Enpirion(R) Power Datasheet EP5368QI 600mA PowerSoC Synchronous Buck Regulator With Integrated Inductor Description Features The EP5368QI is a synchronous buck converter with integrated Inductor, PWM controller, MOSFETS, and Compensation providing the smallest possible solution size. The EP5368QI requires only two small MLCC capacitors to make a complete solution. Integration of the inductor greatly simplifies design, contains noise, reduces part count, and reduces solution footprint. Low output ripple ensures compatibility with RF systems. * * * * * * * * * * * * * * * The EP5368QI operates at a switching frequency of 4 MHz, enabling this unprecedented level of integration and small external components. Type III voltage mode control is used to provide high noise immunity and wide control loop bandwidth. The device can source 600mA of current over the industrial temperature range and up to 700mA over the commercial temperature range. The small footprint makes this part ideal for space constrained applications. Output voltage is programmed via a 3-pin VID selector providing seven pre-programmed output voltages along with an option for external resistor divider. Integrated Inductor 3mm x 3mm x 1.1mm QFN package Only two low cost MLCC caps required 4 MHz switching frequency High efficiency, up to 94% Up to 700mA continuous output current Wide 2.4V to 5.5V input range VOUT Range 0.603V to VIN - 0.4V 100% duty cycle capable Less than 1 A standby current Low VOUT ripple for RF compatibility Short circuit and over current protection UVLO and thermal protection Stable over entire operating range RoHS compliant; MSL 3 260C reflow Applications * * * * * Noise sensitive RF applications Area constrained applications Smart phones and PDAs Personal Media Players Advanced Mobile Processors, DSP, IO, Memory, Video, Multimedia Engines Figure 1. Features Integrated Inductor Technology Figure 2. Typical Application Schematic www.altera.com/enpirion 03260 February 11, 2016 Rev I EP5368QI Ordering Information TAMBIENT Rating Part Number (C) Package -40 to +85 16-pin (3mm x 3mm x 1.1mm) QFN T&R EP5368QI EP5368QI-E EP5368QI Evaluation Board Packing and Marking Information: www.altera.com/support/reliability/packing/rel-packing-and-marking.html NC(SW) PGND 16 15 14 VIN 2 13 ENABLE NC 3 12 VS0 VFB 4 11 VS1 VSENSE 5 10 VS2 AGND 6 9 NC 7 8 VOUT 1 VOUT NC(SW) NC(SW) Pin Assignments (Top View) Figure 3. Pin Out Diagram (Top View) NOTE A: White `dot' on top left is pin 1 indicator on top of the device package. Pin Description PIN NAME FUNCTION 1, 15, 16 NC (SW) NO CONNECT - These pins are internally connected to the common switch node of the internal MOSFETs. NC(SW) pins are not to be electrically connected to any external signal, voltage, or ground. These pins must be soldered to the PCB. Failure to follow this guideline may result in part malfunction or damage. 2 PGND 3,9 NC NO CONNECT - These pins are not electrically connected internally. They may be connected to ground externally if necessary to increase trace width in layout. These pins must be soldered to the PCB. 4 VFB Feedback pin for external divider option. When using the external divider option (VS0=VS1=VS2= high) connect this pin to the center of the external divider. Set the divider such that VFB = 0.603V. The "ground" side of the external divider should be connected to AGND. This pin may be left unconnected when using VID mode. 5 VSENSE 6 AGND Analog ground. This is the quiet ground for the internal control circuitry. 7, 8 VOUT Regulated Output Voltage Power Ground Sense pin for preset output voltages. Connect to the output capacitor. Must be left unconnected when operating at 700mA load current. (Refer to section on operation at 700mA output current for more detail.) 2 03260 February 11, 2016 www.altera.com/enpirion Rev I EP5368QI PIN NAME FUNCTION 10, 11, 12 VS2, VS1, VS0 Output voltage select. VS2=pin10, VS1=pin11, VS0=pin12. Selects one of seven preset output voltages or choose external divider by connecting pins to logic high or low. Logic low is defined as VLOW 0.4V. Logic high is defined as VHIGH 1.4V. Any level between these two values is indeterminate. (Refer to section on output voltage select for more detail.) 13 ENABLE Output enable: Enable = logic high, disable = logic low. Logic low is defined as VLOW 0.4V. Logic high is defined as VHIGH 1.4V. Any level between these two values is indeterminate. 14 VIN Input voltage pin. Supplies power to the IC. 3 03260 February 11, 2016 www.altera.com/enpirion Rev I EP5368QI Absolute Maximum Ratings CAUTION: Absolute Maximum ratings are stress ratings only. Functional operation beyond the recommended operating conditions is not implied. Stress beyond the absolute maximum ratings may cause permanent damage to the device. Exposure to absolute maximum rated conditions for extended periods may affect device reliability. PARAMETER SYMBOL MIN MAX UNITS VIN -0.3 7.0 V Voltages on: ENABLE, VSENSE, VS0 - VS2 -0.3 VIN +0.3 V Voltage on: VFB -0.3 2.7 V -65 150 C Reflow Temp, 10 Sec, MSL3 JEDEC J-STD-020C 260 C ESD Rating (based on Human Body Mode) 2000 V Input Supply Voltage Storage Temperature Range TSTG Recommended Operating Conditions SYMBOL MIN MAX UNITS Input Supply Voltage PARAMETER VIN 2.4 5.5 V Operating Ambient Temperature TA - 40 85 C Operating Junction Temperature TJ - 40 125 C SYMBOL TYP UNITS JA 85 C/W TJ-TP 150 C 15 C Thermal Characteristics PARAMETER Thermal Resistance: Junction to Ambient (0 LFM) Thermal Overload Trip Point Thermal Overload Trip Point Hysteresis 4 03260 February 11, 2016 www.altera.com/enpirion Rev I EP5368QI Electrical Characteristics NOTE: TA = -40C to +85C unless otherwise noted. Typical values are at TA = 25C, VIN = 3.6V CIN = 4.7F 0603 MLCC, COUT = 22F 0805 MLCC PARAMETER SYMBOL Operating Input Voltage Range VIN Under Voltage Lock-out - VIN Rising VUVLO_R Under Voltage Lock-out - VIN Falling VUVLO_F Drop Out Resistance RDO Input to Output Resistance in 100% duty cycle operation. Output Voltage Range (Note 1) VOUT External Feedback Mode VID Mode Dynamic Voltage Slew Rate (VID Change) VSLEW VOUT Initial Accuracy (VID Preset Mode) VOUT_INITIAL TA = 25C, VIN = 3.6V; ILOAD = 100mA ; 0.8V VOUT 3.3V VOUT_ALL -40C TA +85C 2.4V VIN 5.5V; 0.8V VOUT 3.3V 0A ILOAD 700A VFB_INITIAL TA = 25C, VIN = 3.6V; ILOAD = 100mA ; 0.8V VOUT 3.3V 0.591 Feedback Pin Voltage Accuracy over line, load, and temperature variations VFB_ALL -40C TA +85C 2.4V VIN 5.5V; 0.8V VOUT 3.3V 0A ILOAD 700A 0.585 Feedback Pin Input Current IFB Continuous Output Current IOUT VIN = 5V, 0.603V