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Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 DESCRIPTION The KB1365, step-down constant-current high-brightness LED (HB LED) drivers provide a cost-effective solution for automotive interior/exterior lighting,architectural and ambient lighting, LED bulbs such as MR16 and other LED illumination applications. The KB1365 operate from a 5.5V to 40V input voltage range and feature a 5V/10mA on-board regulator. A highside current-sense resistor adjusts the output current and a dedicated PWM input (DIM) enables a wide range of pulsed dimming. The KB1365 is well suited for applications requiring a wide input voltage range. The high-side currentsensing and an integrated current-setting circuitry minimize the number of external components while delivering an LED current with +/-5% accuracy. A hysteretic control algorithm ensures excellent input-supply rejection and fast response during load transients and PWM dimming. The KB1365 features a 20% inductor current ripple. These devices operate up to 2MHz switching frequency, thus allowing for small component size. Power LED Driver FEATURES * 5.5V to 40V Input Voltage Range * High-Side Current Sense 2MHz High-Brightness LED Drivers with High-Side Current Sense and 5000:1 Dimming * 20kHz Maximum Dimming Frequency * Hysteretic Control: No Compensation * 200mV Low Reference Voltage(5%) * Dedicated Dimming Control Input * Up to 2MHz Switching Frequency * Adjustable Constant LED Current * Up to 5A Constant Current Output * 5V, 10mA On-Board Regulator * -40 to +125 Operating Temperature Range * SOT23-6 package APPLICATIONS * MR16 and Other LED Bulbs * Power Led driver * Constant Current Source SIMPLIFIED BLOCk DIAGRAM COMPARATOR CSN 1.23V COMPARATOR DIM 2 PWM Signal DIM BUFFER REV: 1.0 - + 1 - * * * 4.7 F 4.7 F IN VCC 3 See Note2 On Page 4 REGULATOR 5V 4 1F IN-200mV 20mV CS + UVLO GATE DRIVER DRV 5 GND 6 KB1365 1 Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 PIN CONFIGURATION SOT23-6 SOT23-6 CSN 1 DIM 2 IN 3 6 GND 5 DRV 4 VCC ORDER INFORMATION Part number KB1365GRE Package SOT23-6,Green Marking xxxx,Date Code with one bottom line PIN DESCRIPTION PIN 1 2 3 4 5 6 NAME IN CSN DIM GND DRV VCC Current-Sense Input Logic-Level Dimming Input. Drive DIM low to turn off the current regulator. Drive DIM high to enable the current regulator. Ground Gate Drive Output. Connect to the gate of an external n-channel MOSFET. Voltage Regulator Output. Connect a 1F capacitor from VCC to GND. FUNCTION Positive Supply Voltage Input. Bypass with a 1F or higher value capacitor to GND. SOT23-6 ABSOLUTE MAXIMUM RATINGS IN, CSN, DIM to GND .............................................-0.3V to +40V VCC, DRV to GND ....................................................-0.3V to +6V CSN to IN...............................................................-0.3V to +0.3V Maximum Current into Any Pin (except IN, VCC, and DRV)............................................20mA Continuous Power Dissipation (TA = +70C) 6-Pin SOT ...............................................................350mW Operating Temperature Range .........................-40C to +125C Junction Temperature ......................................................+150C Storage Temperature Range .............................-65C to +150C Lead Temperature (soldering, 10s) .................................+300C Pin-to-Pin ESD Ratings (HB Model).....................................2.5kV *As per JEDEC51 Standard (Single-Layer Board). 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. REV: 1.0 2 Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 RECOMMENDED OPERATION CONDITIONS Parameter Power supply voltage Operating temperature Symbol VIN Top Min. 5.5 -40 Values Typ. +25 Max. 40 +125 Unit V ELECTRICAL CHARACTERISTICS (VIN = 12V, VDIM = VCC CVCC = 1F, RSENSE = 0.5 , TA = TJ = -40C to +125C, unless otherwise noted. Typical values are at , TA = +25C.) (Note 1) PARAMETER Input Voltage Range Maximum Current Regulator Switching Frequency Ground Current Supply Current SYMBOL VIN fSW IGND IIN DRV open VDIM < 0.6V VIN = VCSN = VDIM, VIN rising from 4V until VDRV > VCC - 0.5V VIN = VCSN = VDIM, VIN falling from 6V, VDRV < 0.5V Undervoltage Lockout Hysteresis SENSE COMPARATOR (VIN - VCSN) rising from 0V until VDRV < 0.5V (25 ) Sense Voltage Threshold High VSNSHI (VIN - VCSN) rising from 0V until VDRV < 0.5V (-40 to +125 ) (VIN - VCSN) falling from 0.26V until VDRV > (VCC - 0.5V) (25 ) (VIN - VCSN) falling from 0.26V until VDRV > (VCC - 0.5V) (-40 to +125 ) Falling edge of (VIN - VCSN) from 0.26V to 0V to DRV high, CDRV = 1nF Rising edge of (VIN - VCSN) from 0V to 0.26V to DRV low, CDRV = 1nF (VIN - VCSN) = 200mV 0.5V (25 ) 40 40 0.5V (-40 to +125 ) 215 210 175 170 220 220 180 180 82 82 1 50 60 225 mV 230 185 mV 190 ns ns A mV mV 0.5 4.7 CONDITIONS MIN 5.5 TYP MAX 40.0 2 1.5 425 5.0 V 4.5 V UNITS V MHz mA A Undervoltage Lockout UVLO Sense Voltage Threshold Low VSNSLO Propagation Delay to Output High Propagation Delay to Output Low Current-Sense Input Current Current-Sense Threshold Hysteresis tDPDH tDPDL ICSN CSHYS REV: 1.0 3 Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 ELECTRICAL CHARACTERISTICS (VIN = 12V, VDIM = VCC CVCC = 1F, RSENSE = 0.5 , TA = TJ = -40C to +125C, unless otherwise noted. Typical values are at , TA = +25C.) (Note 1) PARAMETER GATE DRIVER Gate Driver Source Current Gate Driver Sink Current Gate Driver Output-Voltage High Gate Driver Output-Voltage Low DIM INPUT Maximum DIM Frequency DIM Input-Voltage High DIM Input-Voltage Low DIM Hysteresis DIM Turn-On Time DIM Turn-Off Time DIM Input Leakage High DIM Input Leakage Low VCC REGULATOR Regulator Output Voltage Load Regulation Line Regulation Power-Supply Rejection Ratio Current Limit Regulator Startup Time PSRR ILIM tSTRAT VCC IVCC = 0.1mA to 10mA, VIN = 5.5V to 40V IVCC = 0.1mA to 10mA, VIN = 5.5V to 40V IVCC = 0.1mA to 10mA, VIN = 12V VIN = 6V to 40V, IVCC = 10mA VIN = 12V, IVCC = 5mA, fIN = 10kHz VIN = 5.5V, VCC = 0V VIN = 5.5V, VCC = 4V VCC = 0 to 5.5V 4.5 4.0 4 11 -35 45 18 350 5.5 5.5 V V mV dB mA mA us fDIM VIH VIL DIMHYS tDIMON tDIMOFF DIM rising edge to VDRV = 0.5 x VCC, CDRV = 1nF DIM falling edge to VDRV = 0.5 x VCC, CDRV = 1nF VDIM = VIN VDIM = 0V -1 VCSN = VIN, increase DIM until VDRV > (VCC - 0.5V) VCSN = VIN, decrease DIM until VDRV < 0.5V 200 100 100 10 +1 2.8 20 6.0 0.6 kHz V V mV ns ns A A VOH VOL VCSN = VIN, VDRV = 0.5 x VCC VCSN = VIN - 250mV, VDRV = 0.5 x VCC IDRV = 10mA IDRV = -10mA VCC - 0.5 0.5 0.5 1 A A V V SYMBOL CONDITIONS MIN TYP MAX UNITS Note 1: All devices are 100% production tested at TJ = +25C and +125C. Limits to -40C are guaranteed by design. Note 2: Vin Bypass Capacitor 2 2R 1uF Many types of capacitors can be used for input bypassing, however, caution must be exercised when using multilayer ceramic capacitors. Because of the self-resonant and high Q characteristics of some types of ceramic capacitors, high voltage transients can be generated under some start-up conditions, such as connecting the charger input to a live power source. Adding a 2.2 resistor in series with an X5R ceramic capacitor will minimize start-up voltage transients. DIM(6V max) Rs LED+ LED D VIN 4 7uF 4 7uF L 100uH KB1365 NMOS GND Layout suggestion REV: 1.0 4 Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 TYPICAL PERFORMANCE CHARACTERISTICS (VIN = VDIM = 12V, CVCC = 1F, RSENSE = 0.5 noted.) EFFICIENCY vs. VIN 1,3 and 7 LEDs L = 100 H connected between IN and CSN. Typical values at TA = +25C, unless otherwise DRV SWITCHING FREQUENCY vs. VIN 1500 1400 1300 1200 1100 1000 900 800 700 600 500 400 300 200 100 0 0 LED CURRENT VARIATION FROM SET CURRENT (%) 2.0 1.5 1.0 0.5 0 -0.5 -1.0 -1.5 -2.0 5 LED 5 LED 4 LED 3 LED 2 LED 1 LED CURRENT VARIATION vs. VIN ILED(NOMINAL) = 400mA L = 100 H LED 1 LED 2 100 95 3 Led 7 Led 90 Efficiency (%) 85 80 75 70 65 60 0 10 20 Supply Voltage VIN (V) 1 Led DRV SWITCHING FREQUENCY (kHz) L = 47H 8 12 20 VIN (V) 26 32 40 LED 3 15 20 LED 4 25 VIN (V) LED 5 30 40 30 40 VCC vs. VIN 5.5 5.4 5.3 5.2 VCC (V) VCC (V) 5.1 5.0 4.9 4.8 4.7 4.6 4.5 5.0 7.5 10.0 12.5 15.0 17.5 20.0 22.5 25.0 40 VIN (V) ILED = 0 5.40 5.39 5.38 5.37 5.36 5.35 5.34 5.33 5.32 5.31 5.30 VCC vs. TEMPERATURE 500 VIN = 24V 450 VIN = 12V SUPPLY CURRENT (A) 400 350 SUPPLY CURRENT vs. VIN VDIM = 0V -40 -25 -10 5 20 35 50 65 80 95 110 125 TEMPERATURE (C) 4.5 8.5 12.5 16.5 VIN (V) 20.5 VDIM = 0V 24.5 40 PWM DIMMING AT 200Hz (10% DUTY CYCLE) VIN = 12V, L = 47H, 1 LED VDIM 2V/div PWM DIMMING AT 200Hz (90% DUTY CYCLE) VIN = 12V, L = 47H, 1 LED VDIM 2V/div 0V ILED 200mA/div 0A 0V ILED 200mA/div 0A 1ms/div 1ms/div REV: 1.0 5 Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 TYPICAL PERFORMANCE CHARACTERISTICS (VIN = VDIM = 12V, CVCC = 1F, RSENSE = 0.5 noted.) connected between IN and CSN. Typical values at TA = +25C, unless otherwise PWM DIMMING AT 200Hz (1% DUTY CYCLE) VIN = 12V, L = 47H, 1 LED VDIM 2V/div PWM DIMMING EXPANDED (50% DUTY CYCLE) VIN = 24V, L = 33H, 4 LEDS VDIM 2V/div PWM DIMMING EXPANDED (50% DUTY CYCLE) VIN = 12V, L = 47H, 1 LED VDIM 2V/div 0V ILED 200mA/div 0A 0V ILED 200mA/div 0A 0V ILED 200mA/div 0A 10s/div 1s/div 4s/div PWM DIMMING AT 20kHz (10% DUTY CYCLE) VIN = 24V, L = 47H, 4 LEDS VDIM 2V/div 0V ILED 200mA/div 0A PWM DIMMING AT 20kHz (90% DUTY CYCLE) LED CURRENT VARIATION FROM SET CURRENT (%) VIN = 24V, L = 33H, 4 LEDS VDIM 2V/div 0V ILED 200mA/div 2.0 1.5 1.0 0.5 0 -0.5 -1.0 -1.5 ILED VARIATION vs. TEMPERATURE ILED(NOMINAL) = 400mA L = 100 H VIN = 24V VIN = 12V 0A VDIM = 0V -2.0 -40 -25 -10 5 20 35 50 65 80 95 110 125 TEMPERATURE (C) 10s/div 10s/div REV: 1.0 6 Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 a dedicated PWM dimming input (DIM) allows for a wide range of independent pulsed dimming. The high-side current-sensing scheme and on-board current-setting circuitry minimize the number of external components while delivering LED current with a 5% accuracy, using a 1% sense resistor. See the Functional Diagram. For the values of VSNSHI and VSNSLO, see the Electrical Characteristics. Detailed Description The KB1365 are step-down, constantcurrent, high-brightness LED (HB LED) drivers. These devices operate from a 5.5V to 40V input voltage range and provide up to 0.5A of source and 1A of sink drive capability to the gate of an external MOSFET. A highside current-sense resistor sets the output current and Undervoltage Lockout (UVLO) The KB1365 include a 5.0V undervoltage lockout (UVLO) with 500mV hysteresis. When VIN falls below 4.5V, DRV goes low, turning off the external n-channel MOSFET. DRV goes high once VIN is 5V or higher. Current Regulator Operation The KB1365 regulate the LED output current using an input comparator with hysteresis (Figure 1). As the current through the inductor ramps up and the voltage across the sense resistor reaches the upper threshold, the voltage at DRV goes low, turning off the external MOSFET. The MOSFET turns on again when the inductor current ramps down through the freewheeling diode until the voltage across the sense resistor equals the lower threshold. Use the following equation to determine the operating frequency: fSW = 5V Regulator VCC is the output of a 5V regulator capable of sourcing 10mA. Bypass VCC to GND with a 1F capacitor. DIM Input The KB1365 allow dimming with a PWM signal at the DIM input. A logic level below 0.6V at DIM forces the KB1365's DRV output low, turning off the LED current. To turn the LED current on, the logic level at DIM must be at least 2.8V. (VIN - n x VLED ) x n x VLED x RSENSE VIN x V x L where n = number of LEDs, VLED = forward voltage drop of one LED, and V = (VSNSHI - VSNSLO). Applications Information Setting nominal average output current with external resistor RS The nominal average output current in the LED(s) is determined by the value of the external current sense resistor (RS) connected between VIN and CSN and is given by: IOUTnom = 0.2/RS The table below gives values of nominal average output current for several preferred values of current setting resistor (RS) in the typical application circuit shown on page 1: RS ( ) 0.1 0.2 0.57 Nominal average output current (mA) 2000 1000 350 Rs Power (w) Rs selection 0.4 0.2 0.07 0805:0.3R//0.3R//0.3R 0805:0.1R+0.1R 0805:1R//2.2R//3.6R Inductor selection Recommended inductor values for the KB1365 are in the range 22 H to 220 H(100 H Typ.). REV: 1.0 7 Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 APPLICATION CIRCUIT VIN 6V to 40V 0.2R 2.2R 4.7 F L * * * 4.7 F 100uH 1N5819 See Note2 On Page 4 1F 3 IN 1 CSN 2 DIM VCC 4 5 KB1365 DRV KBM2302CA:20V/3.6A SOT23 KBM2360CA:60V/2.5A SOT23 GND 6 PWM Signal or Vcc Figure 1a.KB1365 Typical Application Circuit with 1A Output . VIN 6V to 40V 0.1R 2.2R 4.7 F L * * * 4.7 F 100uH 1N5819*2 See Note2 On Page 4 1F 3 IN 1 CSN 2 DIM VCC 4 5 KB1365 DRV GND 6 KBM2302CA:20V/3.6A SOT23 KBM2360CA:60V/2.5A SOT23 CEU6426:60V 15A,NMOS,TO-252(D-PAK) PWM Signal or Vcc Figure 1a.KB1365 Typical Application Circuit with 2A Output . REV: 1.0 8 Kingbor Technology Co.,Ltd TEL:(86)0755-26508846 FAX:(86)0755-26509052 KB1365 PACAGE DESCRIPTION Small Outline SOT23-6 PACKAGE OUTLINE PAD LAYOUT DETAILS b e L 2 E E1 e1 D A A2 a DATUM A C A1 CONTROLLING DIMENSIONS IN MILLIMETRES APPROX CONVERSIONS INCHES. PACKAGE DIMENSIONS Millimetres DIM Min A A1 A2 b C D 0.90 0.00 0.90 0.35 0.09 2.80 Max 1.45 0.15 1.30 0.50 0.20 3.00 Min 0.35 0 0.035 0.014 0.0035 0.110 Max 0.057 0.006 0.051 0.019 0.008 0.118 E E1 L e e1 L Inches DIM Min 2.60 1.50 0.10 Max 3.00 1.75 0.60 Min 0.102 0.059 0.004 Max 0.118 0.069 0.002 Millimetres Inches 0.95 REF 1.90 REF 0 10 0.037 REF 0.074 REF 0 10 Kingbor Technology TEL:(86)0755-26508846 FAX:(86)0755-26509052 www.kingbor.com 9 |
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