WS2818B Single-line 256 Gray-level 3-channel Constant Current LED Driver IC

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Features 12V application. Built-in VR-tube, only add a resistance to IC VDD-pin if under 12V, no external VR-tube needed. Adopts the built-in signal reshaping circuit to achieve the signal waveform shaping, and thus no signal waveform distortion takes place. Built-in power-on reset and brown-out reset circuits. The gray levels of each pixel of 256 levels, and the refresh frequency reaches to 2KHz. Serial cascading interface, data receiving and decoding are all achieved by one signal line. Signal Break-point Continuous Transmission, any pixel s failure, it won t affect the whole display effect. The distance of any two signal transmission points is less than 5 meters, there s no extra circuits needed. When the refresh rate of 30fps, the cascade number are not less than 1024 pixels. Send data at speeds of 800Kbps. Good consistency reliability, high cost-effective. Applications Guardrail tube series, point light display series, flexible/rigid strips series, module series applications. Lighting stage costumes, innovative gadgets or any other electronic products. General description is a 3-channel LED driver control circuit, its internal include intelligent digital port data latch and signal reshaping amplification drive circuit. Also include a precision internal oscillator and a 12V voltage programmable constant current control part, which achieves highly consistent color effect. has strong features in Signal Break-point Continuous Transmission, it adopts dual signal transmission, these signals are able to work together without interaction. The user can select the first chip DIN/BIN as the control signal input pin, and the follow-up cascade chips will automatically identify the output signal released by the first chip which not to affect the whole display effect. adopts Single-line Return-to-Zero communication protocol. After the chip gets power-on reset, the DIN port receive data from controller, the first chip collects initial 24bit data then sent to the internal data latch, the other data which reshaping by the internal signal reshaping amplification circuit sent to the next cascade pixel through the DO port. The data reduced 24bit after transmitted through every pixel. Since adopts auto-reshaping transmit technology, making the pixel cascade numbers are not limited to the signal transmission, but to signal transmission speed. When BIN works as control signal receiving interface, its control data is 24bit more than the DIN interface, so as to ensure that the two ways to control the number of pixels is the same Based on the received 24bit data, the internal data latch generates different duty cycle control signals in the OUTR, OUTG, OUTB port. All chips synchronous send the received data to each segment when the DIN port input a reset signal. It will receive new data again After the reset signal finished. Before a new reset signal received, the control signal of OUTR, OUTG, OUTB pin unchanged. The chip exports PWM data to OUTR, OUTG, OUTB pins, after receive a low voltage reset signal the time retain over 280µs. SOP8 and CPC8 packaging available for sale. 1 / 8

PIN configuration PIN Function NO. Symbol PIN Function description 1 OUTR LED Driver Output Output of RED PWM control 2 OUTG LED Driver Output Output of GREEN PWM control 3 OUTB LED Driver Output Output of BLUE PWM control 4 DO Data Output Data cascade output 5 DIN Data Input Control data input 6 GND Ground Data & Power Grounding 7 BIN Backup Data Input Backup control data input 8 VDD Power Voltage IC power supply Absolute Maximum Ratings (TA=25, VSS=0V, unless otherwise noted.) Parameter Symbol Ratings Unit Power Supply Voltage VDD +3.5~+5.3 V Input Voltage VI -0.5~VDD+0.5 V Operation Temperature Topt -25~+85 Storage Temperature Range Tstg -40~105 R/G/B Channel Output Port Withstand Voltage Vout 12 V 2 / 8

Electrical Characteristics(TA=-20~+70, VDD=4.5~5.5V, VSS=0V unless otherwise noted.) Parameter Symbol Min. Tpy Max. Unit Conditions Low voltage output current IOL 15.5 16.5 17.5 ma Idout 10 ma Vo=0.4V,DOUT Input current II ±1 µa VI=VDD/VSS High-level Input VIH 0.7VDD V DIN Low-level Input VIL 0.3 VDD V DIN Hysteresis Voltage VH 0.35 V DIN Switching Characteristics(TA=-20~+70, VDD=4.5~5.5V, VSS=0V, unless otherwise noted.) Parameter Symbol Min. Tpy Max. Unit Conditions Transmission Delay Time tplz 300 ns CL=15pF, DIN DOUT, RL=10KΩ Fall Time t THZ 120 µs CL=300pF, OUTR/OUTG/OUTB Data Transmission Rate F MAX 400 Kbps Duty Ratio 50% Input-capacitance CI 15 pf Sequence Time T0H 0-code, High-level time 220ns~380ns T1H 1-code, High-level time 580ns~1.6µs T0L 0-code, Low-level time 580ns~1.6µs T1L 1-code, Low-level time 220ns~420ns RES Frame unit, Low-level time > 280µs 3 / 8

Sequence Chart Cascade Method Data Transmission Method Note: D1 is the data from MCU, and D2, D3, D4 are from Cascade Circuits. Composition of 24bit data R7 R6 R5 R4 R3 R2 R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0 Note: Data transmit in order of RGB, high bit data is first. 4 / 8

Typical Application Circuit 1. Supply voltage=5v, 1 LED for each channel and Constant Current driving of 16.5mA Remarks: This driving mode use constant current output, the advantage of is the LED can retain luminance and color temperature when the power supply lessen. We require, in order to prevent power spikes phenomenon and power reverse polarity, series with a resistor less than 100ohm connected with the power supply pin(vdd). The capacitance 104 as bypass capacitor. To prevent the reflection and hot-swap protection, we suggest to connect a 33ohm resistor at the data input or output port for impedance. 2. Supply voltage=12v, 3 LED for each channel and Constant Current driving of 16.5mA Fig 2 Remarks: The same as the front mode, it is also use constant current output. In this circuit, R1 is used as the IC internal LDO divider resistance and the value is 2.7K. The capacitance 104 as bypass capacitor. To prevent the reflection and hot-swap protection, we suggest to connect a 33ohm resistor at the data input or output port for impedance. At the OUTR port we should add a divider resistance RR. The value of RR can be derived by the following equation: VLEDR is the red LED forward conduction voltage drop. KΩ 5 / 8

Packaging Information SOP-8 Package Symbol Dimensions In Millimeters Dimensions In Inches Min Max Min Max A 1.350 1.750 0.053 0.069 A1 0.100 0.250 0.004 0.010 A2 1.350 1.550 0.053 0.061 b 0.330 0.510 0.013 0.020 c 0.170 0.250 0.006 0.010 D 4.700 5.100 0.185 0.200 E 3.800 4.000 0.150 0.157 E1 5.800 6.200 0.228 0.244 e 1.270 0.050 L 0.400 1.270 0.016 0.050 θ 0º 8º 0º 8º 6 / 8

CPC8 Package 7 / 8

Modify Records Version Status Bar Modify Content Summary Date Reviser Approved V1.0 N New 20170523 Shen JinGuo Yin HuaPing Remarks: Initial version: V1.0;Version number plus "0.1" after each revision; Status bar: N--New, A--Add, M--Modify, D--Delete. 8 / 8