PQ035ZN01ZPH SHARP | Alldatasheet
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Technical content
Notice The content of data sheet is subject to change without prior notice. 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 device specification sheets before using any SHARP device. ■ Features Outline Dimensions Lead finish:Lead-free solder plating (Composition: Sn2Cu)
Applications
Product mass:(0.2g) (Unit : mm) Sheet No.: OP07008 Low Voltage Operation,Compact Surface Mount type Low Power-Loss Voltage Regulator 1.Low voltage output O=0.8 to 1.2V) 2.Low voltage operation: VIN(MIN)=1.7V 3.Output current : 1A 4.Built-in overcurrent and overheat protection functions 5.Conform to Flow Soldering SC-63 package 6.Ceramic capacitor compatible 7.RoHS directive compliant Parameter Symbol Rating Unit V VInput voltage Power dissipation Junction temperature 150 Operating temperature -40 to +85 Storage temperature -40 to +150 Soldering temperature 260(10s) 5.5 Absolute Maximum Ratings (Ta=25°C) Bias supply voltage Output current *1 All are open except GND and applicable terminals. *2 PD:With infinite heat sink Output voltage adjustment (Vadj) GND Specific IC DC input (VIN) Bias power supply (VB) DC output (VO) Epoxy resin ( ) : Typical dimensions A (0.3) (1.7)(0.9) (0.3) 035ZN01 1 2 4 5 6.6MAX. 2.5MIN. 9.7MAX. 5.2±0.5 5.5±0.5 2.1±0.5 (0~0.25) 0.3 +0.2 -0.1 4-(1.27) 0.7 MAX. 1.AV equipment 2.OA equipment H Lead finish identification mark *1 Output adjustment terminal voltage Tsol Tstg Topr Tj PD IO VB VIN V5Vadj There is case that over heat protection function operates at the temperature Tj=125°C to 150°C,this item cannot be used in this temperature range.
Sheet No.: OP07008
Electrical Characteristics
V dB Parameter Output voltage Load regulation Line regulation Ripple rejection Symbol Conditions MIN. MAX. Unit - 0.2 0.5 ±0.5 RR2 Input voltage -Refer to Fig.3 - 1.5 V PQ035ZN01ZPH Unless otherwise specified,condition shall be VIN=1.8V,VB=3.3V,VO=1.2V(R1=1kΩ),IO=0.5A,Ta=25°C VIN VO RegL IO=5mA to 1A RegI VIN=1.7V to 5.5V,VB=2.35 to 7V , IO=5mA Temperature coefficient of reference voltageTCVref Tj=0 to +125°C, IO=5mA 0.3 IB mABias power supply input current - 65 1.7 - 5.5 2.35 - 7.0Bias supply voltage VB V 0.7 RR1 Refer to Fig.2 dB Fig.1 Test Circuit Fig.2 Test Circuit for Ripple Rejection (1) 0.8V≤VO≤1.2V 1.2V<VO≤3.5V VO+0.5 5.5- 0.8 - 3.5 V Reference voltage Vref - 0.57 0.63 V0.6 TYP. A A V V VO=Vref × (1+R2/R1) [R1=1kΩ, Vref≒ 0.6V] VO VIN 1μF VB IB 1kΩ Vref 10μF IO RL 1μF f=120Hz(sine wave) ei(rms)=0.1V V IN=1.8V VB=3.3V VO=1.2V(R1=1kΩ) IO=0.3A RR=20log(ei(rms)/eo(rms)) 1μF VB 1kΩ Vref 10μF IO RL 1μF ei VIN 1.8V 3.3V eo IO=0A
Sheet No.: OP07008 PQ035ZN01ZPH Fig.5 Overcurrent Protection Characteristics Output voltage VO (V) Output current IO (A) Fig.4 Power Dissipation vs. Ambient Temperature Fig.3 Test Circuit for Ripple Rejection (2) -40 -20 0 25 50 8575 125100 150 PD:With infinite heat sink Ambient temperature Ta (°C) Note) Oblique line portion:Overheat protection may operate in this area. Power dissipation PD (mW) f=120Hz(sine wave) eb(rms)=0.1V V IN=1.8V VB=3.3V VO=1.2V(R1=1kΩ) IO=0.3A RR=20log(eb(rms)/eo(rms)) 0.2 0.6 0.8 0.4 1.0 1.2 VB=3.3V CIN=1μF CO=10μF R1=R2=1kΩ Ta=Room temp. VIN=1.8V VIN=2.5V VIN=3.3V VIN=5V 0.595 0.596 0.597 0.598 0.599 0.600 0.601 0.602 -50 -25 0 25 50 75 100 125 150 VIN=1.8V VB=3.3V IO=0.5A CIN=1μF CO=10μF R1=R2=1kΩ Fig.6 Reference Voltage vs. Ambient Temperature Ambient temperature Ta (°C) -50 -25 0 25 50 75 100 125 150 -0.8 -0.6 -0.4 -0.2 0.2 VIN=1.8V VB=3.3V IO=5mA~1A CIN=1μF CO=10μF R1=R2=1kΩ Fig.7 Load Regulation vs. Ambient Temperature Ambient temperature Ta (°C) Load regulation RegL(%) 1μF VB 1kΩ Vref 10μF IO RL 1μF eb VIN 1.8V 3.3V eo Rererance voltage Vref (V)
Sheet No.: OP07008 PQ035ZN01ZPH -50 -25 0 25 50 75 100 125 150 0.1 0.2 0.3 0.4 0.5 0.6 0.7 VIN=1.7~5.5V VB=2.35~7V IO=5mA CIN=1μF CO=10μF R1=R2=1kΩ Fig.8 Line Regulation vs. Ambient Temperature Ambient temperature Ta (°C) Line regulation RegI (%) -50 -25 0 25 50 75 100 125 150 0.75 0.8 0.85 0.9 0.95 VIN=1.8V VB=3.3V IO=0A CIN=1μF CO=10μF R1=R2=1kΩ Fig.9 Bias Inflow Current vs. Ambient Temperature Ambient temperature Ta (°C) Bias inflow current IB (mA) -50 -25 0 25 50 75 100 125 150 1.5 1.6 1.7 1.8 1.9 2.1 2.2 2.3 2.4 2.5 VIN=1.8V VB=3.3V RL=Short C IN=1μF CO=10μF Fig.10 Short circuit Current vs. Ambient Temperature Short circuit current IS (A) Ambient temperature Ta (°C) 0 1.0 2.0 3.0 4.0 0.2 0.4 0.6 0.8 1.0 1.2 1.3 VB=3.3V CIN=1μF CO=10μF R1=R2=1kΩ Ta=Room temp. IO=0A IO=0.5A(RL=2.4Ω) IO=1A(RL=1.2Ω) Fig.11 Output Voltage vs. Input VoltageOutput voltage VO (V) Input voltage VIN (V) 0 1.0 2.0 3.0 4.0 0.2 0.4 0.6 0.8 1.0 0 4.5 1.2 1.3 IO=0A IO=0.5A(RL=2.4Ω) IO=1A(RL=1.2Ω) VIN=1.8V CIN=1μF CO=10μF R1=R2=1kΩ Ta=Room temp. Bias supply voltage VB (V) Fig.12 Output Voltage vs. Bias Supply Voltage Output voltage VO (V) -50 -25 0 25 50 75 100 125 150 0.11 0.12 0.13 0.14 0.15 0.1 0.16 0.17 VIN=1.14V VB=3.3V IO=0.5A CIN=1μF CO=10μF R1=R2=1kΩ Fig.13 Dropout Voltage vs. Ambient Temperature Ambient temperature Ta (°C) Dropout voltage VI-O(V)
Sheet No.: OP07008 PQ035ZN01ZPH -2.0 -1.5 -1.0 -0.5 0.5 1.0 1.5 2.0 Output current IO (A) Output voltage deviation ΔVO (mV) Fig.14 Output Voltage Deviation vs. Output Current -2.0 -1.5 -1.0 -0.5 0.5 1.0 1.5 2.0
0 VIN
2.5 -2.5 -3.0 VIN=1.8V VB=3.3V R1=R2=1kΩ IO=0A CIN=1μF CO=10μF Input voltage / Bias supply voltage VIN/VB (V) Output voltage deviation ΔVO (mV) Fig.15 Output Voltage Deviation vs. Input Voltage / Bias Supply Voltage 0 0.5 2.0 3.0 4.0 1.0 1.5 2.5 3.5
26 IO=0A
VB=3.3V Input voltage VIN (V) Input current IIN (mA) Fig.16 Input Current vs. Input Voltage 0.5 1.0 1.5 2.0 2.5 VB=3.3V IO=1A(RL=1.2Ω) IO=0.5A(RL=2.4Ω) IO=0A Input voltage VIN (V) Bias inflow current IB (mA) Fig.17 Bias Inflow Current vs. Input Voltage 0.5 1.0 1.5 2.0 IB VIN=1.8V IO=1A(RL=1.2Ω) IO=0.5A(RL=2.4Ω) IO=0A Bias supply voltage VB (V) Fig.18 Bias Inflow Current vs. Bias Supply Voltage Bias inflow current IB (mA) 0 1000 2000 3000 4000 0.2 0.4 0.6 2.2 2.4 2.6 R2(Ω) 5000 0.8 1.2 1.4 1.6 1.8 2.8 3.2 3.4 3.5 R1=1kΩ Fig.19 Output Voltage Adjustment Characteristics(Typical Value) Output voltage VO(V)
Sheet No.: OP07008 PQ035ZN01ZPH Fig.20 Power Dissipation vs. Ambient Temperature (Typical Value) Ambient temperature Ta (°C) Power dissipation PD (W) Mounting PCB PCB Cu Material Size Cu thickness : Glass-cloth epoxy resin : 50×50×1.6mm : 35μm 0.5 1.5 -40 -20 0 20 40 60 80 100 120 2.0 Cu area 740mm2 Cu area 180mm2 Cu area 100mm2 Cu area 70mm2 Cu area 36mm2