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 GO-Compatible
Input Voltage Range : 2.2~10.0V Output Voltage Range : 1.5~6.0V (2.5%) Oscillator Frequency : 300kHz (15%) Maximum Duty Ratio : 100% High Efficiency : 92% PWM/PFM Switching Control (XC6366) SOT-25 Package
APPLICATIONS
Electronic information organizers Palmtops Cellular and portable phones Portable audio systems Various multi-function power supplies
GENERAL DESCRIPTION
The XC6365/66 series are multi-functional step-down DC/DC converters with built-in high speed, low ON resistance drivers. An output current of more than 1A is possible using an externally connected transistor, coil, diode and capacitor. Output voltage is programmable in 100mV increments between 1.5V to 6.0V (VOUT) (2.5% accuracy). Further, with 1.0V of standard voltage supply internal and using externally connected components, output voltage can be set up freely (FB). With a 300kHz switching frequency, the size of the external components can be reduced. Control switches from PWM to PFM during light loads with the XC6366 (PWM/PFM switchable) and the series is highly efficient from light loads to large output currents. In relation to soft-start time, both internally set-up 10msec types (A, B) and external resistor or capacitor regulated types (C, D) are available. During stand-by time (CE pin "Low" ), current consumption is reduced to less than 0.5A. With U.V.L.O. internal, the external transistor will be forcibly switched off if used below the stipulated voltage.
FEATURES
Input Voltage Range : 2.2V ~ 10V (VOUT type) Output Voltage Range : 1.5V ~ 6.0V programmable in 100mV increments (2.5%) Oscillation Frequency : 300kHz (15%) : Custom products for 180, 500kHz Output Current High Efficiency : More than 1.0A (VIN=5.0V, VOUT=3.0V) : 92% (TYP.) Stand-by Capability : ISTB=0.5A (MAX.) Soft-start time set-up externally type possible Internally set-up output voltage type possible (VOUT) Externally set-up output voltage type possible (FB) Package : SOT-25
TYPICAL APPLICATION CIRCUIT
TYPICAL PERFORMANCE CHARACTERISTICS
XC6365 6366 ETR0501_001.doc
703
XC6365/6366 Series
PIN CONFIGURATION
PIN ASSIGNMENT
PIN NUMBER 1 2 3 4 5 PIN NAME EXT/ VDD GND CE VOUT (FB) FUNCTION External Transistor Connection Power Supply Ground Chip Enable Soft-Start Capacitor Connection with Soft-Start Externally Set-Up Types (C, D) Output Voltage Monitor FB with Externally Set-Up Types (B, D)
PRODUCT CLASSIFICATION
Selection Guide
704
XC6365/6366
Series
PRODUCT CLASSIFICATION (Continued)
Ordering Information
XC6365 XC6366 DESIGNATOR PWM control PWM/PFM switching control DESCRIPTION SYMBOL A Type of DC/DC Converter B C D Output Voltage 1560 10 3 Oscillation Frequency Package Device Orientation 5 2 M R L DESCRIPTION : VOUT type: Internally set-up, soft-start internally set-up : FB type: Externally set-up, soft-start internally set-up : VOUT type: Internally set-up, soft-start externally set-up : FB type: Externally set-up, soft-start internally set-up : VOUT type: 3.0V output =3, =0 : FB type: 10 fixed =1, =0 fixed : 300kHz : 500kHz (custom) : 180kHz (custom) : SOT-25 (SOT-23-5) : Embossed tape, standard feed : Embossed tape, reverse feed
PACKAGING INFORMATION
SOT-25
705
XC6365/6366 Series
MARKING RULE
Represents product classification
5

4
MARK A B C D
PRODUCT SERIES XC6365A XC6365B XC6365C XC6365D
MARK K L M N
PRODUCT SERIES XC6366A XC6366B XC6366C XC6366D
1
2
3
SOT-25 (TOP VIEW)
Represents integer of output voltage and oscillation frequency OUTPUT VOLTAGE 1.x 2.x 3.x 4.x 5.x 6.x 100 B C D E F H OSCILLATION FREQUENCY (kHz) 180 300 1 2 3 4 5 6 1 2 3 4 5 6 500 B C D E F H
Represents decimal number of output voltage and oscillation frequency OUTPUT VOLTAGE x.0 x.1 x.2 x.3 x.4 x.5 x.6 x.7 x.8 x.9 100 0 1 2 3 4 5 6 7 8 9 OSCILLATION FREQUENCY (kHz) 180 300 0 1 2 3 4 5 6 7 8 9 A B C D E F H K L M 500 A B C D E F H K L M
Represents production lot number 0 to 9, A to Z repeated (G, I, J, O, Q, W excepted)
706
XC6365/6366
Series
BLOCK DIAGRAMS
XC6365, XC6366 Series A, C type (VOUT)
XC6365, XC6366 Series B, D type (FB)
707
XC6365/6366 Series
ABSOLUTE MAXIMUM RATINGS
Ta = 25 PARAMETER VIN Pin Voltage VOUT Pin Voltage FB Pin Voltage CE Pin Voltage EXT/ Pin Voltage EXT/ Pin Current Power Dissipation Operating Temperature Range Storage Temperature Range
Note: Voltage is all ground standardized.
SYMBOL VDD VOUT VFB VCE VEXT/
IEXT/
Pd Topr Tstg
RATINGS -0.3 ~ +12 -0.3 ~ VIN +0.3 -0.3 ~ VIN +0.3 -0.3 ~ VIN +0.3 -0.3 ~ VIN +0.3 100 150 -30 ~ +80 -40 ~ +125
UNITS V V V V V mA mW
ELECTRICAL CHARACTERISTICS
XC6365A333MR, XC6366A333MR PARAMETER SYMBOL Output Voltage VOUT Maximum Input Voltage VIN U.V.L.O. Voltage VUVLO (Minimum Operating Voltage) Supply Current 1 IDD1 Supply Current 2 Stand-by Current Oscillation Frequency Maximum Duty Ratio PFM Duty Ratio CE "High" Voltage CE "Low" Voltage EXT "High" ON Resistance EXT "Low" ON Resistance Efficiency Soft-Start Time IDD2 ISTB FOSC MAXDTY PFMDTY VCEH VCEL REXTBH REXTBL EFFI TSS (VOUT=3.3V, CONDITIONS FOSC=300kHz) MIN. 3.218 10.0 0.9 255 100 15 0.65 5 TYP. 3.300 57 57 15 300 25 16 14 92 10 Ta=25 MAX. UNITS 3.383 V V 2.2 102 102 27 0.5 345 35 0.20 22 19 20 V A A A A kHz % % V V A A %
msec
Same as IDD1, Voltage which EXT/pin voltage holding "H" level No external components, CE=VDD, VOUT=0V No external components, XC6365 CE=VOUT=VDD XC6366 No external components, CE=VOUT=0V Measuring of EXT/ waveform, VIN=output voltage + 0.1V No load (XC6366 only) No external components, VOUT=0V, Voltage which EXT/pin voltage holding "L" level No external components, VOUT=0V, Voltage which EXT/pin voltage holding "H" level Same as IDD2, VEXT/=VDD-0.4V Same as IDD1, VEXT/=0.4V Use of a XP162A12A6 transistor recommended Connect RSS, CSS, CE, 0V 3.0V (When VIN3.0V, VIN=3.0V)
Conditions: 1. Unless otherwise stated, connect external components. VIN=VDD = 5.0V, IOUT = 220mA 2. XC6365/66C series external components: CSS=0.033F, RSS=470k
708
XC6365/6366
Series
ELECTRICAL CHARACTERISTICS (Continued)
XC6365A503MR, XC6366A503MR PARAMETER SYMBOL Output Voltage VOUT Maximum Input Voltage VIN U.V.L.O. Voltage VUVLO (Minimum Operating Voltage) Supply Current 1 IDD1 Supply Current 2 Stand-by Current Oscillation Frequency Maximum Duty Ratio PFM Duty Ratio CE "High" Voltage CE "Low" Voltage EXT "High" ON Resistance EXT "Low" ON Resistance Efficiency Soft-Start Time
Conditions:
(VOUT=5.0V, FOSC=300kHz) CONDITIONS MIN. 4.875 10.0 0.9 255 100 15 0.65 5 TYP. 5.000 67 67 16 300 25 12 10 93 10
Ta=25 MAX. UNITS 5.125 V V 2.2 122 122 29 0.5 345 35 0.20 17 14 20 V A A A A kHz % % V V A A % msec
IDD2 ISTB FOSC MAXDTY PFMDTY VCEH VCEL REXTBH REXTBL EFFI TSS
Same as IDD1, Voltage which EXT/pin voltage holding "H" level No external components, CE=VDD, VOUT=0V No external components, XC6365 CE=VOUT=VDD XC6366 No external components, CE=VOUT=0V Measuring of EXT/ waveform, VIN=output voltage + 0.1V No load (XC6366 only) No external components, VOUT=0V, Voltage which EXT/pin voltage holding "L" level No external components, VOUT=0V, Voltage which EXT/pin voltage holding "H" level Same as IDD2, VEXT/=VIN-0.4V Same as IDD1, VEXT/=0.4V Use of a XP162A12A6 transistor recommended Connect RSS, CSS, CE, 0V 3.0V (When VIN3.0V, VIN=3.0V)
1. Unless otherwise stated, connect external components. VIN=VDD = 7.5V, IOUT = 330mA 2. XC6365/66C series external components: CSS=0.033F, RSS=470k
709
XC6365/6366 Series
ELECTRICAL CHARACTERISTICS (Continued)
XC6365A103MR, XC6366A103MR PARAMETER SYMBOL Output Voltage VOUT Maximum Input Voltage VIN U.V.L.O. Voltage VUVLO (Minimum Operating Voltage) Supply Current 1 IDD1 Supply Current 2 Stand-by Current Oscillation Frequency Maximum Duty Ratio PFM Duty Ratio CE "High" Voltage CE "Low" Voltage EXT "High" ON Resistance EXT "Low" ON Resistance Efficiency Soft-Start Time IDD2 ISTB FOSC MAXDTY PFMDTY VCEH VCEL REXTBH REXTBL EFFI TSS CONDITIONS (VOUT=3.0V, FOSC=300kHz) MIN. 2.975 10.0 0.9 255 100 15 0.65 5 TYP. 3.000 55 55 15 300 25 17 15 92 10 Ta=25 MAX. UNITS 3.075 V V 2.2 100 100 27 0.5 345 35 0.20 24 20 20 V A A A A kHz % % V V A A % msec
Same as IDD1, Voltage which EXT/pin voltage holding "H" level No external components, CE=VIN, VOUT=0V No external components, XC6365 CE=VDD, FB=1.2V XC6366 No external components, CE=FB=0V Measuring of EXT/ waveform, VIN=output voltage + 0.1V No load (XC6366 only) No external components, FB=0V, Voltage which EXT/pin voltage holding "L" level No external components, VOUT=0V, Voltage which EXT/pin voltage holding "H" level Same as IDD2, VEXT/=VIN-0.4V Same as IDD1, VEXT/=0.4V Use of a XP162A12A6 transistor recommended Connect RSS, CSS, CE, 0V 3.0V (When VIN3.0V, VIN=3.0V)
VIN=VDD = 4.5V, IOUT = 200mA
Conditions: 1. Unless otherwise stated, connect external components. 3. RFB1 = 400k, RFB2 = 200k, CFB = 100ppF
2. XC6365/66C series external components: CSS=0.033F, RSS=470k
710
XC6365/6366
Series
TEST CIRCUITS
Circuit 1. XC6365A, XC6366A
Circuit 2. XC6365B, XC6366B
Circuit 3. XC6365C, XC6366C
711
XC6365/6366 Series
TEST CIRCUITS (Continued)
Circuit 4. XC6365D, XC6366D
Circuit 5. XC6365A, XC6366A (when used with a PNP transistor)
Circuit 6. XC6365B, XC6366B (when used with a PNP transistor)
712
XC6365/6366
Series
TEST CIRCUITS (Continued)
Circuit 7. XC6365C, XC6366C (when used with a PNP transistor)
Circuit 8. XC6365D, XC6366D (when used with a PNP transistor)
Recommended Components Tr : XP162A12A6PR (Torex P-channel Power MOSFET) Please use a PNP transistor where VIN < 2.5V L : 22H (CR54, SUMIDA, FOSC=300kHz) 47H (CR75, SUMIDA, FOSC=180kHz) 10H (CR54, SUMIDA, FOSC=500kHz) SD : MA2Q735 (Schottky Diode, MATSUSHITA) CL :10V, 47F (Tantalum capacitor, NICHICHEMl MCE) CIN :16V 10F (Tantalum capacitor, NICHICHEMI MCE) PNP Tr. Type Tr : 2SA1213 (TOSHIBA) RB : 500(Adjust according to load and Tr. hFE levels) CB : 2200pF (Ceramic Type) Set up so that CB1 / (2 x RB x FOSC x 0.7)
C, D type (soft-start externally set-up) CSS : 0.033F (Ceramic Capacitor) RSS : 470k(C type), 330k(D type) B, D type (FB type) RFB : Set up so that RFB1 / RFB2 = VOUT - 1 (VOUT = setting output voltage), RFB1 = RFB2 2M CFB : Set up so that fzfb = 1/(2 x CFB x RFB1) is within the 0.5 to 20kHz range (10kHz conventional) Adjustments necessary in respect of L, CL. e.g. : VOUT = 3.0V RFB1 = 400k, RFB2 = 200k, CFB = 100pF
713
XC6365/6366 Series
NOTES ON USE
1. Take ample care to ensure that none of the IC's, nor the external component's, absolute maximum ratings are exceeded. 2. Be extremely careful when selecting parts and do not limit your reference to the specifications and characteristics for the DC/DC converter alone. The IC also depends, to a great extent, upon the external components. 3. Arrange the peripherals in the environs of the IC. In order to reduce wiring impedance, use short, thick wires. In particular, wire the load capacitor as close as possible and strengthen the ground wiring sufficiently. 4. Ground current during switching may cause the IC's operations to become unstable due to changes in ground voltage, so please strengthen the IC's GND pin surroundings.
External Components
1. Setting soft start time To set a longer soft start time, please use XC6365C or XC6365D series which soft start function is externally set up. For the measurement of soft start time TSS, the time is needed to be between the maximum and the minimum value indicated in the chart below. Please set a soft start capacitor CSS according to the application.
2. Setting RFB1 and CFB fzfb=1 / (2 x CFB x RFB1) As the combination of RFB1 and CFB enable to set fzfb between 0.5kHz to 20kHz, within the realm of fzfb=0.5kHz to fzfb=20kHz as the chart below can be effective. Under normal condition, please set the combination to configure around fzfb=10kHz.
714
XC6365/6366
Series
TYPICAL PERFORMANCE CHARACTERISTICS
715
XC6365/6366 Series
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
(Continued)
716
XC6365/6366
Series
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
717
XC6365/6366 Series
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
(Continued)
718
XC6365/6366
Series
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
719
XC6365/6366 Series
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
(Continued)
720
XC6365/6366
Series
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
721
XC6365/6366 Series
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
722
XC6365/6366
Series
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
723


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