MAX8863T/S/R, MAX8864T/S/R Low-Dropout, 120mA Linear Regulators General Description The MAX8863T/S/R and MAX8864T/S/R low-dropout linear regulators operate from a +2.5V to +6.5V input range and deliver up to 120mA. A PMOS pass transistor allows the low, 80A supply current to remain independent of load, making these devices ideal for battery-operated portable equipment such as cellular phones, cordless phones, and modems. The devices feature Dual ModeTM operation: their output voltage is preset (at 3.15V for the T versions, 2.84V for the S versions, or 2.80V for the R versions) or can be adjusted with an external resistor divider. Other features include low-power shutdown, short-circuit protection, thermal shutdown protection, and reverse battery protection. The MAX8864 also includes an auto-discharge function, which actively discharges the output voltage to ground when the device is placed in shutdown mode. Both devices come in a miniature 5-pin SOT23 package. Applications Benefits and Features Low Cost Low, 55mV Dropout Voltage at 50mA IOUT Low, 68A No-Load Supply Current Low, 80A Operating Supply Current (even in dropout) Low, 350VRMS Output Noise Miniature External Components Thermal Overload Protection Output Current Limit Reverse Battery Protection Dual Mode Operation: Fixed or Adjustable (1.25V to 6.5V) Output Low-Power Shutdown Ordering Information PART Cordless Telephones PCS Telephones Cellular Telephones PCMCIA Cards Modems Hand-Held Instruments Palmtop Computers Electronic Planners TEMP RANGE PIN-PACKAGE MAX8863TEUK+T -40C to +85C 5 SOT23 MAX8863TMUK/PR3+T -55C to +125C 5 SOT23 MAX8863SEUK+T -40C to +85C 5 SOT23 MAX8863REUK+T -40C to +85C 5 SOT23 MAX8864TEUK+T -40C to +85C 5 SOT23 MAX8864SEUK+T -40C to +85C 5 SOT23 MAX8864REUK+T -40C to +85C 5 SOT23 *Alternate marking information: CY_ _ = MAX8863T, CZ_ _ = MAX8863S, DA_ _ = MAX8864T, DB_ _ = MAX8864S +Denotes a lead(Pb)-free/RoHS-compliant package. Typical Operating Circuit Pin Configuration TOP VIEW IN BATTERY CIN 1F OUT MAX8863 MAX8864 SHDN GND OUTPUT VOLTAGE COUT 1F SET SHDN 1 GND 2 + 19-0466; Rev 6; 5/16 SET 4 OUT MAX8863 MAX8864 IN 3 SOT23 Dual Mode is a trademark of Maxim Integrated Products, Inc. 5 MAX8863T/S/R, MAX8864T/S/R Low-Dropout, 120mA Linear Regulators Absolute Maximum Ratings VIN to GND..................................................................-7V to +7V Output Short-Circuit Duration............................................ Infinite SET to GND.............................................................-0.3V to +7V SHDN to GND.............................................................-7V to +7V SHDN to IN...............................................................-7V to +0.3V OUT to GND................................................-0.3V to (VIN + 0.3V) Continuous Power Dissipation (multilayer board, TA = +70C) SOT23 (3.9mW/C above +70C).............................312.6mW Operating Temperature Range............................ -40C to +85C Operating Temperature Range (MAX8863TMUK/PR3+).................... -55C to +125C Junction Temperature.......................................................+150C Storage Temperature Range............................. -65C to +150C Lead Temperature (soldering, 10s).................................. +300C Soldering Temperature (reflow)........................................+260C Stresses beyond those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Package Thermal Characteristics (Note 1) SOT23 Junction-to-Ambient Thermal Resistance (JA)......255.9C/W Junction-to-Case Thermal Resistance (JC)................81C/W Note 1: Package thermal resistances were obtained using the method described in JEDEC specification JESD51-7, using a four-layer board. For detailed information on package thermal considerations, refer to www.maximintegrated.com/thermal-tutorial. Electrical Characteristics (VIN = +3.6V, VGND = 0V, TA = TMIN to TMAX, unless otherwise noted. Typical values are at TA = +25C.) (Note 2) PARAMETER Input Voltage (Note 3) Output Voltage Adjustable Output Voltage Range (Note 4) SYMBOL CONDITIONS VIN VOUT Ground Pin Current TYP 2.5 0mA IOUT 50mA, SET = GND MAX UNITS 6.5 V MAX886_T 3.05 3.15 3.25 MAX886_S 2.75 2.84 2.93 MAX886_R 2.70 2.80 2.88 VOUT VSET Maximum Output Current Current Limit (Note 5) MIN 6.5 120 ILIM IQ Dropout Voltage (Note 6) ILOAD = 0mA 68 ILOAD = 50mA 80 1.1 IOUT = 50mA 55 120 0 +0.15 SET = GND 0.011 0.040 SET tied to OUT 0.006 VLNR VIN = 2.5V to 6.5V, SET tied to OUT, IOUT = 1mA Load Regulation VLDR IOUT = 0mA to 50mA Output Voltage Noise mA 150 IOUT = 1mA Line Regulation 10Hz to 1MHz -0.15 V mA 280 SET = GND V COUT = 1F 350 COUT = 100F 220 A mV %/V %/mA VRMS SHUTDOWN SHDN Input Threshold www.maximintegrated.com VIH VIL 2.0 0.4 V Maxim Integrated 2 MAX8863T/S/R, MAX8864T/S/R Low-Dropout, 120mA Linear Regulators Electrical Characteristics (continued) (VIN = +3.6V, VGND = 0V, TA = TMIN to TMAX, unless otherwise noted. Typical values are at TA = +25C.) (Note 2) PARAMETER SYMBOL SHDN Input Bias Current ISHDN Shutdown Supply Current IQSHDN CONDITIONS VSHDN = VIN VOUT = 0V TYP MAX TA = +25C MIN 0 100 TA = TMAX 0.05 TA = +25C 0.0001 TA = TMAX 0.02 Shutdown Discharge Resistance (MAX8864) UNITS nA 1 A 300 SET INPUT Set Reference Voltage (Note 4) Set Input Leakage Current (Note 4) VSET ISET VIN = 2.5V to 6.5V, IOUT = 1mA VSET = 1.3V TA = +25C 1.225 1.25 1.275 E temp range 1.215 1.25 1.285 M temp range 1.205 1.25 1.285 TA = +25C 0.015 2.5 TA = TMAX 0.5 V nA THERMAL PROTECTION Thermal Shutdown Temperature Thermal Shutdown Hysteresis TSHDN 170 C TSHDN 20 C Note 2: Limits are 100% production tested at TA = +25C. Limits over the operating temperature range are guaranteed through correlation using Statistical Quality Control (SQC) Methods. Note 3: Guaranteed by line regulation test. Note 4: Adjustable mode only. Note 5: Not tested. For design purposes, the current limit should be considered 120mA minimum to 420mA maximum. Note 6: The dropout voltage is defined as (VIN - VOUT) when VOUT is 100mV below the value of VOUT for VIN = VOUT +2V. Typical Operating Characteristics (VIN = +3.6V, CIN = 1F, COUT = 1F, TA = +25C, MAX886_T, unless otherwise noted.) SUPPLY CURRENT vs. LOAD CURRENT 3.15 3.10 90 85 80 75 70 65 60 3.05 10 20 30 40 50 60 70 80 90 100 LOAD CURRENT (mA) www.maximintegrated.com 50 2.5 2.0 NO LOAD 1.5 1.0 0.5 55 0 3.0 OUTPUT VOLTAGE (V) 3.20 3.5 MAX8863/4-02 95 SUPPLY CURRENT (A) OUTPUT VOLTAGE (V) 3.25 3.00 100 MAX8863/4-01 3.30 OUTPUT VOLTAGE vs. INPUT VOLTAGE MAX8863/4-03 OUTPUT VOLTAGE vs. LOAD CURRENT 0 10 20 30 40 50 60 70 80 90 100 LOAD CURRENT (mA) 0 0 1 2 3 4 5 6 INPUT VOLTAGE (V) Maxim Integrated 3 MAX8863T/S/R, MAX8864T/S/R Low-Dropout, 120mA Linear Regulators Typical Operating Characteristics (continued) (VIN = +3.6V, CIN = 1F, COUT = 1F, TA = +25C, MAX886_T, unless otherwise noted.) 40 30 20 3.15 3.10 2 4 3 5 3.00 6 INPUT VOLTAGE (V) 20 40 80 60 MAX8863/4-07 60 TA = -40C COUT = 10F 40 30 COUT = 1F 20 10 20 0 0 10 20 30 40 50 60 70 80 90 100 0.01 LOAD CURRENT (mA) COUT ESR () -40 -20 0 1 10 100 FREQUENCY (kHz) 1000 20 40 60 80 100 TEMPERATURE (C) 10 OUTPUT SPECTRAL NOISE DENSITY vs. FREQUENCY RL = 50 COUT = 1F 1 COUT = 100F 0.10 0.01 0.1 1 10 100 1000 FREQUENCY (kHz) OUTPUT NOISE DC TO 1MHz MAX8863/64-8B COUT = 1F 100 INTERNAL FEEDBACK 10 VOUT EXTERNAL FEEDBACK 1 STABLE REGION 0.1 0.01 0.1 REGION OF STABLE COUT ESR vs. LOAD CURRENT 1000 30 100 50 80 0 0 VOUT = 3.15V RL = 100W 60 TA = +25C 40 -20 70 PSRR (dB) DROPOUT VOLTAGE (mV) 100 40 POWER-SUPPLY REJECTION RATIO vs. FREQUENCY TA = +85C 120 50 TEMPERATURE (C) DROPOUT VOLTAGE vs. LOAD CURRENT 140 60 0 -40 MAX8863/4-08 1 70 10 OUTPUT SPECTRAL NOISE DENSITY (V//Hz) 0 80 20 3.05 10 0 3.20 ILOAD = 50mA 90 MAX8863/64-8A 50 100 MAX8863/4-05 3.25 ILOAD = 0mA 60 ILOAD = 50mA SUPPLY CURRENT (A) 70 3.30 OUTPUT VOLTAGE (V) SUPPLY CURRENT (A) ILOAD = 50mA MAX8863/4-04 90 80 SUPPLY CURRENT vs. TEMPERATURE OUTPUT VOLTAGE vs. TEMPERATURE MAX8863/4-06 SUPPLY CURRENT vs. INPUT VOLTAGE 0 10 20 30 40 50 60 70 80 90 100 LOAD CURRENT (mA) www.maximintegrated.com 1ms/div ILOAD = 50mA, VOUT IS AC COUPLED Maxim Integrated 4 MAX8863T/S/R, MAX8864T/S/R Low-Dropout, 120mA Linear Regulators Typical Operating Characteristics (continued) (VIN = +3.6V, CIN = 1F, COUT = 1F, TA = +25C, MAX886_T, unless otherwise noted.) LINE TRANSIENT LOAD TRANSIENT 3.16V 3.16V VOUT 3.15V VOUT 3.15V 3.14V 3.14V VIN 4.6V ILOAD 3.6V 50s/div ILOAD = 50mA, VOUT IS AC COUPLED 10s/div ILOAD = 0mA to 50mA, CIN = 10F, VOUT IS AC COUPLED LOAD TRANSIENT LOAD TRANSIENT 3.16V 3.16V VOUT 3.15V VOUT 3.15V 3.14V 3.14V 50mA ILOAD 0mA ILOAD 10s/div 10s/div VIN = VOUT + 0.2V, ILOAD = 0mA to 50mA, CIN = 10F, VOUT IS AC COUPLED VIN = VOUT + 0.1V, ILOAD = 0mA to 50mA, CIN = 10F, VOUT IS AC COUPLED MAX8864 SHUTDOWN (NO LOAD) MAX8864 SHUTDOWN 4V 4V VOUT 2V VOUT 0V VSHDN 2V 0V 2V VSHDN 0V NO LOAD www.maximintegrated.com 500s/div 2V 0V ILOAD = 50mA 200s/div Maxim Integrated 5 MAX8863T/S/R, MAX8864T/S/R Low-Dropout, 120mA Linear Regulators Pin Description PIN NAME FUNCTION 1 SHDN Active-Low Shutdown Input. A logic low reduces the supply current to 0.1nA. On the MAX8864, a logic low also causes the output voltage to discharge to GND. Connect to IN for normal operation. 2 GND 3 IN 4 OUT Regulator Output. Fixed or adjustable from +1.25V to +6.5V. Sources up to 120mA. Bypass with a 1F, < 0.2 typical ESR capacitor to GND. 5 SET Feedback Input for Setting the Output Voltage. Connect to GND to set the output voltage to the preset 2.80V (MAX886_R), 2.84V (MAX886_S), or 3.15V (MAX886_T). Connect to an external resistor- divider for adjustable-output operation. Ground. This pin also functions as a heatsink. Solder to large pads or the circuit board ground plane to maximize thermal dissipation. Regulator Input. Supply voltage can range from +2.5V to +6.5V. Bypass with 1F to GND (see Capacitor Selection and Regulator Stability). Detailed Description The MAX8863/MAX8864 are low-dropout, low-quiescentcurrent linear regulators designed primarily for batterypowered applications. They supply an adjustable 1.25V to 6.5V output or a preselected 2.80V (MAX886_R), 2.84V (MAX886_S), or 3.15V (MAX886_T) output for load currents up to 120mA. As illustrated in Figure 1, these devices consist of a 1.25V reference, error amplifier, MOSFET driver, P-channel pass transistor, Dual ModeTM comparator, and internal feedback voltage divider. The 1.25V bandgap reference is connected to the error amplifier's inverting input. The error amplifier compares this reference with the selected feedback voltage and amplifies the difference. The MOSFET driver reads the error signal and applies the appropriate drive to the IN SHDN P-channel pass transistor. If the feedback voltage is lower than the reference, the pass-transistor gate is pulled lower, allowing more current to pass and increasing the output voltage. If the feedback voltage is too high, the pass-transistor gate is pulled up, allowing less current to pass to the output. The output voltage is fed back through either an internal resistor voltage divider connected to the OUT pin, or an external resistor network connected to the SET pin. The Dual Mode comparator examines the SET voltage and selects the feedback path. If SET is below 60mV, internal feedback is used and the output voltage is regulated to the preset output voltage. Additional blocks include a current limiter, reverse battery protection, thermal sensor, and shutdown logic. REVERSE BATTERY PROTECTION MAX8863 MAX8864 SHUTDOWN LOGIC THERMAL SENSOR GND ERROR AMP P MOS DRIVER WITH ILIMIT N * OUT SET 1.25V REF DUAL-MODE COMPARATOR 60mV * AUTO-DISCHARGE, MAX8864 ONLY Figure 1. Functional Diagram www.maximintegrated.com Maxim Integrated 6 MAX8863T/S/R, MAX8864T/S/R Low-Dropout, 120mA Linear Regulators MAX8863 MAX8864 CIN BATTERY 1F OUTPUT VOLTAGE OUT IN SHDN R1 20pF SET GND R2 COUT 1F RL Figure 2. Adjustable Output Using External Feedback Resistors Internal p-Channel Pass Transistor The MAX8863/MAX8864 feature a 1.1 typical pMOSFET pass transistor. This provides several advantages over similar designs using PNP pass transistors, including longer battery life. Choose R2 = 100k to optimize power consumption, accuracy, and high-frequency power-supply rejection. The total current through the external resistive feedback and load resistors should not be less than 10A. Since the VSET tolerance is typically less than 25mV, the output can be set using fixed resistors instead of trim pots. Connect a 10pF to 25pF capacitor across R1 to compensate for layout-induced parasitic capacitances. In preset voltage mode, impedances between SET and ground should be less than 100k. Otherwise, spurious conditions could cause the voltage at SET to exceed the 60mV Dual Mode threshold. Shutdown A low input on the SHDN pin shuts down the MAX8863/ MAX8864. In shutdown mode, the pass transistor, control circuit, reference, and all biases are turned off, reducing the supply current to typically 0.1nA. Connect SHDN to IN for normal operation. The MAX8864 output voltage is actively discharged to ground when the part is placed in shutdown (see Typical Operating Characteristics). The pMOSFET requires no base drive current, which reduces quiescent current considerably. PNP-based regulators waste considerable amounts of current in dropout when the pass transistor saturates. They also use high base-drive currents under large loads. The MAX8863/MAX8864 do not suffer from these problems, and consume only 80A of quiescent current, whether in dropout, light load, or heavy load applications (see Typical Operating Characteristics). Current Limit Output Voltage Selection Thermal overload protection limits total power dissipation in the MAX8863/MAX8864. When the junction temperature exceeds TJ = +170C, the thermal sensor sends a signal to the shutdown logic, turning off the pass transistor and allowing the IC to cool. The thermal sensor will turn the pass transistor on again after the IC's junction temperature typically cools by 20C, resulting in a pulsed output during continuous thermal overload conditions. The MAX8863/MAX8864 feature Dual Mode operation: they operate in either a preset voltage mode or an adjustable mode. In preset voltage mode, internal, trimmed feedback resistors set the MAX886_R output to 2.80V, the MAX886_S output to 2.84V, and the MAX886_T output to 3.15V. Select this mode by connecting SET to ground. In adjustable mode, select an output between 1.25V and 6.5V using two external resistors connected as a voltage divider to SET (Figure 2). The output voltage is set by the following equation: VOUT = VSET (1 + R1 / R2) where VSET = 1.25V. To simplify resistor selection: V = R1 R2 OUT - 1 VSET www.maximintegrated.com The MAX8863/MAX8864 include a current limiter that monitors and controls the pass transistor's gate voltage, estimating the output current and limiting it to about 280mA. For design purposes, the current limit should be considered 120mA (min) to 420mA (max). The output can be shorted to ground for an indefinite time period without damaging the part. Thermal Overload Protection Thermal overload protection is designed to protect the MAX8863/MAX8864 in the event of fault conditions. Stressing the device with high load currents and high input-output differential voltages (which result in die temperatures above +125C) may cause a momentary overshoot (2% to 8% for 200ms) when the load is completely removed. This can be remedied by raising the minimum load current from 0A (+125C) to 100A (+150C). For continuous operation, do not exceed the absolute maximum junction temperature rating of TJ = +150C. Maxim Integrated 7 MAX8863T/S/R, MAX8864T/S/R Operating Region and Power Dissipation Maximum power dissipation of the MAX8863/MAX8864 depends on the thermal resistance of the case and circuit board, the temperature difference between the die junction and ambient air, and the rate of air flow. The power dissipation across the device is P = IOUT (VIN - VOUT). The resulting maximum power dissipation is: PMAX = (TJ - TA) / JA where (TJ - TA) is the temperature difference between the MAX8863/MAX8864 die junction and the surrounding air, and JA is the thermal resistance of the chosen package to the surrounding air. The GND pin of the MAX8863/MAX8864 performs the dual function of providing an electrical connection to ground and channeling heat away. Connect the GND pin to ground using a large pad or ground plane. Reverse Battery Protection The MAX8863/MAX8864 have a unique protection scheme that limits the reverse supply current to less than 1mA when either VIN or VSHDN falls below ground. The circuitry monitors the polarity of these two pins, disconnecting the internal circuitry and parasitic diodes when the battery is reversed. This feature prevents the device from overheating and damaging the battery. VIN > 5.5V Minimum Load Current When operating the MAX8863/MAX8864 with an input voltage above 5.5V, a minimum load current of 20A is required to maintain regulation in preset voltage mode. When setting the output with external resistors, the minimum current through the external feedback resistors and load must be 30A. Applications Information Capacitor Selection and Regulator Stability Normally, use a 1F capacitor on the input and a 1F capacitor on the output of the MAX8863/MAX8864. Larger input capacitor values and lower ESR provide better supply-noise rejection and transient response. A higher-value input capacitor (10F) may be necessary if large, fast transients are anticipated and the device is www.maximintegrated.com Low-Dropout, 120mA Linear Regulators located several inches from the power source. Improve load-transient response, stability, and power-supply rejection by using large output capacitors. For stable operation over the full temperature range, with load currents up to 120mA, a minimum of 1F is recommended. Noise The MAX8863/MAX8864 exhibit 350VRMS noise during normal operation. When using the MAX8863/MAX8864 in applications that include analog-to-digital converters of greater than 12 bits, consider the ADC's power-supply rejection specifications (see the Output Noise DC to 1MHz photo in the Typical Operating Characteristics). Power-Supply Rejection and Operation from Sources Other than Batteries The MAX8863/MAX8864 are designed to deliver low dropout voltages and low quiescent currents in batterypowered systems. Power-supply rejection is 62dB at low frequencies and rolls off above 300Hz. As the frequency increases above 20kHz, the output capacitor is the major contributor to the rejection of power-supply noise (see the Power-Supply Rejection Ratio vs. Ripple Frequency graph in the Typical Operating Characteristics). When operating from sources other than batteries, improve supply-noise rejection and transient response by increasing the values of the input and output capacitors, and using passive filtering techniques (see the supply and load-transient responses in the Typical Operating Characteristics). Load Transient Considerations The MAX8863/MAX8864 load-transient response graphs (see Typical Operating Characteristics) show two components of the output response: a DC shift of the output voltage due to the different load currents, and the transient response. Typical overshoot for step changes in the load current from 0mA to 50mA is 12mV. Increasing the output capacitor's value and decreasing its ESR attenuates transient spikes. Maxim Integrated 8 MAX8863T/S/R, MAX8864T/S/R Input-Output (Dropout) Voltage A regulator's minimum input-output voltage differential (or dropout voltage) determines the lowest usable supply voltage. In battery-powered systems, this will determine the useful end-of-life battery voltage. Because the MAX8863/ MAX8864 use a pMOSFET pass transistor, their dropout voltage is a function of RDS(ON) multiplied by the load current (see Electrical Characteristics). www.maximintegrated.com Low-Dropout, 120mA Linear Regulators Package Information For the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages. Note that a "+", "#", or "-" in the package code indicates RoHS status only. Package drawings may show a different suffix character, but the drawing pertains to the package regardless of RoHS status. PACKAGE TYPE PACKAGE CODE OUTLINE NO. LAND PATTERN NO. 5 SOT23 U5+1 21-0057 90-0174 Maxim Integrated 9 MAX8863T/S/R, MAX8864T/S/R Low-Dropout, 120mA Linear Regulators Revision History REVISION NUMBER REVISION DATE PAGES CHANGED 3 5/11 Added lead-free designation and updated continuous power dissipation and JA specs 4 7/12 Corrected units for TOC 7 5 4/13 Updated Ordering Information and Electrical Characteristics tables 6 5/16 Updating Ordering Information table DESCRIPTION 1, 2 4 1, 3 1 For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642, or visit Maxim Integrated's website at www.maximintegrated.com. Maxim Integrated cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim Integrated product. No circuit patent licenses are implied. Maxim Integrated reserves the right to change the circuitry and specifications without notice at any time. The parametric values (min and max limits) shown in the Electrical Characteristics table are guaranteed. Other parametric values quoted in this data sheet are provided for guidance. Maxim Integrated and the Maxim Integrated logo are trademarks of Maxim Integrated Products, Inc. (c) 2016 Maxim Integrated Products, Inc. 10 Mouser Electronics Authorized Distributor Click to View Pricing, Inventory, Delivery & Lifecycle Information: Maxim Integrated: MAX8864TEUK+T MAX8863REUK+T MAX8863SEUK+T MAX8864REUK+T MAX8863REUK-T MAX8863TEUK-T MAX8864SEUK-T MAX8864TEUK-T MAX8864SEUK+T MAX8864REUK-T