RP130x SERIES. LOW NOISE 150mA LDO REGULATOR OUTLINE FEATURES APPLICATIONS NO.EA
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1 RPx SERIES LOW NOISE 5mA LDO REGULATOR NO.EA-7-8 OUTLINE The RPx Series are CMOS-based positive voltage regulator ICs with high ripple rejection, low dropout voltage, high output voltage accuracy and extremely low supply current. Each of these ICs consists of a voltage reference unit, an error amplifier, a resistor-net for voltage setting, a short current limit circuit and a chip enable circuit. These ICs have an excellent low supply current performed by CMOS process, moreover they perform with low dropout voltage due to built-in low ON-resistance. A chip enable function prolongs the battery life. The input transient response, the load transient response and the ripple rejection have been improved in the RPx Series compared with the conventional products. Besides achieving low supply current (Typ.8µA). The range of the operation voltage is capable from.7v to.5v and the range of the output voltage is capable from.v to 5.V for this product, which is wider range as our conventional product Rx series. The output voltage of these ICs is fixed with high accuracy. Since the packages for these ICs are DFN(PLP)-, SOT--5 and SC-8AB, therefore high density mounting of the ICs on boards is possible. FEATURES Supply Current...Typ. 8µA Supply Current (Standby Mode)...Typ.. µa Ripple Rejection...Typ. 8dB (f=khz) Input Voltage Range...7V to.5v Range...V to 5.V Accuracy...±.% (VOUT>.V, Topt=5 C) Temperature-Drift Coefficient of...typ. ±ppm/ C Dropout Voltage...Typ..V (IOUT=5mA, VOUT=.8V) Line Regulation...Typ..%/V Packages...DFN(PLP)-, SOT--5, SC-8AB Built-in Fold Back Protection Circuit...Typ. ma Ceramic capacitors are recommended to be used with this IC....7µF or more APPLICATIONS Power source for battery-powered equipment. Power source for portable communication equipment. Power source for electrical appliances such as cameras, VCRs and camcorders. Power source for high stable reference voltage.
2 RPx BLOCK DIAGRAMS RPxxxA VDD VOUT Vref Current Limit CE GND RPxxxB RPxxxD VDD VOUT VDD VOUT Vref Vref Current Limit Current Limit CE GND CE GND
3 RPx SELECTION GUIDE The output voltage, chip enable polarity, auto discharge function*, and the taping type for the ICs can be selected at the user s request. The selection can be made with designating the part number as shown below; RPxxxx-xx-x Part Number a b c d e Code a b c d e Designation of Package Type: K: DFN(PLP)- N: SOT--5 Q: SC-8AB Contents Setting (VOUT): Stepwise setting with a step of.v in the range of.v to 5.V is possible. Exceptions:.85V=RPx8x5-xx-x,.85V=RPx8x5-xx-x Designation of Mask Option A: active low, without auto discharge function* at OFF state. B: active high, without auto discharge function* at OFF state. D: active high, with auto discharge function* at OFF state. Designation of Taping Type: Ex. TR (Refer to Taping Specifications; TR type is the standard direction.) Designation of composition of pin plating: -F : Lead free solder plating (SOT--5, SC-8AB) None : Au plating (DFN(PLP)-) *) When the mode is into standby with CE signal, auto discharge transistor turns on, and it makes the turn-off speed faster than normal type.
4 RPx PIN CONFIGURATIONS DFN(PLP)-* Top View Bottom View SOT--5 SC-8AB 5 (mark side) (mark side) PIN DESCRIPTIONS DFN(PLP)-* SOT--5 Pin No. Symbol Description Pin No. Symbol Description VOUT Output Pin VDD Input Pin GND Ground Pin GND Ground Pin CE / CE Chip Enable Pin CE / CE Chip Enable Pin VDD Input Pin NC No Connection ) Tab in the parts have GND level. (They are connected to the back side of this IC.) Do not connect to other wires or land patterns. 5 VOUT Output Pin SC-8AB Pin No. Symbol Description CE / CE Chip Enable Pin GND Ground Pin VOUT Output Pin VDD Input Pin
5 RPx ABSOLUTE MAXIMUM RATINGS Symbol Item Rating Unit VIN Input Voltage 7. V V (CE Pin). to 7. V VOUT. to VIN+. V IOUT Output Current (DC) ma Power Dissipation (DFN(PLP)-)* PD Power Dissipation (SOT--5)* mw Power Dissipation (SC-8AB)* 8 Topt Operating Temperature Range to 85 C Tstg Storage Temperature Range 55 to 5 C *) For Power Dissipation, please refer to PACKAGE INFORMATION to be described. ABSOLUTE MAXIMUM RATINGS Absolute Maximum ratings are threshold limit values that must not be exceeded ever for an instant under any conditions. Moreover, such values for any two items must not be reached simultaneously. Operation above these absolute maximum ratings may cause degradation or permanent damage to the device. These are stress ratings only and do not necessarily imply functional operation below these limits. 5
6 RPx ELECTRICAL CHARACTERISTICS VIN=Set VOUT+V for VOUT>.5V. VIN=.5V for VOUT < =.5V. IOUT=mA, CIN=COUT=.7µF, unless otherwise noted. The specification in is checked and guaranteed by design engineering at C < = Topt < = 85 C, unless otherwise noted. RPxxxA Topt=5 C Symbol Item Conditions Min. Typ. Max. Unit VOUT Topt=5 C C < = Topt < = 85 C VOUT>.V.99. V VOUT < =.V mv VOUT>.V V VOUT < =.V mv IOUT Output Current 5 ma VOUT/ IOUT Load Regulation ma < = IOUT < = 5mA mv VDIF Dropout Voltage IOUT=5mA.V < = VOUT<.5V.7..5V < = VOUT<.7V.5.8.7V < = VOUT<.V..8.V < = VOUT<.5V...5V < = VOUT<.V..5.V < = VOUT..7 ISS Supply Current IOUT=mA 8 58 µa Istandby Standby Current VCE=VIN.. µa VOUT/ VIN RR Line Regulation Set VOUT+.5V < = VIN < = 5.V.. %/V Ripple Rejection f=khz, Ripple.Vp-p VIN=Set VOUT+.V, IOUT=mA (In case that VOUT < =.V, VIN=.V) V 8 db VIN Input Voltage.7.5 V VOUT/ Topt Temperature Coefficient C < = Topt < = 85 C ± Ilim Short Current Limit VOUT=V ma VCEH "H". V VCEL "L". V en Output Noise BW=Hz to khz, IOUT=mA µvrms The specification in is checked and guaranteed by design engineering at C < = Topt < = 85 C, unless otherwise noted. All of unit are tested and specified under load conditions such that Topt=5 C except for Detector Threshold Temperature Coefficient. ppm / C
7 RPx RPxxxB/D Topt=5 C Symbol Item Conditions Min. Typ. Max. Unit VOUT Topt=5 C C < = Topt < = 85 C VOUT>.V.99. V VOUT < =.V mv VOUT>.V V VOUT < =.V mv IOUT Output Current 5 ma VOUT/ IOUT Load Regulation ma < = IOUT < = 5mA mv VDIF Dropout Voltage IOUT=5mA.V < = VOUT<.5V.7..5V < = VOUT<.7V.5.8.7V < = VOUT<.V..8.V < = VOUT<.5V...5V < = VOUT<.V..5.V < = VOUT..7 ISS Supply Current IOUT=mA 8 58 µa Istandby Standby Current VCE=V.. µa VOUT/ VIN Line Regulation Set VOUT+.5V < = VIN < = 5.V.. %/V V RR Ripple Rejection f=khz, Ripple.Vp-p VIN=Set VOUT+.V, IOUT=mA (In case that VOUT < =.V, VIN=.V) 8 db VIN Input Voltage.7.5 V VOUT/ Topt Temperature Coefficient C < = Topt < = 85 C ± Ilim Short Current Limit VOUT=V ma IPD CE Pull-down Current. µa VCEH "H". V VCEL "L". V en Output Noise BW=Hz to khz, IOUT=mA µvrms RLOW Low Output Nch Tr. ON Resistance (of D version) VIN=.V, VCE=V Ω The specification in is checked and guaranteed by design engineering at C < = Topt < = 85 C, unless otherwise noted. All of unit are tested and specified under load conditions such that Topt=5 C except for Detector Threshold Temperature Coefficient. ppm / C 7
8 RPx TYPICAL APPLICATION VDD VOUT VOUT C RPx Series C CE GND (External Components) Ceramic Capacitor C.7µF MURATA GRM55BJ7KE8B 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 C with.7µf or more. If a tantalum capacitor is used, and its ESR (Equivalent Series Resistance) of C is large, the loop oscillation may result. Because of this, select C carefully considering its frequency characteristics. PCB Layout Make VDD and GND lines sufficient. If their impedance is high, noise pickup or unstable operation may result. Connect a capacitor C with a capacitance value as much as.7µf or more between VDD and GND pin, and as close as possible to the pins. Set external components, especially the output capacitor C, as close as possible to the ICs, and make wiring as short as possible. 8
9 RPx TEST CIRCUITS VDD VOUT C RPx Series V C VOUT IOUT CE GND C=Ceramic.7µF C=Ceramic.7µF Basic Test Circuit VDD VOUT VOUT A ISS C RPx Series C CE GND C=Ceramic.7µF C=Ceramic.7µF Test Circuit for Supply Current Pulse Generator VDD VOUT P.G. RPx Series C IOUT CE GND C=Ceramic.7µF Test Circuit for Ripple Rejection 9
10 RPx VDD VOUT VOUT C RPx Series C CE GND IOUTa IOUTb Test Circuit for Load Transient Response C=Ceramic.7µF C=Ceramic.7µF
11 RPx TYPICAL CHARACTERISTICS ) vs. Output Current (C=.7µF, C=.7µF, Topt=5 C). RPxx. RPx8x...8. VIN=.V. VIN=.V. VIN=.V VIN=.V VIN=.5V VIN=.8V VIN=.V VIN=.V VIN=.5V 5 RPx5x 5 VIN=.V VIN=.5V 5 ) vs. Input Voltage (C=.7µF, C=.7µF, Topt=5 C). RPxx. RPx8x IOUT=mA IOUT=mA IOUT=5mA IOUT=mA IOUT=mA IOUT=5mA 5 Input Voltage VIN (V) 5 Input Voltage VIN (V)
12 RPx RPx5x 5 IOUT=mA IOUT=mA IOUT=5mA 5 Input Voltage VIN (V) ) Supply Current vs. Input Voltage (C=.7µF, C=.7µF, Topt=5 C) 5 RPxx 5 RPx8x Supply Current ISS (µa) Supply Current ISS (µa) 5 Input Voltage VIN (V) 5 Input Voltage VIN (V) 5 RPx5x Supply Current ISS (µa) 5 Input Voltage VIN (V)
13 RPx ) vs. Temperature (IOUT=mA, C=.7µF, C=.7µF) RPxx VIN=.V Temperature Topt ( C) RPx8x VIN=.8V Temperature Topt ( C) RPx5x VIN=.V Temperature Topt ( C) 5) Supply Current vs. Temperature (IOUT=mA, C=.7µF, C=.7µF) RPxx VIN=.V RPx8x VIN=.8V Supply Current ISS (µa) 8 Supply Current ISS (µa) Temperature Topt ( C) Temperature Topt ( C)
14 RPx RPx5x VIN=.V Supply Current ISS (µa) Temperature Topt ( C) ) Dropout Voltage vs. Output Current (C=.7µF, C=.7µF) Dropout Voltage VDIF (V) RPxx 85 C 5 C - C Dropout Voltage VDIF (V) RPx8x 85 C 5 C - C Dropout Voltage VDIF (V) RPx5x 85 C 5 C - C
15 RPx 7) Dropout Voltage vs. Set (C=.7µF, C=.7µF) Dropout Voltage VDIF (V) IOUT=5mA IOUT=5mA IOUT=mA IOUT=mA 5 Set VREG (V) 8) Ripple Rejection vs. Input Bias Voltage (C=none, C=.7µF, Ripple=.Vp-p, Topt=5 C) Ripple Rejection RR (db) RPx8x IOUT=mA f=hz f=khz f=khz f=khz Input Voltage VIN (V) Ripple Rejection RR (db) RPx8x IOUT=mA f=hz f=khz f=khz f=khz Input Voltage VIN (V) 9) Ripple Rejection vs. Frequency (C=none, C=.7µF, Ripple=.Vp-p, Topt=5 C) Ripple Rejection RR (db) RPxx IOUT=mA IOUT=mA IOUT=5mA VIN=.V. Frequency f (khz) Ripple Rejection RR (db) RPx8x IOUT=mA IOUT=mA IOUT=5mA VIN=.8V. Frequency f (khz) 5
16 RPx Ripple Rejection RR (db) RPx5x IOUT=mA IOUT=mA IOUT=5mA VIN=.V. Frequency f (khz) ) Input Transient Response (IOUT=mA, tr=tf=5µs, C=none, C=.7µF, Topt=5 C) RPxx RPx8x Input Voltage Input Voltage VIN (V) Input Voltage Input Voltage VIN (V) RPx5x Input Voltage 5 Input Voltage VIN (V)
17 RPx ) Load Transient Response (tr=tf=.5µs, C=.7µF, C=.7µF, IOUT=5mA ma, Topt=5 C) RPxx 5 RPx8x Output Current 5mA ma Output Current 5mA ma RPx5x Output Current 5mA ma ) Load Transient Response (tr=tf=.5µs, C=.7µF, C=.7µF, IOUT=mA 5mA, Topt=5 C) RPxx Output Current ma 5mA RPx8x Output Current ma 5mA
18 RPx RPx5x Output Current ma 5mA ) Turn On Speed with CE pin (C=.7µF, C=.7µF, Topt=5 C) RPxx IOUT=mA RPxx IOUT=mA.5..5 VCE (V).5..5 VCE (V) RPxx IOUT=5mA RPx8x IOUT=mA.5..5 VCE (V) VCE (V)
19 RPx RPx8x IOUT=mA RPx8x IOUT=5mA VCE (V) VCE (V) RPx5x IOUT=mA 9 RPx5x IOUT=mA 9 VCE (V) VCE (V) RPx5x IOUT=5mA 9 VCE (V)
20 RPx ) Turn Off Speed with CE pin (D Version) (C=.7µF, C=.7µF, Topt=5 C) RPxD IOUT=mA RPxD IOUT=mA.5..5 VCE (V).5..5 VCE (V) RPxD IOUT=5mA RPx8D IOUT=mA.5..5 VCE (V) VCE (V) RPx8D IOUT=mA RPx8D IOUT=5mA VCE (V) VCE (V)
21 RPx RPx5D IOUT=mA 9 RPx5D IOUT=mA 9 VCE (V) VCE (V) RPx5D IOUT=5mA 9 VCE (V) ) Minimum Operating Voltage (C=.7µF, C=.7µF) Input Voltage VIN (V) Hatched area is available for.v output.
22 RPx ESR vs. Output Current When using these ICs, consider the following points: The relations between IOUT (Output Current) and ESR of an output capacitor are shown below. The conditions when the white noise level is under µv (Avg.) are marked as the hatched area in the graph. Measurement conditions Frequency Band : Hz to MHz Temperature : C to 85 C C, C :.7µF RPxx VIN=.V to.5v Topt=85 C RPx8x VIN=.V to.5v Topt=85 C Topt=- C Topt=- C ESR (Ω) ESR (Ω) RPx5x VIN=5.V to.5v Topt=85 C Topt=- C ESR (Ω)
23 PACKAGE INFORMATION PE-DFN(PLP)--7 DFN(PLP)- PACKAGE DIMENSIONS Unit: mm A. B.7±.5.5.8± ±.5 5.5±.5 -C.8.8±.5.±.5.5Min..Max..5±.5 Bottom View.5 M S AB S.5 S ) Tab in the parts have VDD or GND level. (They are connected to the back side of the IC.) Do not connect to other wires or land patterns. TAPING SPECIFICATION.±..± ±...75±..5±.5 8.±..5±..Max..±.. TR User Direction of Feed TAPING REEL DIMENSIONS REUSE REEL (EIAJ-RRM-8Bc) (reel=pcs).±. 9.±. ±.5 ±.8 ±
24 PACKAGE INFORMATION PE-DFN(PLP)--7 POWER DISSIPATION (DFN(PLP)-) 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 Environment Board Material Board Dimensions Standard Land Pattern Mounting on Board (Wind velocity=m/s) Glass cloth epoxy plastic (Double sided) mm mm.mm Copper Ratio Top side : Approx. 5%, Back side : Approx. 5% Through-hole φ.5mm pcs Measurement Result Power Dissipation Thermal Resistance Thermal Resistance (Topt=5 C, Tjmax=5 C) Standard Land Pattern mw θja=(5 5 C)/.W=5 C/W θjc=7 C/W 7 Power Dissipation PD(mW) 5 On Board Ambient Temperature ( C) Measurement Board Pattern Power Dissipation RECOMMENDED LAND PATTERN IC Mount Area (Unit : mm) -C (Unit: mm)
25 PACKAGE INFORMATION PE-SOT SOT--5 (SC-7A) PACKAGE DIMENSIONS Unit: mm.9±..9±. (.95) (.95) ± to..± Min. TAPING SPECIFICATION.. φ Max....±. TR User Direction of Feed TAPING REEL DIMENSIONS REUSE REEL (EIAJ-RRM-8Bc) (reel=pcs).±. 9.±. ±. ±.5 ±
26 PACKAGE INFORMATION PE-SOT POWER DISSIPATION (SOT--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--5) is substitution of SOT--.) Measurement Conditions Standard Land Pattern Environment Mounting on Board (Wind velocity=m/s) Board Material Glass cloth epoxy plastic (Double sided) Board Dimensions mm mm.mm Copper Ratio Top side : Approx. 5%, Back side : Approx. 5% Through-hole φ.5mm pcs Measurement Result (Topt=5 C, Tjmax=5 C) Standard Land Pattern Free Air Power Dissipation mw 5mW Thermal Resistance θja=(5 5 C)/.W=8 C/W C/W Power Dissipation PD(mW) 5 5 On Board Free Air Ambient Temperature ( C) Power Dissipation Measurement Board Pattern IC Mount Area Unit : mm RECOMMENDED LAND PATTERN.7 MAX (Unit: mm)
27 PACKAGE INFORMATION PE-SC-8AB-5 SC-8AB PACKAGE DIMENSIONS ±..±..9±..±..±. (.7).±. Unit: mm.5 ±...±. to..±..± TAPING SPECIFICATION.± ±..±.5..5±.5 8.±..75±...MAX..±. TR.±. User Direction of Feed TAPING REEL DIMENSIONS (reel=pcs).±. 9.±. ±. ± ±.8 8
28 PACKAGE INFORMATION PE-SC-8AB-5 POWER DISSIPATION (SC-8AB) 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=m/s) Board Material Glass cloth epoxy plactic (Double sided) Board Dimensions mm mm.mm Copper Ratio Top side : Approx. 5%, Back side : Approx. 5% Through-hole φ.5mm pcs Measurement Result (Topt=5 C,Tjmax=5 C) Standard Land Pattern Free Air Power Dissipation 8mW 5mW Thermal Resistance θja=(5 5 C)/.8W= C/W 7 C/W Power Dissipation PD(mW) On Board Free Air Ambient Temperature ( C) Power Dissipation Measurement Board Pattern IC Mount Area (Unit : mm) RECOMMENDED LAND PATTERN (Unit: mm)
29 MARK INFORMATION ME-RPK-8 RPK SERIES MARK SPECIFICATION DFN(PLP)-, : Product Code (refer to Part Number vs. Product Code), : Lot Number Part Number vs. Product Code RPKxxA Series RPKxxB Series RPKxxD Series Product Code Product Code Product Code Part Number Part Number Part Number RPKA R A RPKB T A RPKD V A RPKA R B RPKB T B RPKD V B RPKA R C RPKB T C RPKD V C RPK5A R D RPK5B T D RPK5D V D RPKA R E RPKB T E RPKD V E RPK7A R F RPK7B T F RPK7D V F RPK8A R G RPK8B T G RPK8D V G RPK8A5 R H RPK8B5 T H RPK8D5 V H RPK9A R J RPK9B T J RPK9D V J RPKA R K RPKB T K RPKD V K RPKA R L RPKB T L RPKD V L RPKA R M RPKB T M RPKD V M RPKA R N RPKB T N RPKD V N RPKA R P RPKB T P RPKD V P RPK5A R Q RPK5B T Q RPK5D V Q RPKA R R RPKB T R RPKD V R RPK7A R S RPK7B T S RPK7D V S RPK8A R T RPK8B T T RPK8D V T RPK8A5 R U RPK8B5 T U RPK8D5 V U RPK9A R V RPK9B T V RPK9D V V RPKA R W RPKB T W RPKD V W RPKA R X RPKB T X RPKD V X RPKA R Y RPKB T Y RPKD V Y RPKA R Z RPKB T Z RPKD V Z RPKA S A RPKB U A RPKD W A RPK5A S B RPK5B U B RPK5D W B RPKA S C RPKB U C RPKD W C RPK7A S D RPK7B U D RPK7D W D RPK8A S E RPK8B U E RPK8D W E RPK9A S F RPK9B U F RPK9D W F RPKA S G RPKB U G RPKD W G RPKA S H RPKB U H RPKD W H RPKA S J RPKB U J RPKD W J RPKA S K RPKB U K RPKD W K RPKA S L RPKB U L RPKD W L RPK5A S M RPK5B U M RPK5D W M RPKA S N RPKB U N RPKD W N RPK7A S P RPK7B U P RPK7D W P RPK8A S Q RPK8B U Q RPK8D W Q RPK9A S R RPK9B U R RPK9D W R RPK5A S S RPK5B U S RPK5D W S
30 MARK INFORMATION ME-RPN-8 RPN SERIES MARK SPECIFICATION SOT--5 (SC-7A) to : Product Code (refer to Part Number vs. Product Code) 5, 5 : Lot Number Part Number vs. Product Code RPNxxA Series RPNxxB Series RPNxxD Series Part Number Product Code Product Code Product Code Part Number Part Number RPNA H A RPNB H A RPND H A RPNA H B RPNB H B RPND H B RPNA H C RPNB H C RPND H C RPN5A H D RPN5B H D RPN5D H D RPNA H E RPNB H E RPND H E RPN7A H F RPN7B H F RPN7D H F RPN8A H G RPN8B H G RPN8D H G RPN8A5 H H RPN8B5 H H RPN8D5 H H RPN9A H J RPN9B H J RPN9D H J RPNA H K RPNB H K RPND H K RPNA H L RPNB H L RPND H L RPNA H M RPNB H M RPND H M RPNA H N RPNB H N RPND H N RPNA H P RPNB H P RPND H P RPN5A H Q RPN5B H Q RPN5D H Q RPNA H R RPNB H R RPND H R RPN7A H S RPN7B H S RPN7D H S RPN8A H T RPN8B H T RPN8D H T RPN8A5 H U RPN8B5 H U RPN8D5 H U RPN9A H V RPN9B H V RPN9D H V RPNA H W RPNB H W RPND H W RPNA H X RPNB H X RPND H X RPNA H Y RPNB H Y RPND H Y RPNA H Z RPNB H Z RPND H Z RPNA J A RPNB J A RPND J A RPN5A J B RPN5B J B RPN5D J B RPNA J C RPNB J C RPND J C RPN7A J D RPN7B J D RPN7D J D RPN8A J E RPN8B J E RPN8D J E RPN9A J F RPN9B J F RPN9D J F RPNA J G RPNB J G RPND J G RPNA J H RPNB J H RPND J H RPNA J J RPNB J J RPND J J RPNA J K RPNB J K RPND J K RPNA J L RPNB J L RPND J L RPN5A J M RPN5B J M RPN5D J M RPNA J N RPNB J N RPND J N RPN7A J P RPN7B J P RPN7D J P RPN8A J Q RPN8B J Q RPN8D J Q RPN9A J R RPN9B J R RPN9D J R RPN5A J S RPN5B J S RPN5D J S
31 MARK INFORMATION ME-RPQ-8 RPQ SERIES MARK SPECIFICATION SC-8AB, : Product Code (refer to Part Number vs. Product Code), : Lot Number Part Number vs. Product Code RPQxxA Series RPQxxB Series RPQxxD Series Product Code Product Code Product Code Part Number Part Number Part Number RPQA A A RPQB F A RPQD L A RPQA A B RPQB F B RPQD L B RPQA A C RPQB F C RPQD L C RPQ5A A D RPQ5B F D RPQ5D L D RPQA A E RPQB F E RPQD L E RPQ7A A F RPQ7B F F RPQ7D L F RPQ8A A G RPQ8B F G RPQ8D L G RPQ8A5 A H RPQ8B5 F H RPQ8D5 L H RPQ9A A J RPQ9B F J RPQ9D L J RPQA A K RPQB F K RPQD L K RPQA B A RPQB G A RPQD M A RPQA B B RPQB G B RPQD M B RPQA B C RPQB G C RPQD M C RPQA B D RPQB G D RPQD M D RPQ5A B E RPQ5B G E RPQ5D M E RPQA B F RPQB G F RPQD M F RPQ7A B G RPQ7B G G RPQ7D M G RPQ8A B H RPQ8B G H RPQ8D M H RPQ8A5 B J RPQ8B5 G J RPQ8D5 M J RPQ9A B K RPQ9B G K RPQ9D M K RPQA C A RPQB H A RPQD N A RPQA C B RPQB H B RPQD N B RPQA C C RPQB H C RPQD N C RPQA C D RPQB H D RPQD N D RPQA C E RPQB H E RPQD N E RPQ5A C F RPQ5B H F RPQ5D N F RPQA C G RPQB H G RPQD N G RPQ7A C H RPQ7B H H RPQ7D N H RPQ8A C J RPQ8B H J RPQ8D N J RPQ9A C K RPQ9B H K RPQ9D N K RPQA D A RPQB J A RPQD P A RPQA D B RPQB J B RPQD P B RPQA D C RPQB J C RPQD P C RPQA D D RPQB J D RPQD P D RPQA D E RPQB J E RPQD P E RPQ5A D F RPQ5B J F RPQ5D P F RPQA D G RPQB J G RPQD P G RPQ7A D H RPQ7B J H RPQ7D P H RPQ8A D J RPQ8B J J RPQ8D P J RPQ9A D K RPQ9B J K RPQ9D P K RPQ5A E A RPQ5B K A RPQ5D Q A
*1. Attention should be paid to the power dissipation of the package when the output current is large.
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