AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications General Description Features The AAT3158 is a low noise, constant frequency charge pump DC/DC converter that uses a trimode load switch (1X), fractional (1.5X), and doubling (2X) conversion to maximize efficiency for white LED applications. The AAT3158 is capable of driving up to four LED channels at 20mA per channel from a 2.7V to 5.5V input. The current sinks may be operated individually or in parallel for driving higher current LEDs. A low external parts count (two 1F flying capacitors and two small 1F capacitors at VIN and VOUT) make this part ideally suited for small, battery-powered applications. * * * * * * * * * * * * AnalogicTech's S2CwireTM (Simple Serial ControlTM) serial digital input is used to enable, disable, and set current for each LED with 16 settings down to 50A. The low current mode supply current can be as low as 50A to save power. Each output of the AAT3158 is equipped with builtin protection for VOUT short circuit and auto disable for load short-circuit conditions. Built-in soft-start circuitry prevents excessive inrush current during start-up. A low current shutdown feature disconnects the load from VIN and reduces quiescent current to less than 1A. ChargePumpTM VIN Range: 2.7V to 5.5V Fully Programmable Current with Single Wire -- 16 Current Levels -- Four Low Current Settings Down to 50A Low IQ (50A) for Low Current Mode Tri-Mode 1X, 1.5X, and 2X Charge Pump for Maximum Efficiency and VF Coverage Drives Up to Four LED Channels No Inductors, Low Noise Operation 1MHz Constant Switching Frequency Small Application Circuit Built-In Thermal Protection Automatic Soft-Start IQ <1A in Shutdown 2.85x3mm TSOPJW-12 Package Applications * * * * Color (RGB) Lighting Programmable Current Sinks White LED Backlighting White Photo Flash for Digital Still Cameras The AAT3158 is available in a Pb-free, space-saving 2.85x3.0mm TSOPJW-12 package. Typical Application C1 1F 2.7V to 5.5V C1+ C2+ C1- C2- VIN VOUT CIN 1F D1 AAT3158 GND C2 1F D2 D3 D4 COUT 1F D1 D2 EN/SET EN/SET D3 D4 3158.2006.02.1.0 1 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Pin Descriptions Pin # Symbol Function 1 2 3 4 5 D4 EN/SET C1+ C1VOUT 6 7 8 9 10 11 12 C2+ C2VIN GND D3 D2 D1 Current sink input #4. S2Cwire serial interface control pin. Flying capacitor 1 positive terminal. Connect a 1F capacitor between C1+ and C1-. Flying capacitor 1 negative terminal. Charge pump output to drive load circuit. Requires 1F capacitor connected between this pin and ground. Flying capacitor 2 positive terminal. Connect a 1F capacitor between C2+ and C2-. Flying capacitor 2 negative terminal. Input power supply. Requires 1F capacitor connected between this pin and ground. Ground. Current sink input #3. Current sink input #2. Current sink input #1. Pin Configuration TSOPJW-12 (Top View) D4 EN/SET C1+ C1VOUT C2+ 2 1 12 2 11 3 10 4 9 5 8 6 7 D1 D2 D3 GND VIN C2- 3158.2006.02.1.0 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Absolute Maximum Ratings1 Symbol VIN VEN/SET IOUT2 TJ TLEAD Description Input Voltage EN/SET to GND Voltage Maximum DC Output Current Operating Junction Temperature Range Maximum Soldering Temperature (at leads, 10 sec) Value Units -0.3 to 6 -0.3 to VIN + 0.3 150 -40 to 150 300 V V mA C C Value Units 0.625 160 W C/W Thermal Information3 Symbol PD JA Description Maximum Power Dissipation Maximum Thermal Resistance 4 1. Stresses above those listed in Absolute Maximum Ratings may cause permanent damage to the device. Functional operation at conditions other than the operating conditions specified is not implied. Only one Absolute Maximum Rating should be applied at any one time. 2. Based on long-term current density limitation. 3. Mounted on an FR4 board. 4. Derate 6.25mW/C above 25C. 3158.2006.02.1.0 3 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Electrical Characteristics1 CIN = COUT = C1 = C2 = 1.0F; TA = -40C to +85C, unless otherwise noted. Typical values are TA = 25C, VIN = 3.6V. Symbol Description Input Power Supply VIN Operation Range ICC ISHDN IDX Operating Current Shutdown Current ISINK Average Current Accuracy I(D-Match) Current Matching2 1X to 1.5X or 1.5X to 2X Transition VTH Threshold at Any ISINK Pin Charge Pump Section TSS Soft-Start Time FCLK Clock Frequency EN/SET VEN(L) Enable Threshold Low VEN(H) Enable Threshold High TEN/SET LO EN/SET Low Time TEN/SET HI MIN Minimum EN/SET High Time TEN/SET HI MAX Maximum EN/SET High Time TOFF EN/SET Off Timeout TLAT EN/SET Latch Timeout IEN/SET EN/SET Input Leakage Conditions Min Typ Max Units 5.5 1 V 0.3 1 3 2.7 1X Mode, 3.0 VIN 5.5, Active, No Load Current 1.5X Mode, 3.0 VIN 5.5, Active, No Load Current 2X Mode, 3.0 VIN 5.5, Active, No Load Current 50A Setting, 1X Mode EN/SET = 0 1 50 18 VF:D1:D4 = 3.6V VIN = 2.7V VIN = 5.5V mA 20 0.5 1 22 1 150 mV 100 1000 s kHz 0.4 1.4 0.3 75 50 -1 A A mA % 75 500 500 1 V V s ns s s s A 1. The AAT3158 is guaranteed to meet performance specifications over the -40C to +85C operating temperature range and is assured by design, characterization, and correlation with statistical process controls. 2. Current matching is defined as the deviation of any sink current from the average of all active channels. 4 3158.2006.02.1.0 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Typical Characteristics Efficiency vs. Supply Voltage Turn-On to 1X Mode (VIN = 4.2V; 20mA/ch Load) 100 Efficiency (%) 90 20mA/ch VF = 3.4V 6mA/ch VF = 3V EN/SET (2V/div) 80 70 60 50 500A/ch VF = 2.7V 40 30 2.7 2.9 3.1 3.3 3.5 3.7 3.9 4.1 4.3 4.5 VOUT (2V/div) VSINK (1V/div) IIN (100mA/div) Supply Voltage (V) Time (100s/div) Turn-On to 1.5X Mode Turn-On to 2X Mode (VIN = 3.5V; 20mA/ch Load) (VIN = 2.8V; 20mA/ch Load) EN/SET (2V/div) EN/SET (2V/div) VOUT (2V/div) VOUT (2V/div) VSINK (1V/div) IIN (200mA/div) VSINK (500mV/div) IIN (500mA/div) Time (100s/div) Time (100s/div) Turn-Off from 1.5X Mode Diode Current vs. Temperature (VIN = 3.5V; 20mA/ch Load) (20mA/channel) Diode Current (mA) 22.0 EN/SET (2V/div) VF (1V/div) IIN (100mA/div) 21.0 ID1 20.5 ID4 20.0 ID2 19.5 19.0 ID3 18.5 18.0 Time (100s/div) 3158.2006.02.1.0 21.5 -40 -25 -10 5 20 35 50 65 80 95 Temperature (C) 5 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Typical Characteristics Load Characteristics Load Characteristics (VIN = 3.7V; 1.5X Mode; 20mA/ch Load) (VIN = 3.5V; 1.5X Mode; 14mA/ch Load) VIN (20mV/div) VIN (20mV/div) VCP (40mV/div) VCP (40mV/div) VSINK (20mV/div) VSINK (20mV/div) Time (500ns/div) Time (500ns/div) Load Characteristics Load Characteristics (VIN = 2.9V; 2X Mode; 20mA/ch Load) (VIN = 2.9V; 2X Mode; 14mA/ch Load) VIN (20mV/div) VIN (20mV/div) VCP (40mV/div) VCP (40mV/div) VSINK (40mV/div) VSINK (40mV/div) Time (500ns/div) Time (500ns/div) Input Ripple vs. Input Voltage 14.0 Input Ripple (mV) 12.0 10.0 20mA/ch 14mA/ch 8.0 6.0 4.0 2.0 0.0 2.5 10mA/ch 3.0 3.5 4.0 4.5 5.0 5.5 Input Voltage (V) 6 3158.2006.02.1.0 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Typical Characteristics EN/SET Off Timeout vs. Input Voltage 350 EN/SET Off Timeout (s) 350 300 250 200 -40C 150 100 25C 50 0 85C 300 250 -40C 200 150 25C 100 85C 50 0 2.7 2.9 3.1 3.3 3.5 3.7 3.9 4.1 4.3 4.5 4.7 4.9 5.1 5.3 5.5 2.7 2.9 3.1 3.3 3.5 3.7 3.9 4.1 4.3 4.5 4.7 4.9 5.1 5.3 5.5 Input Voltage (V) Input Voltage (V) Enable Threshold High vs. Input Voltage Enable Threshold Low vs. Input Voltage 1.4 Enable Threshold Low (V) Enable Threshold High (V) EN/SET Latch Timeout (s) EN/SET Latch Timeout vs. Input Voltage 1.2 -40C 1.0 0.8 25C 0.6 0.4 2.7 3.1 3.5 3.9 4.3 Input Voltage (V) 3158.2006.02.1.0 85C 4.7 5.1 5.5 1.4 1.2 1.0 -40C 0.8 0.6 0.4 25C 2.7 3.1 3.5 3.9 4.3 85C 4.7 5.1 5.5 Input Voltage (V) 7 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Functional Block Diagram C1+ C1- C2+ C2- 1X, 1.5X, 2X Charge Pump V IN VOUT Soft-Start Control 1MHz Oscillator Voltage Reference 6 x 16 bit ROM EN/SET S2Cwire Interface D/A D1 D/A D2 D/A D3 D/A D4 GND Functional Description The AAT3158 is a tri-mode load switch (1X) and high efficiency (1.5X or 2X) charge pump device intended for white LED backlight applications. To maximize power conversion efficiency, an internal sensing circuit monitors the voltage required on each constant current sink input and sets the load switch and charge pump modes based on the input battery voltage and the current sink input voltage. As the battery discharges over time, the AAT3158 charge pump is enabled when any of the four current sink inputs nears dropout. The charge pump initially starts in 1.5X mode. If the charge pump output droops enough for any current source output to become close to dropout, the charge pump will automatically transition to 2X mode. The AAT3158 requires only four external components: two 1F ceramic capacitors for the charge pump flying capacitors (C1 and C2), one 1F ceramic input capacitor (CIN), and one 0.33F to 1F ceramic charge pump output capacitor (COUT). The four constant current sink inputs (D1 to D4) can drive four individual LEDs with a maximum current of 20mA each. The unused sink inputs must be 8 connected to VOUT; otherwise, the part will operate only in 2X charge pump mode. The S2Cwire serial interface enables the AAT3158 and sets the current sink magnitudes. Constant Current Output Level Settings The constant current sink levels for D1 to D4 are set via the serial interface according to a logarithmic scale for the first 12 codes, and a separate low current scale for the last 4 codes. For the first 12 codes, each code is approximately 1.5dB lower than the previous code. In this manner, LED brightness appears linear with each increasing code count. Because the inputs D1 to D4 are true independent constant current sinks, the voltage observed on any single given input will be determined by the actual forward voltage (VF) for the LED being driven. Since the input current sinks of the AAT3158 are programmable, no PWM (pulse width modulation) or additional control circuitry is needed to control LED brightness. This feature greatly reduces the burden on a microcontroller or system IC to manage LED or display brightness, allowing the user to "set it and 3158.2006.02.1.0 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications 1MHz, or much slower, such as 15kHz. After data is submitted, EN/SET is held high to latch the data. Once EN/SET has been held in the logic high state for time TLAT, the programmed current becomes active and the internal data register is reset to zero. For subsequent current level programming, the number of rising edges corresponding to the desired code must be entered on the EN/SET pin. forget it." With its high-speed serial interface (1MHz data rate), the input sink current of the AAT3158 can be changed successively to brighten or dim LEDs in smooth transitions (e.g., to fade-out) or in abrupt steps, giving the user complete programmability and real-time control of LED brightness. S2Cwire Serial Interface When EN/SET is held low for an amount of time greater than TOFF, the AAT3158 enters into shutdown mode and draws less than 1A from VIN. The internal data register is reset to zero during shutdown. The current level magnitude is controlled by AnalogicTech's Simple Serial Control (S2Cwire) serial interface. The interface records rising edges of the EN/SET pin and decodes them into 16 different states. The 16 current level settings available are indicated in Table 1. Data Output (mA/Ch) Data Output (mA/Ch) 1 2 3 4 5 6 7 8 20 18 16 14 12.5 11 9.5 8 9 10 11 12 13 14 15 16 6 4 3 2 1 0.5 0.1 0.05 Auto-Disable Feature The AAT3158 is equipped with an auto-disable feature for each LED channel. After the IC is enabled and started up, a test current of 100A (typical) is forced through each sink channel. The channel will be disabled if the voltage of that particular SINK pin does not drop to certain threshold. This feature is very convenient for disabling an unused channel or during an LED fail short event. Thermal Protection The AAT3158 has built-in thermal protection circuit that will shut down the charge pump if the die temperature rises above the thermal limit, as is the case during a short circuit of the VOUT pin. The S2Cwire serial interface has flexible timing. Data can be clocked-in at speeds greater than S2Cwire Serial Interface Timing T HI T LO TOFF TLAT EN/SET 1 Data Reg 3158.2006.02.1.0 2 n 1 n <= 16 n 0 9 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Applications Information LED Selection Although AAT3158 is specifically intended for driving white LEDs, the device can also be used to drive most types of LEDs with forward voltage specifications ranging from 2.0V to 4.7V. LED applications may include main and sub-LCD display backlighting, camera photo-flash applications, color (RGB) LEDs, infrared (IR) diodes for remotes, and other loads benefiting from a controlled output current generated from a varying input voltage. Since the D1 to D4 input current sinks are matched with negligible voltage dependence, the LED brightness will be matched regardless of the specific LED forward voltage (VF) levels. In some instances (e.g., in high-luminous-output applications such as photo flash), it may be necessary to drive high-VF type LEDs. The low dropout current sinks in the AAT3158 make it capable of driving LEDs with forward voltages as high as 4.7V at full current from an input supply as low as 3.0V. Outputs can be paralleled to drive high-current LEDs without complication. Device Switching Noise Performance The AAT3158 operates at a fixed frequency of approximately 1MHz to control noise and limit harmonics that can interfere with the RF operation of cellular telephone handsets or other communication devices. Back-injected noise appearing on the input pin of the charge pump is 20mV peak-topeak, typically ten times less than inductor-based DC/DC boost converter white LED backlight solutions. The AAT3158 soft-start feature prevents noise transient effects associated with inrush currents during start-up of the charge pump circuit. Capacitor Selection Careful selection of the four external capacitors (CIN, C1, C2, COUT) is important because they will affect turn-on time, output ripple, and transient performance. Optimum performance will be obtained when low equivalent series resistance (ESR) ceramic capacitors are used; in general, low ESR may be defined as less than 100m. A value of 10 1F for all four capacitors is a good starting point when choosing capacitors. If the LED current sources are only programmed for light current levels, then the capacitor size may be decreased. Capacitor Characteristics Ceramic composition capacitors are highly recommended over all other types of capacitors for use with the AAT3158. Ceramic capacitors offer many advantages over their tantalum and aluminum electrolytic counterparts. A ceramic capacitor typically has very low ESR, is lowest cost, has a smaller PCB footprint, and is non-polarized. Low ESR ceramic capacitors help maximize charge pump transient response. Since ceramic capacitors are non-polarized, they are not prone to incorrect connection damage. Equivalent Series Resistance ESR is an important characteristic to consider when selecting a capacitor. ESR is a resistance internal to a capacitor that is caused by the leads, internal connections, size or area, material composition, and ambient temperature. Capacitor ESR is typically measured in milliohms for ceramic capacitors and can range to more than several ohms for tantalum or aluminum electrolytic capacitors. Ceramic Capacitor Materials Ceramic capacitors less than 0.1F are typically made from NPO or C0G materials. NPO and C0G materials typically have tight tolerance and are stable over temperature. Larger capacitor values are typically composed of X7R, X5R, Z5U, or Y5V dielectric materials. Large ceramic capacitors, typically greater than 2.2F, are often available in lowcost Y5V and Z5U dielectrics, but capacitors greater than 1F are typically not required for AAT3158 applications. Capacitor area is another contributor to ESR. Capacitors that are physically large will have a lower ESR when compared to an equivalent material smaller capacitor. These larger devices can improve circuit transient response when compared to an equal value capacitor in a smaller package size. 3158.2006.02.1.0 AAT3158 High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications Ordering Information Package Marking1 Part Number (Tape and Reel)2 TSOPJW-12 RHXYY AAT3158ITP-T1 All AnalogicTech products are offered in Pb-free packaging. The term "Pb-free" means semiconductor products that are in compliance with current RoHS standards, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. For more information, please visit our website at http://www.analogictech.com/pbfree. Package Information TSOPJW-12 2.85 0.20 2.40 0.10 0.10 0.20 +- 0.05 0.50 BSC 0.50 BSC 0.50 BSC 0.50 BSC 0.50 BSC 7 NOM 0.055 0.045 0.04 REF 0.15 0.05 + 0.10 1.00 - 0.065 0.9625 0.0375 3.00 0.10 4 4 0.45 0.15 0.010 2.75 0.25 All dimensions in millimeters. 1. XYY = assembly and date code. 2. Sample stock is generally held on part numbers listed in BOLD. (c) Advanced Analogic Technologies, Inc. AnalogicTech cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in an AnalogicTech product. No circuit patent licenses, copyrights, mask work rights, or other intellectual property rights are implied. AnalogicTech reserves the right to make changes to their products or specifications or to discontinue any product or service without notice. Customers are advised to obtain the latest version of relevant information to verify, before placing orders, that information being relied on is current and complete. All products are sold subject to the terms and conditions of sale supplied at the time of order acknowledgement, including those pertaining to warranty, patent infringement, and limitation of liability. AnalogicTech warrants performance of its semiconductor products to the specifications applicable at the time of sale in accordance with AnalogicTech's standard warranty. Testing and other quality control techniques are utilized to the extent AnalogicTech deems necessary to support this warranty. Specific testing of all parameters of each device is not necessarily performed. Advanced Analogic Technologies, Inc. 830 E. Arques Avenue, Sunnyvale, CA 94085 Phone (408) 737-4600 Fax (408) 737-4611 3158.2006.02.1.0 11