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Technical content

Features

 Wide Supply Voltage Operating Range: 3.6 to 28V  Built-in P-MOSFET for 3A Loading Capability  Precision Feedback Reference Voltage: 0.25V (2%)  Low Current Consumption: 4mA  Internal Fixed Oscillator Frequency: 320KHz (Typ.)  Internal Soft-Start Function (SS)  Over Current Protection  Package: SOP-8L& SOP-8L(EP) Typical Application Circuit FP7103 VIN VCC COMP FBEN LX LX GNDGND ON/OFF

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . Function Block Diagram 2.50V Output Drive Control Circuits Internal Soft Start Circuit Reference Regulator Oscillator VCC FB 0.25V 500 36K COMP GND GND LX LX Thermal Shutdown Over Current Protection Enable Control EN

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . Pin Descriptions SOP- 8L FB COMP VCC GND LX FP7103 9Fa-86L Top View EN LX GND SOP-8L (EP) FB COMP VCC GND LX FP7103 9Fa-86L Top View EN LX GND EP Bottom View Name No. I / O Description FB 1 I Error Amplifier Inverting Input EN 2 I Enable Control COMP 3 O Error Amplifier Compensation Output VCC 4 P IC Power Supply (PMOS Source) LX 5 P PMOS High Current Output LX 6 P PMOS High Current Output GND 7 O IC Ground GND 8 O IC Ground Name No. I / O Description FB 1 I Error Amplifier Inverting Input EN 2 I Enable Control COMP 3 O Error Amplifier Compensation Output VCC 4 P IC Power Supply (PMOS Source) LX 5 P PMOS High Current Output LX 6 P PMOS High Current Output GND 7 O IC Ground GND 8 O IC Ground EP 9 P Exposed PAD. Must connect to LX

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . Marking Information SOP-8L & SOP-8L (EP) Halogen Free Lot Number Internal ID Per-Half Month Year FP7103 Halogen Free: Halogen free product indicator Lot Number: Wafer lot number’s last two digits For Example: 132386TB  86 Internal ID: Internal Identification Code Per-Half Month: Production period indicated in half month time unit For Example: January → A (Front Half Month), B (Last Half Month) February → C (Front Half Month), D (Last Half Month) Year: Production year’s last digit

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product .

Ordering Information

IR Re-flow Soldering Curve Part Number Operating Temperature Package MOQ Description FP7103DR-LF -25°C ~ +85°C SOP-8L 2500EA Tape & Reel FP7103XR-LF -25°C ~ +85°C SOP-8L (EP) 2500EA Tape & Reel Parameter Symbol Conditions Min. Typ. Max. Unit Power Supply Voltage VIN 28 V Output Source Current 3 A Error Amplifier Inverting Input -0.3 +1.2 V Allowable Dissipation TA≦+25℃ 650 mW Thermal Resistance Junction to Ambient θJA +175 ℃ / W Thermal Resistance Junction to Case θJC +45 ℃ / W ESD Susceptibility HBM (Human Body Mode) 2 KV MM (Machine Mode) 200 V Storage Temperature -55 +125 ℃ Lead Temperature (soldering, 10 sec) +260 ℃

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . Recommended Operating Conditions Parameter Symbol Conditions Min. Typ. Max. Unit Supply Voltage VIN 3.6 28 V Operating Temperature -25 85 ℃ Parameter Symbol Conditions Min. Typ. Max. Unit Reference Output Voltage VREF FB connected to COMP 0.245 0.25 0.255 V Input Regulation △VREF VCC=3.6 V to 25 V 2 12.5 mV Output Voltage Change with Temperature △VREF / VREF Oscillator Section Oscillation Frequency f 320 KHz Frequency Change with Voltage Δf / ΔV VCC=3.6V to 25V 5 % Frequency Change with Temperature Δf / ΔT TA = -25℃ to +85℃ 5 % Error Amplifier Section Input Bias Current IB -1.0 -0.2 1.0 μA Voltage Gain Av 100 V / V Frequency Bandwidth BW Av=0 dB 6 MHz Output Voltage Swing Positive VPOS 1.7 2 V Output Voltage Swing Negative VNEG 0.1 0.2 V Output Source Current ISOURCE Vcomp=200mV -15 -30 μA Output Sink Current ISINK Vcomp=200mV 15 30 μA Idle Period Adjustment Section Maximum Duty Cycle TDUTY VFB =0.2V 100 % Output Section PMOS D-S Voltage VDSS VCOMP=0.1V -20 V PMOS Source Current ID -3 A PMOS On Resistance RDS (ON) VCC=5.0V, V FB=0V 64 87 mΩ VCC=10V, V FB=0V 40 52 Output Leakage Current IL VDS=-24V, VGS=0V -1 μA Thermal Shutdown Section Thermal shutdown Temperature 150 ℃ Over Current Protection Section PMOS OCP Current IOCP 4 A

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . Parameter Symbol Conditions Min. Typ. Max. Unit Total Device Section EN Input Current IEN EN pin Open 20 μA Upper Threshold Voltage (EN) VUPPER 1.12 V Lower Threshold Voltage (EN) VLOW 0.87 V Hysteresis VHYS 210 250 mV Average Supply Current IAVE 4 6 mA VCC Shutdown Current Ishutdown 15 μA

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . Detailed Description Voltage Reference A built-in 2.5V reference regulator supplie s FP710 3 internal circuits . Also, this 2.5V reference voltage is divided down by an internal resistive divider to provide a 0.25V precision reference voltage to the error amplifier non-inverting terminal. Setting the LED Current FP7103 is a constant current buck regulator. The LEDs are connected between V OUT and FB pin as shown in the Typical Application Circuit section. The FB pin is 0.25V in regulation. Therefore, the LEDs current IF is set by V FB and the resistor R 2 connected between FB and ground by the following equation: FB F R VI  IF should not exceed the 3A current capability of FP 7103 and therefore R 2 minimum must be approximately 0.083Ω Output Voltage The output voltage is primarily determined by the number of LEDs(n) connected between VOUT and FB pin. Therefore, VOUT can be written as: )V)Vn((V FBFOUT  Where VF is the forward voltage of one LED at the set LED current level ( see LED manufacturer datasheet for forward characteristics curve) Oscillator The fixed PWM frequency is generated by an internal oscillator. Its typical values are 320KHz. Thermal Protection The thermal protection is triggered when junction temperature i s higher than 150℃ that may occurs by an abnormal heavy current loading. When this happens, the FP7103 turns output off. Once the junction temperature is cooled down to lower than 130℃, FP7103 starts again and turns the power switch on.

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . Over Current Protection The FP7103 uses cycle-by-cycle current limit to protect the internal power switch. During each switching cycle, a current limit comparator detects if the power switch current exceeds the internal setting current. If it does, over current protection function decrease the oscillator frequency to prevent thermal issue.

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product .

Application Information

Typical Application Circuit SK34 0.1µF LEDC7 100µF L1 10µH 0.1µF IC1 FP7103 4 5 8FB EN COMP VCC LX LX GND GND 0.25 VIN 0.1µFC6 100µF VIN FP7103 3W / 5W LED for DC Input Circuit Dimming Control Circuit Changing the duty cycle of PWM signal can get different LED current. The PWM signal is recommended above 10kHz. The application circuit is shown in the following. SK34 0.1µF LEDC7 100µF L1 10µH 0.1µF IC1 FP7103 4 5 8FB EN COMP VCC LX LX GND GND 0.25 VIN 0V~5V PWM 37K 1K C5 2.2µF R4 2K Dimming Control 0.1µFC6 100µF VIN The LED current can be calculated by the following equation: 5R3R )VDutyV(4RV I FBPWM FB LED 

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . Package Outline SOP-8L UNIT: mm Note: 1. Package dimensions are in compliance with JEDEC outline: MS-012 AA. 2. Dimension “D” does not include molding flash, protrusions or gate burrs. 3. Dimension “E” does not include inter-lead flash or protrusions. Symbols Min. (mm) Max. (mm) A 1.346 1.752 A1 0.101 0.254 A2 1.498 D 4.800 4.978 E 3.810 3.987 H 5.791 6.197 L 0.406 1.270 θ° 0° 8°

This datasheet contai ns new product information. Feeling Technology reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sales of the product . SOP-8L (EP) UNIT: mm Exposed PAD Dimensions: Note: 1. Package dimensions are in compliance with JEDEC outline: MO-178 AA. 2. Dimension ”D” does not include molding flash, protrusions or gate burrs. 3. Dimension “E” does not include inter-lead flash or protrusions Symbols Min. (mm) Max. (mm) A 1.346 1.752 A1 0.050 0.152 A2 1.498 D 4.800 4.978 E 3.810 3.987 H 5.791 6.197 L 0.406 1.270 θ° 0° 8° Symbols Min. (mm) Max. (mm) E1 2.184 REF D1 2.971 REF