UM3500 UNIONSEMI | Alldatasheet
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Technical content
Features
z Cellular and Smart Phones z Microprocessors and DSP Core Supplies z Wireless and DSL Modems z PDAs, GPS z MP3 Player z Portable Instruments z High Efficiency: Up to 96% z 1.5MHz Constant Switching Frequency z 600mA Output Current z Integrated Main switch and synchronous rectifier. No external Schottky Diode z 2.5V to 5.5V Input Voltage Range z Output Voltage as Low as 0.6V z 100% Duty Cycle in Dropout z Low Quiescent Current: 50µA z Short Circuit Protection z Thermal Fault Protection z <1µA Shutdown Current z Lead free SOT23-5 Package P i n C o n f i g u r a t i o n s T o p V i e w WW: Week Code UM3500 SOT23-5
http://www.union-ic.com Rev.02 Jun.2012 2 / 1 1 UM3500
Ordering Information
Part Number Packaging Type Marking Code Shipping Qty UM3500 SOT23-5 LTA5 3000pcs/7Inch Tape & Reel Pin Description Pin Number Symbol Function
1 RUN
Regulator enables control input. Drive RUN above 1.0V to turn on the part. Drive RUN below 0.4V to turn it off. In shutdown, all functions are disabled drawing <1μA supply current. Do not leave RUN floating. 2 GND Ground. 3 SW Power switch output. It is the switch node connection to Inductor. This pin connects to the drains of the internal P-CH and N-CH MOSFET switches. 4 VIN Supply input pin. Must be closely decoupled to GND, Pin 2, with a 2.2μF or greater ceramic capacitor. 5 VFB Feedback input pin. Connect FB to the center point of the external resistor divider. Bonding option Absolute Maximum Ratings (Note 1) Symbol Parameter Value Unit VIN Input Voltage -0.3 to +6.0 V VRUN,VFB RUN, VFB Voltages +0.3 to V IN+0.3 V VSW,VOUT SW, VOUT Voltages +0.3 to V IN+0.3 V ISW Peak SW Sink and Source Current 1.5 A TO Operating Temperature -40 to +85 °C TSTG Storage Temperature Range -65 to +150 °C Note 1: Stresses greater than those listed under MAXIMUM RATINGS may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indi cated in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability.
http://www.union-ic.com Rev.02 Jun.2012 3 / 1 1 UM3500 Electrical Characteristics (Note 2) (VIN=VRUN=3.6V, TA=+25℃, unless otherwise noted) Symbol Parameter Test Conditions Min Typ Max Unit VIN Input Voltage Range 2.5 5.5 V IQ (Active) Input DC Supply Current (Active Mode) VFB=3.6V, VFB=VREF+5% 50 100 μA IQ (Shutdown) Input DC Supply Current (Shutdown Mode) VFB=0V, VIN=4.2V 0.08 1.0 μA TA= +25ºC 0.5880 0.6000 0.6120 0ºC ≤TA ≤ 85ºC 0.5865 0.6000
0.6135 VFB Regulated Feedback
-40ºC ≤TA ≤ 85ºC 0.5850 0.6000 0.6150 V IFB VFB Input Bias Current VFB=0.65V ±30 nA Reference Voltage Line Regulation 2.5V≤ VIN ≤ 5.5V, VOUT=VFB (R2=0) 0.11 0.40 %/V Output Voltage Line Regulation 2.5V≤ VIN ≤ 5.5V, IOUT=10mA 0.11 0.40 %/V Output Voltage Load Regulation 100mA≤IOUT≤600mA 0.0015 %/mA IO(Max) Maximum Output Current VIN=3.6V, VOUT=1.8V 600 mA f Oscillator Frequency VFB=0.6V or VOUT=100% 1.2 1.5 1.8 MHz RDS(ON) of P-CH MOSFET VIN =3.6V, ISW=100mA 0.40 0.50 Ω RDS(ON) RDS(ON) of N-CH MOSFET VIN =3.6, ISW= -100mA 0.35 0.45 Ω IP Peak Induct or Current VIN=3.0V, VFB=0.5V or VOUT=90%, Duty Cycle<35% 1.20 A ISWL SW Leakage VRUN=0V, VSW=0V or 5V VIN=5V ±0.01 ±1 μA VH RUN High-Level Threshold -40ºC ≤TA ≤ 85ºC 1.0 V VL RUN Low-Level Threshold -40ºC ≤TA ≤ 85ºC 0.4 V IRUNL RUN Leakage Current Vrun=3.6V 2.0 3.5 μA η(MAX) Max. Efficiency VIN=2.7V, VOUT=2.5V 90 % Thermal Shutdown Temp 160 ºC Note2: 100% production test at +25ºC. Specifications over the temperature range are guaranteed by design and characterization.
http://www.union-ic.com Rev.02 Jun.2012 4 / 1 1 UM3500 Block Diagram Typical Application Circuit
http://www.union-ic.com Rev.02 Jun.2012 5 / 1 1 UM3500 Function description UM3500 is a monolithic switching mode Step-D own DC-DC converter. It utilizes internal MOSFETs to achieve high efficiency and can genera te very low output voltage by using internal reference at 0.6V . It operates at a fixed switc hing frequency, and uses the slope compensated current mode architecture. This Step-Down DC -DC Converter supplies 600mA output current at VIN =3.6V with input voltage range from 2.5V to 5.5V . Current Mode PWM Control Slope compensated current mode PWM control provides stable switching and cycle by cycle current limit for excellent load and line responses. During normal operation, the internal main switch is turned on for a certain time to ramp the inductor current at each rising edge of the internal oscillator, and turned off when the peak inductor curre nt reaches the controlled value. When the main switch is off, the synchronous rec tifier will be turned on immediately and stay on until either the inductor current starts to reverse, as indicated by the current reversal comparator, IRCMP, or the beginning of the next clock cycle. Pulse Skipping Mode Operation At very light loads, the UM3500 will automati cally enter Pulse Skipping Mode to increase efficiency, further extending battery life. In th is mode, the control loop skips PWM pulses while maintaining output in regulation, and the switchi ng frequency depends on the load condition. This is a kind of PFM mode operation. Dropout Operation When the input voltage decreases toward the va lue of the output voltage, the UM3500 allows the main switch to remain on for more than one sw itching cycle and increases the duty cycle (Note 1) until it reaches 100%. The output voltage then is th e input voltage minus the voltage drop across the main switch and the inductor. At low input supply voltage, the R DS(ON) of the P-Channel MOSFET increases, and the efficiency of the convert er decreases. Caution must be exercised to ensure the heat dissipated not to exceed the maximum junction temperature of the IC. Note 1: The duty cycle D of a step-down converter is defined as: D=TON×fOSC×100%≌VOUT/VIN×100% Where TON is the main switch on time and fOSC is the oscillator frequency (1.5MHz). Maximum Load Current The UM3500 will operate with input supply volta ge as low as 2.5V , however, the maximum load current decreases at lower input due to large IR drop on the main switch and synchronous rectifier. The slope compensation signal reduces the peak induc tor current as a function of the duty cycle to prevent sub-harmonic oscillations at duty cycles greater than 50%. Conversely the current limit increases as the duty cycle decreases.
http://www.union-ic.com Rev.02 Jun.2012 6 / 1 1 UM3500 Typical Performance Characteristics ( L1 = 2.2µH, C1 = 4.7µF, C3 = 10µF, TA = +25°C, unless otherwise noted.) 0.1 1 10 100 1000 100 Efficiency vs Load Current Efficiency(%) Load Current(mA) VIN=2.7V VIN=3.6V VIN=4.2V 0.1 1 10 100 1000 100 Efficiency vs Load Current VIN=2.7V VIN=3.6V VIN=4.2V Efficiency(%) Load Current(mA) 0 200 400 600 800 1000 1200 1.3 1.4 1.5 1.6 1.7 1.8 1.9 2.0 2.1 2.2 Output Voltage vs Load Current VIN=3.6V Output Voltage(V) Load Current(mA) -50 -25 0 25 50 75 100 125 1.780 1.782 1.784 1.786 1.788 1.790 1.792 1.794 1.796 1.798 1.800 Output Voltage vs Temperature Output Voltage(V) Temperature( o VIN=3.6V 0.1 1 10 100 1000 100 Efficiency vs Load Current Efficiency(%) Load Current(mA) VIN=2.7V VIN=3.6V VIN=4.2V 1.780 1.785 1.790 1.795 1.800 1.805 1.810 1.815 1.820 IO=10mA IO=100mA IO=600mA Output Voltage vs Supply Voltage Output Voltage(V) Supply Voltage(V)
http://www.union-ic.com Rev.02 Jun.2012 7 / 1 1 UM3500 Typical Performance Characteristics (Continued) ( L1 =2.2µH, C1 = 4.7µF, C3 = 10µF, TA = +25°C, unless otherwise noted.) R u n C u r r e n t v s R u n V o l t a g e L o a d T r a n s i e n t Start-up from Shutdown Short-Circuit Protection 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 IRUN(uA) VRUN (V) VOUT=1.8V,IO=0mA
http://www.union-ic.com Rev.02 Jun.2012 8 / 1 1 UM3500 Applications Information Output Voltage Setting The external resistor divider sets the output vol tage.The feedback resistor R1 also sets the feedback loop bandwidth with the internal compensation capacitor. Choose R1 around 300kΩ for optimal transient response. R2 is then given by: 16.0 V V RR OUT Inductor Selection A 1µH to 10µH inductor with DC current rati ng at least 25% higher than the maximum load current is recommended for most applications.For be st efficiency, the inductor DC resistance shall be<200mΩ. For most designs, the inductance value can be derived from the following equation: OSCLIN OUTINOUT fIV VVVL ×Δ× −×= )( Where ∆IL is the inductor ripple current. Choose inducto r ripple current approximately 30% of the maximum load current, 600mA. The maximum inductor peak current is: L LOADMAXL III Δ+= Under light load conditions below 100mA, larg er inductance is recommended for improved efficiency. Input Capacitor Selection The input capacitor reduces the surge current draw n from the input and switching noise from the device. The input capacitor impedance at the switc hing frequency shall be less than input source impedance to prevent high frequency switching curre nt passing to the input. Ceramic capacitors with X5R or X7R dielectrics are highly recomme nded because of their low ESR and small temperature coefficients. For most applications, a 4.7µF capacitor is sufficient. Output Capacitor Selection The output capacitor keeps output voltage ripple small and ensures regulation loop stable. The output capacitor impedance shall be low at the switching frequency. Ceramic capacitor with X5R or X7R dielectrics are recommended. The output ripple ∆V OUT is approximately: −×≤Δ 38 1)( CfESRLfV VVVV OSCOSCIN OUTINOUT OUT
http://www.union-ic.com Rev.02 Jun.2012 9 / 1 1 UM3500 Layout Guidance When laying out the PC board, the following su ggestions should be taken to ensure proper operation of theUM3500. 1. The power traces, including the GND trace, the SW trace and the VIN trace should be kept short, direct and wide to allow large current flow. Put enough multiply-layer pads when they need to change the trace layer. 2. Connect the input capacitor C1 to the VIN pin as closely as possible to get good power filter effect. 3. Keep the switching node, SW, away from the sensitive FB node. 4. Do not trace signal line under inductor.
http://www.union-ic.com Rev.02 Jun.2012 1 0 / 1 1 UM3500
Package Information
UM3500: SOT23-5 Outline Drawing DIMENSIONS MILLIMETERS INCHES Symbol Min Max Min Max A 1.050 1.250 0.041 0.049 A1 0.000 0.100 0.000 0.004 A2 1.050 1.150 0.041 0.045 b 0.300 0.500 0.012 0.020 c 0.100 0.200 0.004 0.008 D 2.820 3.020 0.111 0.119 E 1.500 1.700 0.059 0.067 E1 2.650 2.950 0.104 0.116 e 0.950REF 0.037REF e1 1.800 2.000 0.071 0.079 L 0.300 0.600 0.012 0.024 θ 0° 8° 0° 8° Land Pattern NOTES: 1. Compound dimension: 2.92×1.60 ; 2. Unit: mm; 3. General tolerance ±0.05mm unless otherwise specified; 4. The layout is just for reference. Tape and Reel Orientation
http://www.union-ic.com Rev.02 Jun.2012 1 1 / 1 1 UM3500 IMPORTANT NOTICE The information in this document has been ca refully reviewed and is believed to be accurate. Nonetheless, this document is subjec t to change without notice. Union assumes no responsibility for any inaccuracies that may be contained in this document, and makes no commitment to update or to keep current the contained information, or to notify a person or organization of any update. Union rese rves the right to make changes, at any time, in order to improve reliability, function or design and to attempt to supply the best product possible. Union Semiconductor, Inc Add: 2F, No. 3, Lane 647 Songtao Road, Shanghai 201203 Tel: 021-51093966 Fax: 021-51026018 Website: www.union-ic.com