14001 certification which is an international standard for environmental management systems at both its domestic and overseas production facilities http www coh gt 1 5 I E 20HS After Apr 1 2006 we will ship out the lead free products only Thus all products that Compl iant will be shipped from now on comply with RoHS Directive Ricoh completed the organization of the Lead free production for all of our products RICOH COMPANY LTD Electronic Devices Company Higashi Shinagawa Office International Sales 3 32 3 Higashi Shinagawa Shinagawa ku Tokyo 140 8655 Japan Phone
6. i 2 O gt Output Current 2 gt Output Current a 1 2 50 lt gt 100mA z 2 50mA lt gt 100mA aa 2 3 0 8 sur E L L 2 2 O 0 6 Output Voltage H 0 4 I 0 0 1 02 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 Time t ms Time t ms RICOH 18 RP110x RP110x36xx Vin 4 6V C2 0 1uF Output Current Output Voltage Vour V ili K 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 Time t ms RP110x25xx VIN 3 5V C2 0 1uF Output Current 1mA 10mA Output Voltage Vour V 0 0 1 0 2 0 3 04 0 5 0 6 0 7 0 8 0 Time t ms RP110x08xx Vin71 8V C2 1 0uF 150 RP110x08xx Vin 1 8V C2 0 1uF 20 Output Current 1mA lt gt 10mA Output Current lour mA Output Current lour 9 0 0 1 0 2 0 3 04 0 5 0 6 0 7 0 8 0 9 Time t ms RP110x36xx Vin 4 6V C2 0 1uF lt lt E 2 E 8 gt Output Current 8 1mA 10mA 2 5 5 gt 8 8 8 2 6 9 0 0 1 02 0 3 04 0 5 0 6 0 7 0 8 0 9 Time t ms RP110x25xx 3 5 C2 1 0uF 150 1002 100 Z 2 E 3 8 E gt Output Current 8 gt Output Current 8 D 100mA 5 100mA S S 2 gt amp 2 3 O 0 6 O22 6 0 01 0 2 03 04 05 0 6 07 0 8 0 9 0 01 02 03 04 05 0 6 07 0 8 09 Time t ms Time t ms RICOH
7. products or the technical information described herein 4 The technical information described in this document shows typical characteristics of and example application circuits for the products The release of such information is not to be construed as a warranty of or a grant of license under Ricoh s or any third party s intellectual property rights or any other rights 5 The products listed in this document are intended and designed for use as general electronic components in standard applications office equipment telecommunication equipment measuring instruments consumer electronic products amusement equipment etc Those customers intending to use a product in an application requiring extreme quality and reliability for example in a highly specific application where the failure or misoperation of the product could result in human injury or death aircraft soacevehicle nuclear reactor control system traffic control system automotive and transportation equipment combustion equipment safety devices life support system etc should first contact us 6 We are making our continuous effort to improve the quality and reliability of our products but semiconductor products are likely to fail with certain probability In order to prevent any injury to persons or damages to property resulting from such failure customers should be careful enough to incorporate safety measures in their design such as redundancy feature firecontainment feature
8. without chip enable circuit without auto discharge function at off state D H active with auto discharge function at off state RICOH RP110x PIN CONFIGURATIONS e DFN PLP 0808 4 e DFN1010 4 Top View Bottom View Top View Bottom View 4 3 3 4 4 3 1 2 2 1 PIN DESCRIPTIONS e DFN PLP 0808 4 Ground Pin 8 Chip Enable Pin H Active No connection 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 Pin Description e DFN1010 4 GN OP 3 CE NC Chip Enable Pin H Active No connection 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 RICOH e SC 88A RP110x Chip Enable Pin H Active No connection Chip Enable Pin H Active No connection No Connection Output Pin Item Rating Unit Input Voltage 6 0 Input Voltage CE Pin 6 0 Output Voltage 0 3 to Vin 0 3 Output Current 180 Power Dissipation DFN PLP 0808 4 206 Power Dissipation DFN1010 4 400 Ny Power Dissipation SC 88A 380 Power Dissipation SOT 23 5 420 Operating Temperature Range 40 to 85 Storage Temperature Range 55 to 125 For Power Dissipation please refer to PACKAGE INFORMATION ABSOLUTE MAXIMUM RATINGS Electronic and mechanical st
9. 60 70 80 90 100 110 120 Time t ms RP110x36xB Vin 4 6V 6 Term RW NE RP110x RP110x25xB ViN 3 5V 1 0 gt gt CE Input Voltage m gt 5 E 5 0 5 gt o gt 08 S lour 30mA 5 lour 150mA 2 5 a 5 amp LLI LLI O O O O 10 20 30 40 50 60 70 80 Time t us RP110x25xD ViIN 3 5V _ 2 z E CE Input Voltage 2 gt LLI LLI 5 LL 1 0 gt 7 o S 3 p o AE OE TI 2 2 lour 150mA zi a LLI 4 LLI O O RN N Output Voltage E O 0 0 10 20 30 40 50 60 70 80 Time t us RP110x36xB Vin 4 6V un CE Input Voltage 27 O gt O gt gt gt g ILL FRE O O f in gt gt 5 Z 5 Q s Q Li 5 Output Voltage O O O 10 20 30 40 50 60 70 80 Time t us RICOH BENE mirtititittt 0 10 20 30 40 50 60 70 80 90 100 110 120 Time t ms 21 22 RP110x Output Voltage Vour V RP110x36xD louT Vin 4 6V 6 FL CE Input Voltage OmA 30mA lour 150mA Output Voltage 0 10 20 30 40 50 60 70 80 Time t us CE Input Voltage Vce V 14 Inrush Current C1 none lour OmA Topt 25 C Input Voltage Vin Output Voltage Vour V RP110x08xC Cout 10uF Cout 22uF CE Input Voltage Vce Output Voltage Vout V Inrush Current Ivoo mA 0 50 100 150 200 250 300 350 400 Time t us RICOH R
10. P110x08xB D 1 Output Voltage m Cour 10uF je Cout 22uF c 5 O p Mg LL 0 50 100 150 200 250 300 350 400 Time t us Input Voltage Vin Output Voltage Vour V Input Voltage Vin Output Voltage Vour V RP110x RP110x25xC RP110x25xB D VIN 3 5V gt fim 9 gt s O let tf Q Sos l ay Courz0 1uF tl ji Cout 0 1 uF Cout 1 0uF u Cour 1 0uF o Cour 2 2uF 9 22 i est 500 8 u DEI Tsncuem 70 5 5 O 2 c O 50 100 150 200 250 300 350 400 0 50 100 150 200 250 300 350 400 Time t us Time t us RP110x36xC RP110x36xB D ViN 4 6V 5 0 gt 5 0 4 5 pr 4 5 4 0 Input Voltage tr 0 5us 9 4 0 3 5 2 3 5 7 3 25 Output Voltage gt 25 2 0 _ 1 2 3 30 i51 S 4 TZ Pim 0 5 A Cout 0 1uF o 0 5 Cour20 1uF 0 eer Cour 1 0uF js 0 LE Cour 1 0uF Cour 2 2uF fe Corrz2 2uF EL nla 8 CC aeg 5 Cour 10uF E gt l Cour 10uF 300 4 5 300 8 8 amp 8 250 pot IL F T nrush Current 2002 6 inrush Current 200 E BENE 1M 10 9 gaj N 150 5 od keka liod _ Bw ON 9 50 5 ee ff 50 9
11. RICOH 150mA Low Supply Current LDO REGULATOR NO EA 239 111020 OUTLINE The RP110x Series is a voltage regulator LDO IC which has been developed using the CMOS process technology with high output voltage accuracy ultra low supply current and low ON resistance transistor The IC contains the following components a voltage reference unit an error amplifier a resistor net for output voltage setting a current limit circuit for preventing short circuit a soft start circuit and a chip enable circuit By minimizing the supply current to 1 the IC is able to prolong the battery life of each system The external capacitor is O 1uF with phase compensation IC also has a constant slope circuit as a soft start circuit which does not require any external capacitor It minimizes the inrush current and prevents the output voltage overshoot at the start up In addition to the small packaged SOT 23 5 and SC 88A the RP110x Series offers the ultra small DFN PLP 0808 4 package and DFN1010 4 which enables the high density mounting of LDO regulator FEATURES UDI CIS UU u uu Typ 1 Except the current through CE pull down circuit Slandobv CUM CG m Typ 0 1 e Dropout Voltage Tvp 0 28V lour 150mA Vour 2 8V e Output Voltage 1 096 e Temperature Drift Coefficient of Output Voltage Typ 100ppm C e Line Regul
12. ation Typ 0 02 V E DFN PLP 0808 4 DFN1010 4 SC 88A SOT 23 5 e Input Voltage Range 1 4V to 5 25V e Output Voltage 0 8V to 3 6V 0 1V steps For other voltages please refer to MARK INFORMATIONS e Built in Fold Back Protection Circuit Typ 50mA Current at short mode Ceramic capacitors are recommended to be used with this IC 0 1uF or more Built in Constant Slope Circuit APPLICATIONS e Power source for portable communication equipment e Power source for electrical appliances such as cameras VCRs and camcorders e Power source for battery powered equipment RP110x BLOCK DIAGRAMS RP110xxxxB RP110xxxxC RICOH RP110x SELECTION GUIDE The output voltage chip enable circuit auto discharge function package for the ICs can be selected at the user s request Product Name Halogen Free RP110Kxx1 TR DEN PLP 0808 4 Yes Yes RP110Lxx1 TR Yes Yes RP110Qxx2 TR FE Yes Yes RP110Nxx1 TR FE Yes Yes xx The output voltage can be designated in the range from 0 8V 08 to 3 6V 36 0 1V steps For other voltages please refer to MARK INFORMATIONS x CE pin polarity and auto discharge function at off state are options as follows B active without auto discharge function at off state C
13. h a capacitance value as much as 0 1uF or more between Voo and GND pin and as close as possible to the pins Set external components especially the output capacitor C2 as close as possible to the ICs and make wiring as short as possible RICOH RP110x B Constant Slope Circuits The RP110x Series is equipped with a constant slope circuit as a soft start circuit which allows the output voltage to start up gradually when the CE is turned on The constant slope circuit minimizes the inrush current at the start up and also prevents the overshoot of the output voltage The capacitor to create the start up slope is built in the IC that does not require any external components The start up time and the start up slope angle are fixed inside the IC If the capacitance of the external output capacitor Cour becomes more than the certain capacitance the output current limit circuit minimizes the incoming current of the output capacitor at the start up As a result the start up time becomes longer and the start up slope angle becomes more gentle As Inrush Current Characteristics Example below shows if the Cour is less than 4 7uF the constant slope circuit easily starts to function at the start up likewise if the Cour is over 10uF the output current limit circuit easily starts to function at the start up The boundary point of using these two circuits is inversely proportional to the output voltage If the output voltage is higher the ou
14. mA lour 30mA m 84 Y C 0 o a Y o Q 2 Input Voltage Vin V Input Voltage Vin V 9 Ripple Rejection vs Frequency C1 none C2 Ceramic 0 1uF Ripple 0 2Vp p Topt 25 C Ripple Rejection RR dB Ripple Rejection RR dB RP110x08xx RP110x25xx ViIN 1 8V Vin 3 5V lour 1mA lour 1mA lour 30mA m lour 30mA lour 150mA S IIII lourz1 50 lour 150mA x d u N p E Aiii MU V i 2 i Mail 0 1000 0 1 1 0 10 IL 1000 f kHz Frequency f kHz RP110x36xx Vin 4 6V lour 1mA lour 30mA our 150mA l DN kul 100 1000 emen f KHz RICOH RP110x 10 Input Transient Response C1 none C2 0 1uF lour 30mA tr tf 5us Topt 25 C RP110x08xx RP110x25xx Voltage Vout V cO a imil M ms s _ 3 Input Voltage Vin V Output Voltage Vour V Input Voltage VIN L LLL Output Voltage utput 9 o 2 O 0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 Time t ms Time t ms RP110x33xx 425 Input Voltage VIN Output Voltage Vout V 0 0 1 02 03 04 0 5 06 0 7 08 0 9 Time t ms 11 Load Transient Response C1 none tr tf 5us Topt 25 C RP110x08xx RP110x25xx Vin71 8V C2 0 1 uF ViIN 3 5V C2 0 1uF LLLLLLLLLIo 100 100 lt 5 E LS 5 E 5
15. mperature Topt Temperature Topt C RICOH l 14 RP110x RP110x36xx Vin 4 6V 2 5 El 2 0 1 5 O 10 Q 2 05 0 40 25 0 25 50 75 85 Topt 6 Dropout Voltage vs Output Current C1 Ceramic 0 1uF C2 Ceramic 0 1uF Topt 25 C RP110x08xx RP110x25xx 1200 1000 5 800 E 600 8 gt gt 5 400 Q Q 200 2 Q Q 0 0 25 50 75 100 425 150 0 20 50 75 100 125 150 Output Current lout mA Output Current lour mA RP110x36xx Dropout Voltage Vpir mV 0 20 509 75 100 125 150 Output Current lout mA RICOH RP110x 7 Dropout Voltage vs Set Output Voltage C1 Ceramic 0 1uF C2 Ceramic 0 1uF Topt 25 C 1000 900 lour 1mA lour 30mA 900 our 50mA 700 lour 150mA 600 Dropout Voltage VnF mV 9 e e 08 12 16 20 24 28 32 3 6 Set Output Voltage Vree V 8 Ripple Rejection vs Input Bias Voltage C1 none C2 Ceramic 0 1uF Ripple 0 2Vp p Topt 25 C RP110x08xx RP110x25xx lour 1mA lour 1mA m m 2 2d 84 Qc 84 0 ke D D 84 Qc 2 A 84 ad 0 9 1 2 15 1 8 2 6 2 9 222 35 Input Voltage Vin V Input Voltage Vin V RP110x36xx RP110x08xx louT 1mA lour 30mA m m 2 5 Qc adi 84 Qc c 84 ad A el Qc Qc 2 7 4 0 4 3 4 6 15 RP110x Ripple Rejection RR dB RP110x25xx RP110x36xx lour 30
16. ress 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 RICOH RP110x ELECTRICAL CHARACTERISTICS e RP110x Unless otherwise noted Vin Set Vout 1 0V Vout gt 1 5 Vin 2 5V Vout lt 1 5V lour 71mA Cin Cout 0 1 UF The load regulation Mille on the packages PS PS PS S PS PSI PS NNT AR Sr Mr e e PS IPS S PS PSP PS PSP S PS PPS I IRI Topt 25 C Var gt 20v x099 ao V Vour Output Voltage a A 2 in Vout gt 2 0V V Load Regulation 1mA lt lout lt 150mA EIL mV Dropout Voltage Please refer to Dropout Voltage Iss Supply Current lour OmA 1 0 uA sea Standby Curent vev Or wara Line Regulation SetVorsoavevwzsov 002 6 0 Wr fissi Output Voltage Pull down Current 03 B D Version Input i Input EN L ES Output Nch Tr Riow ON Resistance Vin 4 0V Vce 0V of D version All of units are tested and specified under load conditions such that Tj amp Topt 25 C except for Output Voltage Temperature Coefficient x When Input Voltage is 5 5V the total operational time must be within 500hrs RECOMMENDED OPERATING CONDITIONS ELECTRICAL CHARACTERISTICS All of electronic equipment
17. 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 RICOH RP110x Dropout Voltage Output Voltage Dropout e Voir V mt _ oe ma MANN gt ore NA B 04 04 _ 03 RICOH RP110x TVPICAL APPLICATION a Vpp O Vour RP110 C1 C2 Series External Components C2 0 1uF MURATA GRM155B31C104KA87B TECHNICAL NOTES When using these ICs consider the following points Phase Compensation In these ICs phase compensation is made for securing stable operation even if the load current is varied For this purpose use a capacitor C2 with good frequency characteristics and ESR Equivalent Series Resistance Note If additional ceramic capacitors are connected with parallel to the output pin with an output capacitor for phase compensation the operation might be unstable Because of this test these ICs with as same external components as ones to be used on the PCB PCB Layout Make Voo and GND lines sufficient If their impedance is high noise pickup or unstable operation may result Connect a capacitor C1 wit
18. tput current limit circuit easily starts to function even if the Cour capacitance is small For more details please refer to the graph 14 of Inrush Current Characteristics Example Inrush Current Characteristics Example C1 none lour OmA 25 RP110x25xB D Vin 3 5V Cour 0 1uF Cout 1 0uF _ _ Cour 2 2uF Cout 4 7uF EMEN E Cour 10uF np Current y A CE Input Voltage Vce Output Voltage Vout V Inrush Current lvop mA 0 50 100 150 200 250 300 350 400 Time t us RICOH RP110x TEST CIRCUITS RP110x Series louT C1 Ceramic 0 1uF C2 Ceramic 0 1uF Basic Test Circuit RP110x Series C1 Ceramic 0 1uF C2 Ceramic 0 1uF Pulse Generator rl RP110x af Series C2 Eb lout C2 Ceramic 0 1uF Test Circuit for Ripple Rejection O Vout 110 C2 C1 Series d louTa O louTb C1 Ceramic 0 1uF C2 Ceramic 0 1uF Test Circuit for Load Transient Response ig RICOH RP110x TYPICAL CHARACTERISTICS 1 Output Voltage vs Output Current C1 Ceramic 0 1uF C2 Ceramic 0 1uF Topt 25 C RP110x08xx RP110x25xx gt gt 5 5 p 2 Vin 2 8V ViIN 2 9V ki x 1 8 N 3 5V TA VIN gt gt Vw 1 6V S 5 5 Q Q 5 5 O O 0 0 100 200 300 400 0 100 200 300 400 Output Current lout mA Output Current lout mA RP110x36xx VINZ3 8V ViN 3 9V ViN 4 6V
19. ut Volt ii 1 0 pee pue m 05 lol 0 0 50 100 150 200 250 300 350 400 Time t us RP110x36xC 22 5 jg jp UU A gt Input Voltage pc a SERI gt L 3 TT 0 Z 3 PE eee gt gt 4 0 9 40 L L IL L lour 150mA D 35 S 45 ian 9 950 22 gt 25 220 155 Output Voltage 1 0 0 5 5 L T T T T 0 50 100 150 200 250 300 350 400 Time t us 0 0 RP110x25xB D ViN 3 5V 5 50 100 150 200 250 300 350 400 Time t us RP110x36xB D Vin 4 6V O N O O 50 100 150 200 250 300 350 400 Time t us 13 Turn Off Speed with CE pin C1 Ceramic 0 1uF C2 Ceramic 0 1uF Topt 25 C RP110x08xB ViN 1 8V 2 0 lour 30mA lour 150mA CE Input Voltage Vc Output Voltage Vour V mE ON Output Voltage Vour V 0 10 20 30 40 50 60 70 80 Time t us RICOH RP110x08xB Vin 1 8V 2 0 10 20 30 40 50 60 70 80 Time t ms CE Input Voltage Vce V CE Input Voltage Vce V CE Input Voltage Vce V Output Voltage Vour V Output Voltage Vour V Output Voltage Vour V RP110x08xD 1 2 Efile CE Input Voltage Gss _ _ lour 0mA lour 30mA lour 150mA 0 10 20 30 40 50 60 70 80 Time t us RP110x25xB Vin 3 5V 4 CE Input Voltage a SLELLELLELLELL m INI _ Output Voltage 0 0 1 0 20 30 40 50

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