RicohメーカーR5RLの使用説明書/サービス説明書
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ELECTRONIC DEVICES DIVISION VOL T AGE REGULATOR R × 5RL SERIES APPLICA TION MANUAL NO.EA-022-9803.
NO TICE 1. The products and the product specifications described in this application manual are subject to change or dis- continuation 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.
OUTLINE ...................................................................................................... 1 FEA TURES .................................................................................................... 1 APPLICA TIONS ...........
V OL T A GE REGULA T OR R × 5RL SERIES 1 OUTLINE The R × 5RL Series are voltage regulator ICs with high accuracy output voltage and ultra-low quiescent cur - rent by CMOS process. Each of these ICs consists of a voltage reference unit, an error amplifier, a driver tran - sistor, and resistors for setting output voltage.
2 SELECTION GUIDE The package type, the output voltage, the packing type, and the taping type of R × 5RL Series can be designated at the user's request by specifying the part number as follows: For example, the product with Package Type SOT-89, Output Voltage 5.
R × 5RL 3 • TO-92 PIN CONFIGURA TION • SOT-89 • SOT-23-5 PIN DESCRIPTION • TO-92 • SOT-89 • SOT-23-5 Pin No. Symbol 1 GND 2 V IN 3 V OUT 4 NC 5 NC Pin No.
R × 5RL 4 ABSOLUTE MAXIMUM RA TINGS Symbol Item V IN Input Voltage V OUT Output Voltage I OUT Output Current P D 1 Power Dissipation 1 ( NOTE 1) P D 2 Power Dissipation 2 ( NOTE 2) Topt Operating Temperature Tstg Storage Temperature Tsolder Lead Temperature (Soldering) Rating Unit +12 V –0.
R × 5RL 5 ELECTRICAL CHARA CTERISTICS • R × 5RL20A Symbol Item V OUT Output Voltage I OUT Output Current ∆ V OUT Load Regulation ∆ I OUT V DIF Dropout Voltage I SS Quiescent Current ∆ V OUT ∆ V IN Line Regulation V IN Input Voltage ∆ V OUT Output Voltage ∆ Topt Temperature Coefficient Conditions MIN.
6 • R × 5RL50A Topt=25˚C • R × 5RL40A Topt=25˚C Symbol Item V OUT Output Voltage I OUT Output Current ∆ V OUT Load Regulation ∆ I OUT V DIF Dropout Voltage I SS Quiescent Current ∆ V OUT ∆ V IN Line Regulation V IN Input Voltage ∆ V OUT Output Voltage ∆ Topt Temperature Coefficient Conditions MIN.
7 • R × 5RL60A Topt=25˚C Symbol Item V OUT Output Voltage I OUT Output Current ∆ V OUT Load Regulation ∆ I OUT V DIF Dropout Voltage I SS Quiescent Current ∆ V OUT ∆ V IN Line Regulation V IN Input Voltage ∆ V OUT Output Voltage ∆ Topt Temperature Coefficient Conditions MIN.
R × 5RL 8 ELECTRICAL CHARA CTEISTICS BY OUTPUT V OL T A GE V IN – V OUT =2.0V 25 35 30 45 1mA ≤ I OUT ≤ 35mA V IN – V OUT =2.0V 35 50 40 60 1mA ≤ I OUT ≤ 50mA V IN – V OUT =2.0V 45 65 50 70 1mA ≤ I OUT ≤ 65mA V IN – V OUT =2.0V 55 80 60 90 1mA ≤ I OUT ≤ 80mA R × 5RL20A 1.
R × 5RL 9 1.0 3.0 1.1 3.3 I OUT =1mA I OUT V IN =10mA V OUT 0.05 0.2 10 ±100 =2.0V V OUT + – 30˚C ≤ 0.5V ≤ Topt V IN ≤ 80˚C 1.2 3.6 ≤ 10V 1.3 3.9 Quiescent Current Line Regulation Input Voltage O utput Voltage Tempco. Iss(µA) ∆ V OUT / ∆ V IN (%/V) V IN (V) ∆ V OUT / ∆ T(ppm/˚C) Conditions TYP.
R × 5RL 10 OPERA TION Output Voltage V OUT divided at the node between Registers R1 and R2 is compared with Reference Voltage by Error Amplifier, so that a constant voltage is output. TEST CIRCUITS FIG. 2 Test Circuit FIG. 3 Quiescent Current Test Circuit FIG.
11 R × 5RL30A TYPICAL CHARA CTERISTICS 1) Output Voltage vs. Output Current 2) Output Voltage vs. Input Voltage R × 5RL30A 0 20 0.0 2.7 2.8 2.9 3.0 3.1 Topt=–30˚C Output Voltage V OUT (V) 25˚C V IN =5.0V 40 60 80 100 120 80˚C Output Current I OUT (mA) Output Current I OUT (mA) 0 20 0.
R × 5RL 12 R × 5RL40A R × 5RL50A R × 5RL30A 3) Dropout Voltage vs. Output Curret R × 5RL40A R × 5RL40A 3.5 4.0 4.5 3.2 3.4 3.6 3.8 4.0 4.2 I OUT =1mA Output Voltage V OUT (V) Topt=25˚C 5mA 10mA Input Voltage V IN (V) 4.5 5.0 5.5 4.2 4.4 4.6 4.8 5.
13 R × 5RL50A R × 5RL30A R × 5RL40A R × 5RL50A 4) Output Voltage vs.Temperature 0 10 20 30 40 50 Output Current I OUT (mA) 0.0 0.4 0.6 0.2 0.8 1.0 1.2 1.4 1.6 1.8 2.0 Dropout Voltage V DIF (V) Topt=80˚C 25˚C –30˚C I OUT =10mA V IN =5.0V –40 –20 Temperature Topt(˚C) 0 20 40 60 80 100 2.
14 5) Quiescent Current vs. Input Voltage R × 5RL50A R × 5RL40A R × 5RL30A R × 5RL40A 6) Quiescent Current vs. Temperature 3 4 5 6 7 8 9 10 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 1.5 Quiescent Current Iss(µA) Topt=25˚C Input Voltage V IN (V) 4 5 6 7 8 9 10 1.
15 R × 5RL50A 7) Dropout Voltage vs. Set Output Voltage 9) Line Transient Response (2) 8) Line Transient Response (1) –40 –20 1.5 1.6 1.7 1.8 1.9 2.0 2.1 2.2 2.3 2.4 2.5 Quiescent Current Iss(µA) Temperature Topt(˚C) V IN =7.0V 0 20 40 60 80 100 0 1 2 3 4 5 6 0.
R × 5RL 16 TYPICAL APPLICA TION In R × 5RL Series, a constant voltage can be obtained without using Capacitors C1 and C2. However, when the wire connected to Vin is long, use Capacitor C1. Output noise can be reduced by using Capacitor C2. Insert Capacitors C1 and C2 with the capacitance of 0.
R × 5RL 17 • CURRENT BOOST CIRCUIT Output current of 60mA or more can be obtained by the current boost circuit constructed as shown in this cir- cuit diagram. • CURRENT BOOST CIRCUIT WITH OVERCURRENT LIMIT CIRCUIT A circuit for protecting Tr.1 from the destruction caused by output short-circuit or overcurrent is shown in this circuit diagram.
R × 5RL 18 P A CKA GE DIMENSIONS (Unit: mm) · TO-92 · SOT-89 · SOT-23-5 5.2MAX. 4.2MAX. 2.3MAX. 5.2MAX. 12.7MAX. 0.6MAX. 0.55MAX. 1.27 2.54 1 2 3 0.7 0.5MAX. 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 ±0. 1 ±0.1 1.5±0.1 2.5±0.
19 R × 5RL T APING SPECIFICA TIONS (Unit: mm) · TO-92 (Note) When taping is performed, the pins of TO-92 are subjected to a particularforming. (Note) TZ type tape is not in the form of a reel, but is packed in a zigzag state in a box.
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