ME6212. High Speed LDO Regulators, High PSRR, Low noise, ME6212 Series. General Description. Typical Application. Package

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High Speed LDO Regulators, High PSRR, Low noise, Series General Description The series are highly accurate, low noise, CMOS LDO Voltage Regulators. Offering low output noise, high ripple rejection ratio, low dropout and very fast turn-on times, the series is ideal for today s cutting edge mobile phone. Internally the includes a reference voltage source, error amplifiers, driver transistors, current limiters and phase compensators. The s current limiters' foldback circuit also operates as a short protect for the output current limiter and. the output pin. The series is also fully compatible with low ESR ceramic capacitors, Features Maximum Output Current: 350mA (V IN =4.3V,V OUT =3.3V) : 100mV@ I OUT =100mA Operating Voltage Range: 2V~6.0V Highly Accuracy: ±2% Low Power Consumption: 50uA(TYP.) Standby Current: 0.1uA(TPY.) High Ripple Rejection: @1KHz (C33) Low output noise: 50uVrms : 0.05%(TYP.) reducing cost and improving output stability. This high level of output stability is maintained even during frequent load fluctuations, due to the excellent transient response performance and high PSRR achieved across a broad range of frequencies.the CE function allows the output of regulator to be turned off, resulting in greatly reduced power consumption. Package Typical Application Mobile phones Cordless phones, radio communication equipment Portable games Cameras, Video cameras Reference voltage sources Battery powered equipment 5-pin SOT23-5 1

Typical Application Circuit Selection Guide X X X XXG Environment mark Package: M5--SOT23-5 Function Product Type Product Series Microne product series Output voltage Package C12M5G 1.2V SOT23-5 C15M5G 1.5V SOT23-5 C18M5G 1.8V SOT23-5 C21M5G 2.1V SOT23-5 C25M5G 2.5V SOT23-5 C28M5G 2.8V SOT23-5 C30M5G 3.0V SOT23-5 C33M5G 3.3V SOT23-5 C50M5G 5.0V SOT23-5 2

Pin Configuration (SOT23-5) VOUT NC 5 4 1 2 3 VIN VSS CE Pin Assignment Pin Number SOT23-5 Pin Name Functions 1 V IN Power Input 2 V SS Ground 3 CE ON / OFF Control 4 NC No Connect 5 V OUT Output Block Diagram 3

Absolute Maximum Ratings Parameter Symbol Ratings Units Input Voltage V IN 6.5 V Output Current I OUT 500 ma V OUT Vss-0.3~V IN +0.3 V CE Pin Voltage V CE Vss-0.3~V IN +0.3 V Power Dissipation SOT23-5 P D 300 mw Operating Temperature Range T OPR -40~+150 Storage Temperature Range T STG -40~+150 Electrical Characteristics C12 (,V CE = V IN,C IN= C L =1uF,Ta=25 O C,unless otherwise noted) X 1.02 Maximum Output Current I OUTMAX 250 ma, V 8 mv V DIF1 I OUT =100mA 280 mv V DIF2 I OUT =200mA 500 mv Supply Current I SS 50 μa Stand-by Current I CEL V CE =0V 0.1 μa V IN V OUT V OUT +1V V IN 6.5V 0.03 %/V CE High Voltage VCEH Start up 1.0 V Output noise EN,300Hz~50kHz 50 uvrms Ripple Rejection Rate PSRR V IN = [V OUT +1]V +1Vp-pAC I OUT =100mA, C18 (,V CE = V IN,C IN= C L =1uF,Ta=25 O C, unless otherwise noted) X 1.02 V Maximum Output Current I OUTMAX 250 ma, 9 mv V DIF1 I OUT =100mA 200 mv V DIF2 I OUT =200mA 400 mv Supply Current I SS 40 μa 4

Stand-by Current I CEL V CE =0V 0.1 μa V IN V OUT V OUT +1V V IN 6.5V 0.05 %/V CE High Voltage VCEH Start up 1.0 V Output noise EN,300Hz~50kHz 50 uvrms Ripple Rejection Rate PSRR V IN = [V OUT +1]V+1Vp-pAC I OUT =100mA, C25 (,V CE = V IN,C IN= C L =1uF,Ta=25 O C, unless otherwise noted) X 1.02 V Maximum Output Current I OUTMAX 300 ma, 9 mv V DIF1 I OUT =100mA 110 mv V DIF2 I OUT =200mA 220 mv Supply Current I SS 50 μa Stand-by Current I CEL V CE =0V 0 μa V IN V OUT V OUT +1V V IN 6.5V 0.04 %/V CE High Voltage VCEH Start up 1.0 V Output noise EN,300Hz~50kHz 50 uvrms Ripple Rejection Rate PSRR V IN =[V OUT +1]V I OUT =100mA, +1Vp-pAC I OUT =200mA, Short-circuit Current I SHORT, V CE =V IN, V OUT =0V 150 ma C28 (,V CE = V IN,C IN= C L =1uF,Ta=25 O C, unless otherwise noted) X 1.02 V Maximum Output Current I OUTMAX 350 ma, 7 mv V DIF1 I OUT =100mA 110 mv 5

V DIF2 I OUT =200mA 220 mv Supply Current I SS 60 μa Stand-by Current I CEL V CE =0V 0 μa V IN V OUT V OUT +1V V IN 6.5V 0.04 %/V CE High Voltage VCEH Start up 1.0 V Output noise EN,300Hz~50kHz 50 uvrms Ripple Rejection Rate PSRR V IN =[V OUT +1]V I OUT =100mA, +1Vp-pAC I OUT =200mA, Short-circuit Current I SHORT, V CE =V IN, V OUT =0V 120 ma C30 (,V CE = V IN,C IN= C L =1uF,Ta=25 O C, unless otherwise noted) X 1.02 Maximum Output Current I OUTMAX 350 ma, V 8 mv V DIF1 I OUT =100mA 100 mv V DIF2 I OUT =200mA 210 mv Supply Current I SS 60 μa Stand-by Current I CEL V CE =0V 0 μa V IN V OUT V OUT +1V V IN 6.5V 0.05 %/V CE High Voltage VCEH Start up 1.0 V Output noise EN,300Hz~50kHz 50 uvrms Ripple Rejection Rate PSRR V IN = [V OUT +1]V +1Vp-pAC I OUT =100mA, I OUT =200mA, Short-circuit Current I SHORT, V CE =V IN, V OUT =0V 150 ma 6

C33 (,V CE = V IN,C IN= C L =1uF,Ta=25 O C, unless otherwise noted) X 1.02 Maximum Output Current I OUTMAX 350 ma, V 9 mv V DIF1 I OUT =100mA 120 mv V DIF2 I OUT =200mA 260 mv Supply Current I SS 60 μa Stand-byCurrent I CEL V CE =0V 0.1 μa V IN V OUT V OUT +1V V IN 6.5V 0.05 %/V CE High Voltage VCEH Start up 1.0 V Output noise EN,300Hz~50kHz 50 uvrms Ripple Rejection Rate Short-circuit Current PSRR I SHORT V IN = [V OUT +1]V +1Vp-pAC I OUT =10mA, I OUT =100m A, I OUT =200m A,, V CE =V IN, V OUT =0V C50 (,V CE = V IN,C IN= C L =1uF,Ta=25 O C, unless otherwise noted) 180 ma X 1.02 Maximum Output Current I OUTMAX 350 ma, V 8 mv V DIF1 I OUT =100mA 100 mv V DIF2 I OUT =200mA 200 mv Supply Current I SS 50 μa Stand-by Current I CEL V CE =0V 0 μa V IN V OUT V OUT +1V V IN 6.5V 0.05 %/V CE High Voltage VCEH Start up 1.0 V CE Low Voltage VCEL Shut down 0.7 V Output noise EN,300Hz~50kHz 50 uvrms Ripple Rejection Rate PSRR V IN = [V OUT +1]V +1Vp-pAC I OUT =100mA, 7

I OUT =200mA, Short-circuit Current I SHORT, V CE =V IN, V OUT =0V 130 ma Note : 1. :Specified 2. :Effective ( le. The output voltage when +1.0V is provided at the Vin pin while maintaining a certain Iout value.) 3.V DIF :V IN1 V IN1 :The input voltage when appears as input voltage is gradually decreased. =A voltage equal to 98% of the output voltage whenever an amply stabilized Iout {+1.0V} is input. Type Characteristics (1))Input VoltageVS.(Ta = 25 C) C33M5G C30M5G 3.8 Input Voltage VS. 3.5 Input Voltage VS. 3.4 (V) 3 2.6 2.2 1.8 50mA 100mA 1mA (V) 3 2.5 2 50mA 100mA 1mA 1.4 1.5 2 2.5 3 3.5 4 4.5 5 5.5 6 6.5 1.5 1.5 2 2.5 3 3.5 4 4.5 5 5.5 6 6.5 C28M5G C18M5G (V) Input Voltage VS. 3.2 2.8 2.4 2 1.6 1.2 1mA 50mA 100mA 1.5 2.5 3.5 4.5 5.5 6.5 (V) Input Voltage VS. 1.9 1.8 1.7 1.6 1.5 1.4 1.3 1.2 1.1 1mA 50mA 100mA 1.5 2.5 3.5 4.5 5.5 6.5 8

(2)Input Voltage VS. Supply Current(Ta = 25 C) C33M5G C30M5G 120 Input Voltage VS.Supply Current 120 Input Voltage VS.Supply Current Supply Current(uA) 100 80 60 40 20 Supply Current(uA) 100 80 60 40 20 0 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 6 6.5 0 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 6 6.5 C28M5G C18M5G Supply Current(uA) 120 100 80 60 40 20 0 Input Voltage VS.Supply Current 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 6 6.5 Supply Current(uA) Input Voltage VS.Supply Current 60 50 40 30 20 10 0 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 6 6.5 9

Packaging Information SOT23-5 DIM Millimeters Inches Min Max Min Max A 0.9 1.45 0.0354 0.00 A1 0 0.15 0 0.0059 A2 0.9 1.3 0.0354 0.0511 B 0.2 0.5 0.0078 0.0196 C 0.09 0.26 0.0035 0.0102 D 2.7 3.10 0.1062 0.1220 E 2.2 3.2 0.0866 0.1181 E1 1.30 1.80 0.0511 0.0708 e 0.95REF 0.0374REF e1 1.90REF 0.0748REF L 0.10 0.60 0.0039 0.0236 a 0 0 0 30 0 0 0 30 0 10