PQ05SZ5 SHARP | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 7

Technical content

“ In the absence of confirmation by device specification sheets,SHARP takes no responsibility for any defects that may occur in equipment using any SHARP devices shown in catalogs,data books,etc.Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device. ” Low Power-Loss Voltage Regulators PQ05SZ5/PQ05SZ1 Series PQ05SZ5/PQ05SZ1 Series n Features \ Low power-loss (Dropout voltage : MAX. 0.5V) \ Surface mount type package (Equivalent to SC-63) \ Built-in a function to prevent reverse voltage between input and output The diode to prevent reverse voltage between input and output is not necessary. (When V O-I=<13V) n Applications \ Portable equipment \` Notebook PC n Outline Dimensions (Unit : mm) Low Power-Loss Voltage Regulators (Built-in Reverse Voltage Protection Function) Parameter Input voltage Input-output reverse voltage Output current Power dissipation Junction temperature Operating temperature Storage temperature Soldering temperature *1 All are open except GND and applicable terminals. *2 With imfinite heat sink. * Over heat protection may operate at Tj>=125˚C n Absolute Maximum Ratings (Ta=25˚C, XX =05,09,12) Symbol Rating Unit V IN V O -i IO PD T j T opr T stg T sol 150 -20 to +80 -40 to +150 260 V V A W Conditions V IN=0V Refer to Fig. 4*2 For 10s PQ XX SZ5/51 0.5 PQ XX SZ1/11 1.0 (XX :05,09,12) 05SZ5 6.6MAX 9.7MAX 2.5MIN 0.7MAX 5.2±0.5 2.3±0.5 0.5 +0.2 -0.1 5.5±0.5 2-(2.54) (0.5) (0.5) (0.9) (1.7) Specific IC Internal connection diagram (0to0.25)

1 DC input (VIN)

2 DC output (VO )

3 GND

Heat sink is common to 2 (V O ). PQ05SZ5 PQ05SZ51 PQ05SZ1 PQ05SZ11 Output voltage precision:±5% Output voltage precision:±2.5% Output voltage precision:±5% Output voltage precision:±2.5% n Model Line-ups 5V output 0.5A output PQ09SZ5 PQ09SZ51 PQ09SZ1 PQ09SZ11 9V output PQ12SZ5 PQ12SZ51 PQ12SZ1 PQ12SZ11 12V output 1A output

  • Please refer to the chapter“ Handling Precautions ”.

Low Power-Loss Voltage Regulators PQ05SZ5/PQ05SZ1 Series Parameter Symbol Conditions V O R egL R egI T C V O RR V i-O Iq Load regulation Line regulation Temperature coefficient of output voltage Ripple rejection Dropout voltage Quiescent current UnitMAX.TYP.MIN. PQ05SZ1/5 PQ09SZ1/5 PQ12SZ1/5 PQ05SZ11/51 PQ09SZ11/51 PQ12SZ11/51 PQ XX SZ1/11 PQ XX SZ5/51 4.75 8.55 11.4 4.88 8.78 11.7 IO =5mA, *5 IO =5mA, T j=0 to 125˚C,*6 Refer to Fig. 2 *7 IO =0.5A IO =0.3A IO =0A, *6 5.0 9.0 12.0 5.0 9.0 12.0 0.2 0.1 ±0.01 0.2 4.0 5.25 9.45 12.6 5.12 9.22 12.3 2.0 2.5 0.5 10.0 Output voltage n Electrical Characteristics *3 PQxxSZ1/11 Series:Io=0.5A PQxxSZ5/51 Series:Io=0.3A *4 PQ05SZ1/11 :VIN=7V, Io=5mA to 1.0A PQ05SZ5/51 :VIN=7V, Io=5mA to 0.5A PQ09SZ1/11 :VIN=11V, Io=5mA to 1.0A PQ09SZ5/51 :VIN=11V, Io=5mA to 0.5A PQ12SZ1/11 :VIN=14V, Io=5mA to 1.0A PQ12SZ5/51 :VIN=14V, Io=5mA to 0.5A *5 PQ05SZ1/11/5/51:VIN=6 to 16V PQ09SZ1/11/5/51:VIN=10 to 20V PQ12SZ1/11/5/51:VIN=13 to 23V *6 PQ05SZ1/11/5/51:VIN=7V PQ09SZ1/11/5/51:VIN=11V PQ12SZ1/11/5/51:VIN=14V *7 Input voltage shall be the value when output voltage is 95% in comparison with the initial value. V %/˚C dB V mA V IN=7V V IN=11V V IN=14V V IN=7V V IN=11V V IN=14V Fig.3 Overcurrent Protection Characteristics(Typical Value) Fig.2 Test Circuit of Ripple Rejection Relative output voltage (%) Output current IO (A) 100 PQxxSZ5/51 PQxxSZ1/11 l2l1 V ei V IN IO eOR L 0.33µF 47µF f=120Hz (sine wave) ei=0.5Vrms V IN= 7V (PQ05SZ1/11/5/51) V IN=11V (PQ09SZ1/11/5/51) V IN=14V (PQ12SZ1/11/5/51) IO =0.3A RR=20 log (ei/eo) l2l1 A V A V IN Iq IO V O R L0.33µF 47µF Fig.1 Test Circuit

Low Power-Loss Voltage Regulators PQ05SZ5/PQ05SZ1 Series -25 0 +50 -50 25 50 75 100 125 V IN=7V IO =5mA Output voltage deviation ΔV O (mV) Junction temperature Tj (˚C) Fig.4 Power Dissipation vs. Ambient Temperature Fig.6 Output Voltage Deviation vs. Junction Temperature (PQ09SZ1/PQ09SZ11/PQ09SZ5/PQ09SZ51) Fig.7 Output Voltage Deviation vs. Junction Temperature (PQ12SZ1/PQ12SZ11/PQ12SZ5/PQ12SZ51) Fig.5 Output Voltage Deviation vs. Junction Temperature (PQ05SZ1/PQ05SZ11/PQ05SZ5/PQ05SZ51) +100 -100Output voltage deviation ΔV O (mV) Junction temperature Tj (˚C) -25 0 25 50 75 100 125 V IN=11V IO =5mA +100 -100 Output voltage deviation ΔV O (mV) Junction temperature Tj (˚C) -25 0 25 50 75 100 125 V IN=14V IO =5mA Fig.8 Output Voltage vs. Input Voltage (PQ05SZ1/PQ05SZ11) Fig.9 Output Voltage vs. Input Voltage (PQ05SZ5/PQ05SZ51) Note) Oblique line portion:Overheat protection may operate in this area. /,/, /,/, /,/,

10 With infinite heat sink

Power dissipation PD (W) Ambient temperature Ta (˚C) -20 0 20 40 60 80 100 PD 7Output voltage VO (V) Input voltage VIN (V) T j=25˚C 1234 56789 1 00 R L =∞ R L =20Ω R L =10Ω T j=25˚C R L =∞ R L =10Ω R L =5Ω Output voltage VO (V) Input voltage VIN (V) 123456789 1 00

Low Power-Loss Voltage Regulators PQ05SZ5/PQ05SZ1 Series Output voltage VO (V) Input voltage VIN (V) 0 5 10 15 20 T j=25˚C R L =∞ R L =24Ω R L =12Ω Junction temperature Tj (˚C) Dropout voltage Vi-O (V) -25 0 0.2 0.1 0.3 0.4 0.5 0.6 25 50 75 100 125 IO =0.5A IO =0.4A Io=0.3A IO =0.2A IO =0.1A Output voltage VO (V) Input voltage VIN (V) 0 5 10 15 200 T j=25˚C R L =∞ R L =24Ω R L =48Ω Junction temperature Tj (˚C) Dropout voltage Vi-O (V) -25 0 0.2 0.1 0.3 0.4 0.5 0.6 25 50 75 100 125 IO =1.0A IO =0.75A IO =0.50A IO =0.25A Fig.10 Output Voltage vs. Input Voltage (PQ09SZ1/PQ09SZ11) Fig.12 Output Voltage vs. Input Voltage (PQ12SZ1/PQ12SZ11) Fig.14-a Dropout Voltage vs. Junction Temperature (PQ05SZ5/51 Series) Fig.13 Output Voltage vs. Input Voltage (PQ12SZ5/PQ12SZ51) Fig.14-b Dropout Voltage vs. Junction Temperature (PQ05SZ1/11 Series) Fig.11 Output Voltage vs. Input Voltage (PQ09SZ5/PQ09SZ51) T j=25˚C R L =∞ R L =18Ω R L =9Ω Output voltage VO (V) Input voltage VIN (V) 0 5 10 15 Output voltage VO (V) Input voltage VIN (V) 0 5 10 15 20 T j=25˚C R L = R L =36Ω R L =18Ω T j=25˚C R L =∞ R L =36Ω R L =18Ω

Low Power-Loss Voltage Regulators PQ05SZ5/PQ05SZ1 Series Input voltage VIN (V) Circuit operating current IBIAS (mA) T j=25˚C R L =∞ R L =5Ω R L =10Ω 123456789 1 0 0 5 10 15 20 T j=25˚C R L =∞ R L =20Ω R L =10Ω Input voltage VIN (V) Circuit operating current IBIAS (mA) Fig.15 Circuit Operating Current vs. Input Voltage (PQ05SZ1/PQ05SZ11) Fig.17 Circuit Operating Current vs. Input Voltage (PQ09SZ1/PQ09SZ11) Fig.19 Circuit Operating Current vs. Input Voltage (PQ12SZ1/PQ12SZ11) Fig.18 Circuit Operating Current vs. Input Voltage (PQ09SZ5/PQ09SZ51) Fig.20 Circuit Operating Current vs. Input Voltage (PQ12SZ5/PQ12SZ51) Fig.16 Circuit Operating Current vs. Input Voltage (PQ05SZ5/PQ05SZ51) Input voltage VIN (V) Circuit operating current IBIAS (mA) 0 5 10 150 T j=25˚C R L =∞ R L =9Ω R L =18Ω Input voltage VIN (V) Circuit operating current IBIAS (mA) 0 5 10 15 20 T j=25˚C R L =∞ R L =36Ω R L =18Ω Input voltage VIN (V) Circuit operating current IBIAS (mA) 0 5 10 15 20 T j=25˚C R L =∞ R L =12Ω R L =24Ω Input voltage VIN (V) Circuit operating current IBIAS (mA) 0 5 10 15 20 T j=25˚C R L =∞ R L =48Ω R L =24Ω

Low Power-Loss Voltage Regulators PQ05SZ5/PQ05SZ1 Series Junction temperature Tj (˚C) Quiescent current Iq (mA) -20 0 25 50 75 100 125 V IN=7V (PQ05SZ1/PQ05SZ11 ) =11V (PQ09SZ1/PQ09SZ11 ) =14V (PQ12SZ1/PQ12SZ11 ) IO =0A Ripple rejection RR (dB) Input ripple frequency f (kHz) T j=25˚C RR=20log (ei/e0) IO =0.3A ei=0.5Vrms (sine wave) 0.1 0.5 1 5 10 50 100 V IN=7V (PQ05SZ1/11 ) =11V (PQ09SZ1/11 ) =14V (PQ12SZ1/11 ) PQ05SZ1/11 PQ09SZ1/11 PQ12SZ1/11 Fig.21 Quiescent Current vs. Junction Temperature (PQ05SZ1/PQ05SZ11/PQ09SZ1/PQ09SZ11/PQ12SZ1/ PQ12SZ11) Fig.23 Ripple Rejection vs. Input Ripple Frequency (PQ05SZ5/PQ05SZ51/PQ09SZ5/PQ09SZ51/PQ12SZ5/ PQ12SZ51) Fig.25 Ripple Rejection vs. Output Current (PQ05SZ5/51/ PQ09SZ5/51/ PQ12SZ5/51) Fig.24 Ripple Rejection vs. Output Current (PQ05SZ1/11/ PQ09SZ1/11/ PQ12SZ1/11) Fig.22 Ripple Rejection vs. Input Ripple Frequency (PQ05SZ1/PQ05SZ11/PQ09SZ1/PQ09SZ11/PQ12SZ1/ PQ12SZ11) IO =0.3A ei=0.5Vrms (sine wave) Ripple rejection RR (dB) Input ripple frequency f (kHz) T j=25˚C RR=20log(ei/e0) 0.1 0.5 1 5 10 50 100 V IN=7V (PQ05SZ5/51 ) =11V (PQ09SZ5/51 ) =14V (PQ12SZ5/51 ) PQ05SZ5/51 PQ09SZ5/51 PQ12SZ5/51 Output current IO (A) Ripple rejection RR (dB) 0.50 1.0 PQ05SZ1/11 PQ09SZ1/11 PQ12SZ1/11 T j=25˚C f=120Hz ei=0.5Vrms (sine wave) V IN=7V (PQ05SZ1/11 ) =11V (PQ09SZ1/11 ) =14V (PQ12SZ1/11 ) Output current IO (A) Ripple rejection RR (dB) 0.50 1.0 PQ05SZ5/51 PQ09SZ5/51 PQ12SZ5/51 T j=25˚C f=120Hz ei=0.5Vrms (sine wave) V IN=7V (PQ05SZ5/51 ) =11V (PQ09SZ5/51 ) =14V (PQ12SZ5/51 ) Fig.26 Input-Output Reverse Current vs. Input-Output Reverse Voltage Input-output reverse current IO-i (OUT)(mA) Input-output reverse voltage IO-i (V) 5 1 01 52 0 PQ05SZ1/PQ05SZ11 PQ05SZ5/PQ05SZ51 PQ09SZ1/PQ09SZ11 PQ09SZ5/PQ09SZ51 PQ12SZ1/PQ12SZ11 PQ12SZ5/PQ12SZ51 V o-i V O Io-i V IN GND A

Low Power-Loss Voltage Regulators PQ05SZ5/PQ05SZ1 Series Power dissipation PD max (W) Cu area (mm 2) T a=25˚C 10 2 3 5 7 2 3 5 7 1000100 0.3 0.5 0.7 1.0 3.0 2.0 5.0 7.0 Cu area740mm 2 Cu area 180mm 2 Cu area 36mm 2 Power dissipation PD (W) Ambient temperature Ta (˚C) -20 0 1.00 2.00 3.00 2.73 2.26 1.48 0.90 4.00 25 50 75 100 125 Fig.27 Power Dissipation vs. Ambient Temperature (Typical Value) Fig.28 Power Dissipation vs. Cu Area PWB Material : Glass-cloth epoxy resin Size : 50X50X1.6mm Cu thickness : 35µm PWB Cu 3 Sleeve-packaged products Standard type PQ05SZ5 Series PQ05SZ1 Series n Model Line-ups for Tape-packaged Products Tape-packaged products High-precision output type PQ05SZ51 Series PQ05SZ11 Series Standard type PQ05SZ5T Series PQ05SZ1T Series High-precision output type PQ05SZ5U Series PQ05SZ1U Series Output current 0.5A output 1.0A output