FAN5606DMPX Fairchild Semiconductor, FAN5606DMPX Datasheet
FAN5606DMPX
Specifications of FAN5606DMPX
FAN5606DMPX_NL
FAN5606DMPX_NLTR
FAN5606DMPX_NLTR
Related parts for FAN5606DMPX
FAN5606DMPX Summary of contents
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FAN5606 Serial LED Driver with Current-Regulated, Step-Up DC/DC Converter Features • Drives Up to Six LEDs in Series • Pulse Skip PWM Mode of Operation of the Boost Circuit • 90% Peak Efficiency • No External Schottky Diode ...
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FAN5606 Pin Assignment Pin Descriptions Pin No. Pin Name Pin Function Description 1 A DAC A Input 2 B DAC B Input 3 CAT LED Cathode 4 IND Inductor 5 V Output LED’s Anode OUT 6 GND Ground 7 NC ...
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PRODUCT SPECIFICATION Absolute Maximum Ratings Parameter Voltage to GND CAT Voltage to GND OUT Any LED Short Circuit Duration (Anode to Cathode) Lead Soldering Temperature (10 seconds) Thermal Resistance θ jc Operating Junction ...
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FAN5606 Block Diagram DAC A GND Circuit Description When the input voltage is connected to V turned on, the bandgap reference acquires its nominal volt- age and the soft-start cycle begins. Once "power good" is achieved (0.5mA ...
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PRODUCT SPECIFICATION Where V = 1.22V Ref 25 R=10Kohm 1.25 1.5 1.75 2 2.25 2.5 V External If the analog input A is driven in digital mode by an open drain output important ...
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FAN5606 PWM Control (Continued and B are PWM. I (Average) = LED A Input (PWM) B Input (PWM) LED CURRENT 0mA Notes: 4. Proportionally select the duty cycle to achieve a typical LED current between 1mA to 4mA. ...
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PRODUCT SPECIFICATION Typical Performance Characteristics ° 47µ 4.7µ 6.8µH, unless otherwise noted OUT Regulated LED Current vs Input Voltage 5.4 5.2 5.0 4.8 A=1, B=0 Scale1 A=0, B=1 Scale2 ...
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FAN5606 Mechanical Dimensions 3x3mm 8-Lead MLP (Internal Schottky Diode) 0. 0.8 MAX 0.10 C 0.08 C 0.05 0.00 SEATING PLANE PIN #1 IDENT 0.45 0.43 0.65 NOTES: A. CONFORMS TO JEDEC REGISTRATION MO-229, VARIATION VEEC, DATED 11/2001 B. ...
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... Order Code FAN5606DMPX 2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system affect its safety or effectiveness. ...