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DM141 Version : A.012 Issue Date : 2004/04/09 File Name : SP-DM141-A.012.doc Total Pages : 16 8x2-Channels Constant Current LED Driver 9 7 1 SILICON TOUCH TECHNOLOGY INC. 9-7F-1, Prosperity Road I, Science Based Industrial Park, Hsin-Chu, Taiwan 300, R.O.C. Fax886-3-5645626 Tel886-3-5645656 SILICON TOUCH TECHNOLOGY INC. DM141 DM141 8x2-Bit Constant Current LED Drivers General Description The DM141 is a constant current driver specifically designed for LED display applications. The device includes a 16-bit shift register, a latch, and dual-interleaved banks of constant current drivers on a single Silicon CMOS chip. Each of the dichotomous 8-bit banks requires a current setting resistor. The output current ranges from 5mA to 60mA. Features Constant Current Output: From 5mA to 60mA Maximum Clock Frequency: 25MHz (Max) Power Supply Voltage: 3.3V to 5.0V CMOS Compatible Input/Output Package: QFN32, SDIP28, SSOP28 Constant Current Matching: 10mA to 60mA 5mA to 10mA : Bit-to-Bit : 4.0% (Max) Chip-to-Chip : 10 .0% (Max) : Bit-to-Bit : 6.0% (Max) Chip-to-Chip : 12 .0% (Max) Maximum Output Voltage: 17V Two-color LED driving capability on chip 8x2-Bit Constant Current LED Drivers -1- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Pin Connection (Top view) QFN32 GND 23 SDIP28, SSOP28 GND G6 24 25 26 27 28 29 30 31 32 1 2 3 4 5 6 7 8 Thermal Pad GND G4 G5 21 R3 R5 22 R4 20 19 18 R6 G7 R7 GND G8 R8 GND RESERVED 17 16 15 14 13 12 11 10 9 G3 R2 G2 GND R1 G1 GND EN VDD SIN CLK LTH EN GND G1 R1 G2 R2 G3 R3 G4 R4 1 2 3 4 5 6 7 8 9 10 11 12 13 14 28 27 26 25 24 23 22 21 20 19 18 17 16 15 GND RRES GRES SOUT RESERVED GND R8 G8 R7 G7 R6 G6 R5 G5 Pin Description Pin No. (QFN32) 5 6 7 8 9 11, 14, 16, 19, 21, 24, 26, 29 12, 15, 17, 20, 22, 25, 27, 30 Pin No. (SDIP28, SSOP28) 15,17,19,21 8,10,12,14, 16,18,20,22 Ground terminals. R1~8 Constant current output terminals (Bank R). SOUT 1 2 3 4 5 7,9,11,13, GRES RRES GND Pin NAME CLK LTH EN G1~8 VDD SIN CLK LTH FUNCTION VDD SIN Supply voltage terminal. Input terminal of a data shift register. Data for R8 should be shifted in first, and then the data for G8 followed. Input terminal of a clock for shift register. Data is sampled at the rising edge of CLK. Input terminal of data strobe. Data is latched when LTH is low. And data on shift register goes through when LTH is high. Input terminal of output enable (active low), all outputs are off when EN is high. Constant current output terminals (Bank G). 4, 10, 13, 18, 23, 28, 31 32 1 2 3 6,23,28 GND 24 25 26 27 RESERVED Reserved pin for future. SOUT GRES RRES Output terminal of a data shift register. Input terminal of an external resistor (Bank G). The current flows through the resistor from GRES to ground will be the (Bank G) reference base current of output sink current. Input terminal of an external resistor (Bank R). 8x2-Bit Constant Current LED Drivers -2- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Block Diagram G2 G3 G4 G5 G6 G7 G8 G1 R2 R3 R4 R5 R6 R7 15 En 16 En 14 13 11 09 07 05 04 03 02 01 R8 R1 EN Bank B Constant Current Drivers 12 10 08 06 Bank A Constant Current Drivers Bank R Current Controller Bank G Current Controller RRES GRES LTH 16 Bit Latch VDD GND 16 15 14 13 12 11 10 09 08 07 06 05 04 03 02 01 SIN SOUT 16 Bit Shift Register CLK Equivalent Circuit of Inputs and Outputs 1. CLK, SIN, LTH, EN terminals 2. SOUT terminal VDD INPUT VDD SOUT GND GND 8x2-Bit Constant Current LED Drivers -3- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Maximum Ratings (Tj(max) = 150C) CHARACTERISTIC Supply Voltage Input Voltage Output Current Output Voltage Clock Frequency GND Terminal Current Power Dissipation SYMBOL VDD VIN IOUT VOUT fCLK IGND PD RATING 0 ~ 7.0 -0.3 ~ VDD+0.3 60 -0.3 ~ 17 25 960 3.08 (QFN-32 : Ta=25C) 3.12 (SDIP-28 : Ta=25C) 1.1 (SSOP-28 : Ta=25C) 40.6 (QFN-32) Thermal Resistance Storage Temperature Rth(j-a) Tstg 40 (SDIP-28) 113.3 (SSOP-28) -40 ~ 150 C C/W W UNIT V V mA V MHz mA Recommended Operating Condition CHARACTERISTIC Supply Voltage Output Voltage Operating temperature Output Current SYMBOL VDD VOUT TOPR IO IOH IOL VIH VIL tw LAT tw CLK tsetup(D) thold(D) tsetup(L) fCLK CONDITION (G, R)n SOUT SOUT MIN. 3.0 TYP. 5.0 -20 5 Input Voltage LTH Pulse Width CLK Pulse Width Set-up Time for DATA Hold Time for DATA Set-up Time for LTH Clock Frequency 0.8VDD -0.3 15 15 10 10 15 VDD = 3.3 ~ 5.0 V Cascade operation MAX. 5.5 17 85 60 1.0 -1.0 VDD+0.3 0.2VDD UNIT V V mA V ns ns ns ns ns MHz 25 8x2-Bit Constant Current LED Drivers -4- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Electrical Characteristics (Typ:VDD = 5.0 V, Ta = 25C unless otherwise noted) CHARACTERISTIC Input Voltage "H" Level Input Voltage "L" Level Output Leakage Current Output Voltage (SOUT) SYMBOL VIH VIL IOH VOL VOH Output Current (Bit-Bit) IOL1 VOH = 17 V IOL = 1.0 mA IOH = -1.0 mA V(G, R)n = 1.0 RES = 11.2K V(G, R)n = 1.0V, Vdd=5.0V RES = 11.2K Vdd=3.3V CONDITION MIN. 0.8VDD GND VDD-0.3 4.66 4.57 TYP. 5.3 5.2 0.1 1.5 6 MAX. VDD 0.2VDD 1.0 0.3 6 5.94 5.83 0.5 3.0 %/V %/V uA V UNIT V % mA Output Current (Chip-Chip) Output Voltage Regulation Supply Voltage Regulation IOL3 % / VDD RES = 1400, V(G, R)n = 1V to 3V % / VDD V(G, R)n = 1.0V, RES = 1400 IDD(off)1 Input Signal is static, RES = OPEN, (G, R)1~8 = off Input Signal is static, RES = 2800, (G, R) 1~8 = off Input Signal is static, RES = 1400, (G, R) 1~8 = off Input Signal is static, RES = 2800, (G, R) 1~8 = on Input Signal is static, RES = 1400, (G, R) 1~8 = on Supply Current "OFF" IDD(0ff)2 9.5 IDD(off)3 12.5 mA IDD(on)1 Supply Current "ON" IDD(on)2 9.5 12.5 8x2-Bit Constant Current LED Drivers -5- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Switching Characteristics (Ta = 25 C unless otherwise noted) CHARACTERISTIC Propagation Delay Time ("L" to "H") Propagation Delay Time ("H" to "L") Output Current Rise Time Output Current Fall Time tor tof EN-(G, R)n tpHL EN-(G, R)n tpLH SYMBOL CONDITION VDD=5.0V VIH=VDD VIL=GND (G, R)RES=1400 VL=3.3V RL=51 CL=15pF 90 17 ns ns 30 ns 60 ns MIN. TYP. MAX. UNIT CHARACTERISTIC Propagation Delay Time ("L" to "H") Propagation Delay Time ("H" to "L") Output Current Rise Time Output Current Fall Time EN-(G, R)n EN-(G, R)n SYMBOL CONDITION VDD=3.3V MIN. TYP. MAX. UNIT tpLH VIH=VDD VIL=GND (G, R)RES=1400 90 ns tpHL VL=3.3V RL=51 CL=15pF 35 ns tor tof 140 30 ns ns 8x2-Bit Constant Current LED Drivers -6- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Timing Diagram 1. CLK-SIN, SOUT, (G,R)n tr twCLK 90% 50% 10% 90% 50% 10% tf twCLK 50% 50% CLK tsetup thold SIN 50% 50% tor (G, R)n (current) tpLH 50% 90% 50% 10% tof 90% 50% 10% tpHL 50% SOUT tpLH tpHL 2. CLK-LTH 50% CLK SIN "L" level = DATA HOLD tw(LAT) 50% 50% LTH tsetup(L) 3. EN-(G, R)n EN 50% 50% tpLH tpHL 50% 50% (G, R)n (current) 8x2-Bit Constant Current LED Drivers -7- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Detailed Description Constant Current Output Value Setting The output current is determined by resistor value. The resistors connected between RES(G, R) pin and GND decide the base current output. Fig1. shows the approximate relation between resistor value and output current value. The resistor should be placed as close to Rext terminal as possible to avoid the noise influence 60.00 50.00 40.00 Iout (mA) 30.00 20.00 10.00 0.00 0 2 4 6 8 Rext (KOhm) 10 12 14 Fig.1 Output Current Performance vs. Output Voltage In order to obtain the good constant current output performance, the minimum output voltage is necessary. 60.00 50.00 Iout (mA) 40.00 30.00 20.00 10.00 0.00 0 1 2 3 4 5 Vout (V) Fig. 2 8x2-Bit Constant Current LED Drivers -8- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Serial_In Data, Serial_Out and Latch The SIN data will be clocked into the 16 bits shift register synchronized on the rising edge of CLK. And the data `1' represents the corresponding current output `ON', while the data `0' stands for `OFF'. The data will be transferred into the latch as the LTH pin goes high. And the data will be latched when LTH goes low.The SERIAL_OUT data is shifted out on synchronization to the falling edge of CLOCK. The graph below depicts the timing of data serial-in and serial-out. 16 Clocks CLK SIN LTH EN SOUT G1 R1 G2 R2 5V 0V 5V 0V 5V 0V 5V 0V Previous Data 5V 0V ON OFF ON OFF ON OFF ON OFF R7 G8 R8 ON OFF ON OFF ON OFF Package and Thermal Pad The IC's thermal pad (QFN) which is internally connected to the bottom side of chip should be connected to GND. And, good PCB layout pattern conducted to thermal pad will have better performance in thermal effect. Due to the small size and low profile, the majority of heat generated by the die within this package is dissipated through the thermal pad to PCB. The PCB configuration and metal layers embedded in the PCB become important to achieving good thermal performance. By increasing the embedded copper area, the thermal performance will be improved. Thermal vias which conduct heat from the surface of the PCB to the ground plane are necessary. More vias may improve the package thermal performance. 8x2-Bit Constant Current LED Drivers -9- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Typical Application VDD VLED A1 A2 A3 A4 A5 A6 A7 R-G Dual Color 8X8 LED Module Controller A8 VDD VDD 0.1 uF GND DM141 8x2 Channels Constant Current LED Driver GRES RRES To Next Stage SIN CLK LTH EN G1 R1 G2 R2 G3 R3 G4 R4 G5 R5 G6 R6 G7 R7 G8 R8 SOUT 8x2-Bit Constant Current LED Drivers -10- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Typical Application VDD 0.1 uF GND GRES RRES SOUT EN LTH CLK SIN VLED Controller DM141 8x2 Channels Constant Current LED Driver G2 G2 G2 G2 R2 R2 R2 R2 R2 G2 G3 G3 G3 G3 R3 R3 R3 R3 G4 G4 G4 G4 R4 R4 R4 R4 G5 G5 G5 R5 G6 R6 G7 R7 G8 R8 R8 R8 R8 R3 G3 R4 G4 R5 G5 R6 G6 R7 G7 SIN CLK LTH EN R1 G1 DM141 8x2 Channels Constant Current LED Driver GND VDD 0.1 uF GRES RRES R8 G8 8x2-Bit Constant Current LED Drivers G1 R1 R1 R1 R1 R R G B Full-Color LED Pixel Cluster SOUT -11- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 Package Outline QFN32 TOP VIEW 0.25 C BOTTOM VIEW D2 25 24 24 25 32 1 D 32 1 e 8 0.25 C 9 16 17 17 8 16 9 L e 0.10 C b 0.10 M CAB SEATING PLANE A3 A1 A yC SYMBOL A A1 A3 B D D2 E E2 e L y MIN. 0.70 0 0.18 1.25 1.25 0.30 DIMENSION (MM) NOM. 0.75 0.02 0.25 REF 0.23 5.00 BSC 2.70 5.00 BSC 2.70 0.50 BSC 0.40 0.10 MAX. 0.80 0.05 0.30 3.25 3.25 0.50 MIN. 27.6 0 7.09 49.21 49.21 11.81 DIMENSION (MIL) NOM. 29.5 0.79 9.84 REF 9.06 196.85 BSC 106.30 196.85 BSC 106.30 19.69 BSC 15.75 3.94 MAX. 31.5 1.97 11.81 127.95 127.95 19.69 Note: 1.DIMENSIONING AND TOLERANCING CONFORM TO ASME Y145.5M-1994. 2. REFER TO JEDEC STD. MO-220 WHHD-2 ISSUE A 8x2-Bit Constant Current LED Drivers -12- VersionA.012 E2 E SILICON TOUCH TECHNOLOGY INC. DM141 Package Outline SDIP28 D E1 A2 A SEATING PLANE A1 L 0.018typ. 0.060typ. 0.100typ. SYMBOLS A A1 A2 D E1 E L eB DIMENSION IN MIN. NOM. 0.015 0.125 0.130 1.385 1.390 0.283 0.288 0.31 BSC 0.115 0.130 0.330 0.350 0 7 INCH MAX. 0.210 0.135 1.400 0.293 0.150 0.370 15 Note: 1. JEDEC OUTLINE : N/A 8x2-Bit Constant Current LED Drivers -13- VersionA.012 eB E SILICON TOUCH TECHNOLOGY INC. DM141 Package Outline SSOP28 D DETAIL A E1 c C 0.25 MM E A2 R R L DETAIL A A GAUGE PLANE SEATING PLANE 0.1MM e b A1 SYMBOLS NOTES: 1. JEDEC OUTLINE : MO-15D AH 2. DIMENSION D AND E1 DO NOT INCLUDE MOLD FLASH OR PROTRUSIONS, BUT DOES INCLUDE MODE MISMATCH AND ARE MEASURED AT DATUM PLANE, MOLD PARTING LINE. MOLD FLASH OR PROTRUSION SHALL NOT EXCEED 0.2MM PER SIDE. 3.DIMENSION b DOES NOT INCLUDE DAMBAR PROTRUSION/ INTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL BE 0.13mm TOTAL IN EXCESS OF b DIMENSION AT MAXIMUM MATERIAL CONDITION. DAMBAR INTRUSION SHALL NOT REDUCE DIMENSION b BY MORE THAN 9.07mm AT LEAST MATERIAL CONDITION. A A1 A2 b C e D E E1 L R DIMENSION IN MM MIN. NOM. MAX. 2.0 0.05 1.62 1.75 1.85 0.22 0.38 0.09 0.25 0.65 BSC 9.9 10.20 10.50 7.4 7.8 8.2 5.00 5.30 5.60 0.55 0.75 0.95 0.09 0 4 8 8x2-Bit Constant Current LED Drivers -14- VersionA.012 SILICON TOUCH TECHNOLOGY INC. DM141 The products listed herein are designed for ordinary electronic applications, such as electrical appliances, audio-visual equipment, communications devices and so on. Hence, it is advisable that the devices should not be used in medical instruments, surgical implants, aerospace machinery, nuclear power control systems, disaster/crime-prevention equipment and the like. Misusing those products may directly or indirectly endanger human life, or cause injury and property loss. Silicon Touch Technology, Inc. will not take any responsibilities regarding the misusage of the products mentioned above. Anyone who purchases any products described herein with the above-mentioned intention or with such misused applications should accept full responsibility and indemnify. Silicon Touch Technology, Inc. and its distributors and all their officers and employees shall defend jointly and severally against any and all claims and litigation and all damages, cost and expenses associated with such intention and manipulation. 8x2-Bit Constant Current LED Drivers -15- VersionA.012 |
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