UPD160083 NEC | Alldatasheet
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480-OUTPUT TFT-LCD SOURCE DRIVER (COMPATIBLE WITH 256-GRAY SCALES) Document S16450EJ1V0PM00 Date Published May 2003 CP(K) Printed in Japan PRELIMINARY PRODUCT INFORMATION M OS INTEGRATED CIRCUIT µµµµPD160083 2002 The information contained in this document is being issued in advance of the production cycle for the product. The parameters for the product may change before final production or NEC Electronics Corporation, at its own discretion, may withdraw the product prior to its production. Not all products and/or types are availabe in every country. Please check with an NEC Electronics sales representative for availability and additional information.
DESCRIPTION
The µ PD160083 is a source driver for TFT-LCDs capable of dealing with displays with 256-gray scales. Data input is based on digital input configured as 8 bits by 3 dots (1 pixel) with double clock edge, which can realize a full-color display of 16,777,216 colors by output of 256 values γ -corrected by an internal D/A converter and 9-by-2 external power modules. Because the output dynamic range is as large as VSS2 + 0.1 V to VDD2 – 0.1 V, level inversion operation of the LCD’s common electrode is rendered unnecessary. Also, to be able to deal with dot-line inversion, n-line inversion and column line inversion when mounted on a single side, this source driver is equipped with a built- in 8-bit D/A converter circuit whose odd output pins and even output pins respectively output gray scale voltages of differing polarity. Assuring a clock frequency of 85 MHz when driving at 3.0 V, this driver is applicable to UXGA- standard (1600ʷ1200), SXGA-standard (1280ʷ1024) TFT-LCD panels.
FEATURES
RSDSTM (Reduced Swing Differential Signaling) interface 480 outputs Input of 8 bits (gradation data) by 3 dots with double clock edge sampling Capable of outputting 256 values by means of 9-by-2 external power modules (18 units) and a D/A converter Logic power supply voltage (V DD1 ): 2.7 to 3.6 V Driver power supply voltage (VDD2 ): 10.5 to 13.5 V Output dynamic range: VSS2 + 0.1 V to VDD2 – 0.1 V High-speed data transfer: fCLK = 85MHz MAX. (Internal data transfer speed when operating at VDD1 = 3.0 V) Apply for dot-line inversion, n-line inversion and column line inversion Output Voltage polarity inversion function (POL) Input data inversion function (INV) ControIable output short function (MODE1 to MODE3) Remark RSDS TM is a trademark of National Semiconductor Corporation.
ORDERING INFORMATION
µ PD160083N-xxx TCP (TAB package) µ PD160083NL-xxx COF (COF package) Remark The TCP/COF’s external shape is customized. To order the required shape, so please contact one of our sales representatives
Preliminary Product Information S16450EJ1V0PM002 µ PD160083 1. BLOCK DIAGRAM STHL VDD1A VSS1A VDD2 VSS2 S2S1 V0-V17 POL D 00P-D 03P, D 00N -D 03N STB CLKP, CLKN Data register Latch Level shifter D/A converter Voltage follower output R,/L STHR D 10P-D 13P, D 10N -D 13N D 20P-D 23P, D 20N -D 23N S3 S480 INV LPC 80-bit bidirectional shift register x 2 MODE1 MODE3 MODE2 (Input pin) TEST RPO1 RPO2 RPI1 RPI2 Line repair Amp. VDD1D VSS1D Remark /xxx indicates active low signal.
Preliminary Product Information S16450EJ1V0PM00 3 µ PD160083 2. PIN CONFIGURATION (µµµµPD160083N- ×××××××××××× : TCP) (Copper foil surface, face-up) S480 S479 RPI2 S478 RPO2 S477 VSS2 V17 V16 V15 V14 V13 V12 V11 V10 VDD2 (VSS1A) D23P D23N (VSS1A) D22P D22N (VSS1A) D21P D21N (VSS1A) D20P D20N (VSS1A) D13P D13N (VSS1A) D12P D12N (VSS1A) D11P D11N (VSS1A) D10P D10N (VSS1A) R,/L POL INV VDD1A VDD1D LPC STHL STHR VSS1D VSS1A MODE 1 MODE 2 MODE 3 (VSS1A) CLKP CLKN (VSS1A) STB (VSS1A) D03P D03N (VSS1A) D02P D02N (VSS1A) D01P D01N (VSS1A) D00P D00N (VSS1A) VDD2 VSS2 S3 RPO1 S2 RPI1 S1 C opper foil surface Remark 1. This figure does not specify the TCP package. 2. (VSS1A ) is recommended to connect to analog GND on PCB for the return current of transmission line. And please don’t use these pins for power supply terminal with dynamic current.
Preliminary Product Information S16450EJ1V0PM004 µ PD160083 3. PIN FUNCTIONS (1/2) Pin Symbol Pin Name I/O Description S1 to S480 Driver Output The D/A converted 256-gray-scale analog voltage is output. D 00P to D03P, D 00N to D03N D 10P to D13P, D 10N to D13N D 20P to D23P, D 20N to D23N Display data (RSDS) Input The display data is input with a width of 12 bits by double edge, viz., the gray scale data (8 bits) by 3 dots (1 pixel). R,/L (CMOS) Shift direction control Input These refer to the start pulse input/output pins when driver ICs are connected in cascade. The shift directions of the shift registers are as follows. R,/L = H (V DD1 level): STHR input, S1 → S480, STHL output R,/L = L (VSS1 level): STHL input, S480→ S1, STHR output STHR (CMOS) Right shift start pulse I/O R,/L = H (VDD1 level): Becomes the start pulse input pin. R,/L = L (VSS1 level): Becomes the start pulse output pin. STHL (CMOS) Left shift start I/O R,/L = H (V DD1 level): Becomes the start pulse output pin. R,/L = L (VSS1 level): Becomes the start pulse input pin. CLKP, CLKN (RSDS) Shift clock Input Refers to the shift register’s shift clock input. The display data is incorporated into the data register at both of rising and falling edge. At the falling edge of the 160th clock after the start pulse input, the start pulse output reaches the high level, thus becoming the start pulse of the next-level driver. STB (CMOS) Latch Input The contents of the data register are transferred to the latch circuit at the rising edge. And the output timing and output short function are controlled by MODE1 to MODE3. Please refer to 8. RELATIONSHIP BETWEEN STB, POL, MODE1 to MODE3 AND OUTPUT WAVEFORM for more detail. It is necessary to ensure input of one pulse per horizontal period. POL (CMOS) Polarity Input POL = H (V DD1 level): The S2n–1 output uses V0-V8 as the reference supply. The S2n output uses V9-V17 as the reference supply. POL = L (VSS1 level): The S2n–1 output uses V9-V17 as the reference supply. The S2n output uses V0-V8 as the reference supply. S2n-1 indicates the odd output: and S2n indicates the even output. Input of the POL signal is allowed the setup time (tPOL -STB ) with respect to STB’s rising edge. INV (CMOS) Data inversion Input Data inversion can invert when display data is loaded. INV = H (VDD1 level): Data inversion loads display data after inverting it. INV = L (VSS1 level): Data inversion does not invert input data. Please input DC signal. For details, refer to 6. DATA INVERSION. LPC Low power control Input LPC = L or open: Normal mode (default) LPC = H: Low power mode (35% lower than noamal mode) This pin is pulled down to the VSS1D inside the IC. This pin controls the output short function. MODE1 MODE2 MODE3 Output Short Remark H or open X X Non-active Output short circuit OFF H or open X Active During STB = H H or open H or open During 34 CLK after STB falling L L L L During 68 CLK after STB falling MODE1 to MODE3 Output short contro Input Remark X: H or L Output short function works only when POL signal is changed from previous line. This pin is pulled up to VDD1D inside the IC.
Preliminary Product Information S16450EJ1V0PM00 5 µ PD160083 (2/2) Pin Symbol Pin Name I/O Description RPI1, RPI2 Input RPO1, RPO2 Line-repair Amp. Output The driver-ability of the line-repair amp is around twice of the normal analog output S1 to S480. And these outputs are changed at the rising edge of STB and don’t have Hi-Z (High impedance) period. RPI1 (RPI2) → impedance changed → RPO1 (RPO2) TEST Test Input TEST = H or open: Normal operation mode TEST = L: Test mode V0-V17 γ -corrected power supplies − Input the γ -corrected power supplies from outside by using operational amplifier. Make sure to maintain the following relationships. During the gray scale voltage output, be sure to keep the gray scale level power supply at a constant level. VDD2 – 0.1 V ≥ V0 > V1 > V2 > V3 > V4 > V5 > V6 > V7 > V8 ≥ 0.5 VDD2 0.5 VDD2 ≥ V9 > V10 > V11 >V12 > V13 > V14 >V5 > V16 > V17 ≥ VSS2 + 0.1 V VDD1D/A Logic power supply − 2.7 to 3.6 V VDD2 Driver power supply − 10.5 to 13.5 V VSS1D/A Logic ground − Grounding VSS2 Driver ground − Grounding Cautions 1. The power on sequence must be VDD1D , VDD1A , logic input, and VDD2 and V0-V17 in that order. Reverse this sequence to shut down (Simultaneous power application to VDD2 and V0-V17 is possible.). 2. To stabilize the supply voltage, please be sure to insert a 0.1 µµµµ F bypass capacitor between VDD1D , VDD1A -VSS1D , VDD1A and VDD2 -VSS2 . Furthermore, for increased precision of the D/A converter, insertion of a bypass capacitor of about 0.01 µµµµF is also advised between the γγγγ - corrected power supply pins (V0, V1, V2, ···, V17) and VSS2 . 3. Because of the large power consumption of this driver IC, it is necessary to pay attention to the driver IC's temperature for the Junction Temperature. So, it should be considered to use the suitable mechanical design for the heat spreading and use the LPC function and the output reset function for the power reduction. Especially, it is recommended to measure the temperature of the driver IC surface.
Preliminary Product Information S16450EJ1V0PM006 µ PD160083 4. RELATIONSHIP BETWEEN INPUT DATA AND OUTPUT VOLTAGE VALUE The µPD160083 incorporates a 8-bit D/A converter whose odd output pins and even output pins output respectively gray scale voltages of differing polarity with respect to the LCD’s counter electrode (common electrode) voltage. The D/A converter consists of ladder resistors and switches. The ladder resistors (r0 to r255) are designed so that the ratio of LCD panel γ -compensated voltages to V0’-V255’ and V0”-V255” is almost equivalent, therefore, each resistance value indicates figure 4−2. For the 2 sets of 9 γ -compensated power supplies, V0-V8 and V9-V17, respectively, input gray scale voltages of the same polarity with respect to the common voltage Figure 4−1 shows the relationship between the driving voltages such as liquid-crystal driving voltages VDD2 , VSS2 and 0.5 VDD2 , and γ -corrected voltages V0-V17 and the input data. Be sure to maintain the voltage relationships below. VDD2 – 0.1 V ≥ V0 >V 1 >V 2 >V 3 >V 4 >V5 >V 6 >V 7 >V 8 ≥ 0.5 VDD2 0.5 VDD2 ≥ V9 >V 10 >V 11 >V 12 >V 13 >V 14 >V15 >V 16 >V 17 ≥ VSS2 + 0.1 V Figures 4−2 shows γ -corrected voltages and ladder resistors ratio and figure 4−3 shows relationship between the input data and the output voltage. Figure 4−−−−1. Relationship Between Input Data and γγγγ -corrected Power Supply 00 01 20 40 80 0.1 V 0.1 V Input data (HEX.)
0.5 VDD2
Preliminary Product Information S16450EJ1V0PM00 7 µ PD160083 Figure 4−−−−2. γγγγ -corrected Voltages and Ladder Resistors Ratio V33’’ V32’’ V31’’ V1’’ V2’’ V0’’ V254’’ V253’’ V225’’ V224’’ V223’’ r253 r252 r225 r224 r223 r222 r254 r33 r32 r31 r30 V15 r255 V17 V255’’V9 V223’ V224’ V225’ V252’ V253’ V254’ V2’ V3’ V31’ V32’ V33’ r30 r31 r32 r33 r222 r223 r224 r251 r252 r253 V1’ V0’ V255’ r254 r255 V10 V252’’ r251 V11 V16 Caution There is no connection between V8 and V9 pin inside the IC. rn Ratio Value rn Ratio Value rn Ratio Value rn Ratio Value r0 31.50 630 r64 2.25 45 r128 1.00 20 r192 1.00 20 r1 27.50 550 r65 2.25 45 r129 1.00 20 r193 1.00 20 r2 24.00 480 r66 2.25 45 r130 1.00 20 r194 1.00 20 r3 21.50 430 r67 2.25 45 r131 1.00 20 r195 1.00 20 r4 19.00 380 r68 2.00 40 r132 1.00 20 r196 1.25 25 r5 17.50 350 r69 2.00 40 r133 1.00 20 r197 1.25 25 r6 16.50 330 r70 2.00 40 r134 1.00 20 r198 1.25 25 r7 15.00 300 r71 2.00 40 r135 1.00 20 r199 1.25 25 r8 14.00 280 r72 2.00 40 r136 1.00 20 r200 1.25 25 r9 13.00 260 r73 2.00 40 r137 1.00 20 r201 1.25 25 r10 12.00 240 r74 2.00 40 r138 1.00 20 r202 1.25 25 r11 11.00 220 r75 2.00 40 r139 1.00 20 r203 1.25 25 r12 10.00 200 r76 1.75 35 r140 1.00 20 r204 1.25 25 r13 9.50 190 r77 1.75 35 r141 1.00 20 r205 1.25 25 r14 9.50 190 r78 1.75 35 r142 1.00 20 r206 1.25 25 r15 9.00 180 r79 1.75 35 r143 1.00 20 r207 1.25 25 r16 8.50 170 r80 1.75 35 r144 1.00 20 r208 1.25 25 r17 8.00 160 r81 1.75 35 r145 1.00 20 r209 1.25 25 r18 7.50 150 r82 1.75 35 r146 1.00 20 r210 1.25 25 r19 7.50 150 r83 1.75 35 r147 1.00 20 r211 1.25 25 r20 7.00 140 r84 1.75 35 r148 1.00 20 r212 1.25 25 r21 6.50 130 r85 1.75 35 r149 1.00 20 r213 1.25 25 r22 6.50 130 r86 1.50 30 r150 1.00 20 r214 1.25 25 r23 6.00 120 r87 1.50 30 r151 1.00 20 r215 1.25 25 r24 6.00 120 r88 1.50 30 r152 1.00 20 r216 1.25 25 r25 5.50 110 r89 1.50 30 r153 1.00 20 r217 1.25 25 r26 5.50 110 r90 1.50 30 r154 1.00 20 r218 1.50 30 r27 5.50 110 r91 1.50 30 r155 1.00 20 r219 1.50 30 r28 5.00 100 r92 1.50 30 r156 1.00 20 r220 1.50 30 r29 5.00 100 r93 1.50 30 r157 1.00 20 r221 1.50 30 r30 5.00 100 r94 1.50 30 r158 1.00 20 r222 1.50 30 r31 4.50 90 r95 1.50 30 r159 1.00 20 r223 1.50 30 r32 4.50 90 r96 1.50 30 r160 1.00 20 r224 1.50 30 r33 4.50 90 r97 1.50 30 r161 1.00 20 r225 2.00 40 r34 4.00 80 r98 1.50 30 r162 1.00 20 r226 2.00 40 r35 4.00 80 r99 1.50 30 r163 1.00 20 r227 2.00 40 r36 4.00 80 r100 1.50 30 r164 1.00 20 r228 2.00 40 r37 4.00 80 r101 1.50 30 r165 1.00 20 r229 2.00 40 r38 3.75 75 r102 1.50 30 r166 1.00 20 r230 2.50 50 r39 3.75 75 r103 1.50 30 r167 1.00 20 r231 2.50 50 r40 3.50 70 r104 1.50 30 r168 1.00 20 r232 2.50 50 r41 3.50 70 r105 1.50 30 r169 1.00 20 r233 3.00 60 r42 3.50 70 r106 1.50 30 r170 1.00 20 r234 3.00 60 r43 3.50 70 r107 1.50 30 r171 1.00 20 r235 3.00 60 r44 3.25 65 r108 1.50 30 r172 1.00 20 r236 3.50 70 r45 3.25 65 r109 1.50 30 r173 1.00 20 r237 3.50 70 r46 3.00 60 r110 1.25 25 r174 1.00 20 r238 4.00 80 r47 3.00 60 r111 1.25 25 r175 1.00 20 r239 4.00 80 r48 3.00 60 r112 1.25 25 r176 1.00 20 r240 4.50 90 r49 3.00 60 r113 1.25 25 r177 1.00 20 r241 5.00 100 r50 3.00 60 r114 1.25 25 r178 1.00 20 r242 5.00 100 r51 3.00 60 r115 1.25 25 r179 1.00 20 r243 5.50 110 r52 2.75 55 r116 1.25 25 r180 1.00 20 r244 6.00 120 r53 2.75 55 r117 1.25 25 r181 1.00 20 r245 6.50 130 r54 2.75 55 r118 1.25 25 r182 1.00 20 r246 7.00 140 r55 2.75 55 r119 1.25 25 r183 1.00 20 r247 7.50 150 r56 2.50 50 r120 1.25 25 r184 1.00 20 r248 8.00 160 r57 2.50 50 r121 1.25 25 r185 1.00 20 r249 8.50 170 r58 2.50 50 r122 1.25 25 r186 1.00 20 r250 9.00 180 r59 2.50 50 r123 1.25 25 r187 1.00 20 r251 9.50 190 r60 2.50 50 r124 1.25 25 r188 1.00 20 r252 10.50 210 r61 2.50 50 r125 1.25 25 r189 1.00 20 r253 11.50 230 r62 2.25 45 r126 1.00 20 r190 1.00 20 r254 12.50 250 r63 2.25 45 r127 1.00 20 r191 1.00 20 r255 25.00 500
Preliminary Product Information S16450EJ1V0PM008 µ PD160083 Figure 4−−−−3. Relationship between Input Data and Output Voltage (1/2) (Output voltage 1) VDD2 – 0.1 V ≥ V0 > V1 > V2 > V3 > V4 > V5 > V6 > V7 > V8 ≥ 0.5 VDD2 Data Data Data Data 00H V0' V0 40H V64' V3 80H V128'V4 C0H V192'V5 01H V1' V1 41H V65' V3+(V4-V3) X 45 / 201081H V129'V4+(V5-V4) X 20 / 1280C1H V193'V5+(V6-V5) X 20 / 810 02H V2' V1+(V2-V1) X 550 / 657042H V66' V3+(V4-V3) X 90 / 201082H V130'V4+(V5-V4) X 40 / 1280C2H V194'V5+(V6-V5) X 40 / 810 03H V3' V1+(V2-V1) X 1030 / 657043H V67' V3+(V4-V3) X 135 / 201083H V131'V4+(V5-V4) X 60 / 1280C3H V195'V5+(V6-V5) X 60 / 810 04H V3' V1+(V2-V1) X 1460 / 657044H V68' V3+(V4-V3) X 180 / 201084H V132'V4+(V5-V4) X 80 / 1280C4H V196'V5+(V6-V5) X 80 / 810 05H V5' V1+(V2-V1) X 1840 / 657045H V69' V3+(V4-V3) X 220 / 201085H V133'V4+(V5-V4) X 100 / 1280C5H V197'V5+(V6-V5) X 105 / 810 06H V6' V1+(V2-V1) X 2190 / 657046H V70' V3+(V4-V3) X 260 / 201086H V134'V4+(V5-V4) X 120 / 1280C6H V198'V5+(V6-V5) X 130 / 810 07H V7' V1+(V2-V1) X 2520 / 657047H V71' V3+(V4-V3) X 300 / 201087H V135'V4+(V5-V4) X 140 / 1280C7H V199'V5+(V6-V5) X 155 / 810 08H V8' V1+(V2-V1) X 2820 / 657048H V72' V3+(V4-V3) X 340 / 201088H V136'V4+(V5-V4) X 160 / 1280C8H V200'V5+(V6-V5) X 180 / 810 09H V9' V1+(V2-V1) X 3100 / 657049H V73' V3+(V4-V3) X 380 / 201089H V137'V4+(V5-V4) X 180 / 1280C9H V201'V5+(V6-V5) X 205 / 810 0AH V10' V1+(V2-V1) X 3360 / 65704AH V74' V3+(V4-V3) X 420 / 20108AH V138'V4+(V5-V4) X 200 / 1280CAH V202' V5+(V6-V5) X 230 / 810 0BH V11' V1+(V2-V1) X 3600 / 65704BH V75' V3+(V4-V3) X 460 / 20108BH V139'V4+(V5-V4) X 220 / 1280CBH V203' V5+(V6-V5) X 255 / 810 0CH V12' V1+(V2-V1) X 3820 / 65704CH V76' V3+(V4-V3) X 500 / 20108CH V140'V4+(V5-V4) X 240 / 1280CCH V204' V5+(V6-V5) X 280 / 810 0DH V13' V1+(V2-V1) X 4020 / 65704DH V77' V3+(V4-V3) X 535 / 20108DH V141'V4+(V5-V4) X 260 / 1280CDH V205' V5+(V6-V5) X 305 / 810 0EH V14' V1+(V2-V1) X 4210 / 65704EH V78' V3+(V4-V3) X 570 / 20108EH V142'V4+(V5-V4) X 280 / 1280CEH V206' V5+(V6-V5) X 330 / 810 0FH V15' V1+(V2-V1) X 4400 / 65704FH V79' V3+(V4-V3) X 605 / 20108FH V143'V4+(V5-V4) X 300 / 1280CFH V207' V5+(V6-V5) X 355 / 810 10H V16' V1+(V2-V1) X 4580 / 657050H V80' V3+(V4-V3) X 640 / 201090H V144'V4+(V5-V4) X 320 / 1280D0H V208'V5+(V6-V5) X 380 / 810 11H V17' V1+(V2-V1) X 4750 / 657051H V81' V3+(V4-V3) X 675 / 201091H V145'V4+(V5-V4) X 340 / 1280D1H V209'V5+(V6-V5) X 405 / 810 12H V18' V1+(V2-V1) X 4910 / 657052H V82' V3+(V4-V3) X 710 / 201092H V146'V4+(V5-V4) X 360 / 1280D2H V210'V5+(V6-V5) X 430 / 810 13H V19' V1+(V2-V1) X 5060 / 657053H V83' V3+(V4-V3) X 745 / 201093H V147'V4+(V5-V4) X 380 / 1280D3H V211'V5+(V6-V5) X 455 / 810 14H V20' V1+(V2-V1) X 5210 / 657054H V84' V3+(V4-V3) X 780 / 201094H V148'V4+(V5-V4) X 400 / 1280D4H V212'V5+(V6-V5) X 480 / 810 15H V21' V1+(V2-V1) X 5350 / 657055H V85' V3+(V4-V3) X 815 / 201095H V149'V4+(V5-V4) X 420 / 1280D5H V213'V5+(V6-V5) X 505 / 810 16H V22' V1+(V2-V1) X 5480 / 657056H V86' V3+(V4-V3) X 850 / 201096H V150'V4+(V5-V4) X 440 / 1280D6H V214'V5+(V6-V5) X 530 / 810 17H V23' V1+(V2-V1) X 5610 / 657057H V87' V3+(V4-V3) X 880 / 201097H V151'V4+(V5-V4) X 460 / 1280D7H V215'V5+(V6-V5) X 555 / 810 18H V24' V1+(V2-V1) X 5730 / 657058H V88' V3+(V4-V3) X 910 / 201098H V152'V4+(V5-V4) X 480 / 1280D8H V216'V5+(V6-V5) X 580 / 810 19H V25' V1+(V2-V1) X 5850 / 657059H V89' V3+(V4-V3) X 940 / 201099H V153'V4+(V5-V4) X 500 / 1280D9H V217'V5+(V6-V5) X 605 / 810 1AH V26' V1+(V2-V1) X 5960 / 65705AH V90' V3+(V4-V3) X 970 / 20109AH V154'V4+(V5-V4) X 520 / 1280DAH V218' V5+(V6-V5) X 630 / 810 1BH V27' V1+(V2-V1) X 6070 / 65705BH V91' V3+(V4-V3) X 1000 / 20109BH V155'V4+(V5-V4) X 540 / 1280DBH V219' V5+(V6-V5) X 660 / 810 1CH V28' V1+(V2-V1) X 6180 / 65705CH V92' V3+(V4-V3) X 1030 / 20109CH V156'V4+(V5-V4) X 560 / 1280DCH V220' V5+(V6-V5) X 690 / 810 1DH V29' V1+(V2-V1) X 6280 / 65705DH V93' V3+(V4-V3) X 1060 / 20109DH V157'V4+(V5-V4) X 580 / 1280DDH V221' V5+(V6-V5) X 720 / 810 1EH V30' V1+(V2-V1) X 6380 / 65705EH V94' V3+(V4-V3) X 1090 / 20109EH V158'V4+(V5-V4) X 600 / 1280DEH V222' V5+(V6-V5) X 750 / 810 1FH V31' V1+(V2-V1) X 6480 / 65705FH V95' V3+(V4-V3) X 1120 / 20109FH V159'V4+(V5-V4) X 620 / 1280DFH V223' V5+(V6-V5) X 780 / 810 20H V32' V2 60H V96' V3+(V4-V3) X 1150 / 2010A0H V160'V4+(V5-V4) X 640 1280 E0H V224'V6 21H V33' V2+(V3-V2) X 90 / 203061H V97' V3+(V4-V3) X 1180 / 2010A1H V161'V4+(V5-V4) X 660 / 1280E1H V225'V6+(V7-V6) X 30 / 2940 22H V34' V2+(V3-V2) X 180 / 203062H V98' V3+(V4-V3) X 1210 / 2010A2H V162'V4+(V5-V4) X 680 / 1280E2H V226'V6+(V7-V6) X 70 / 2940 23H V35' V2+(V3-V2) X 260 / 203063H V99' V3+(V4-V3) X 1240 / 2010A3H V163'V4+(V5-V4) X 700 / 1280E3H V227'V6+(V7-V6) X 110 / 2940 24H V36' V2+(V3-V2) X 340 / 203064H V100'V3+(V4-V3) X 1270 / 2010A4H V164'V4+(V5-V4) X 720 / 1280E4H V228'V6+(V7-V6) X 150 / 2940 25H V37' V2+(V3-V2) X 420 / 203065H V101'V3+(V4-V3) X 1300 / 2010A5H V165'V4+(V5-V4) X 740 / 1280E5H V229'V6+(V7-V6) X 190 / 2940 26H V38' V2+(V3-V2) X 500 / 203066H V102'V3+(V4-V3) X 1330 / 2010A6H V166'V4+(V5-V4) X 760 / 1280E6H V230'V6+(V7-V6) X 230 / 2940 27H V39' V2+(V3-V2) X 575 / 203067H V103'V3+(V4-V3) X 1360 / 2010A7H V167'V4+(V5-V4) X 780 / 1280E7H V231'V6+(V7-V6) X 280 / 2940 28H V30' V2+(V3-V2) X 650 / 203068H V104'V3+(V4-V3) X 1390 / 2010A8H V168'V4+(V5-V4) X 800 / 1280E8H V232'V6+(V7-V6) X 330 / 2940 29H V41' V2+(V3-V2) X 720 / 203069H V105'V3+(V4-V3) X 1420 / 2010A9H V169'V4+(V5-V4) X 820 / 1280E9H V233'V6+(V7-V6) X 380 / 2940 2AH V42' V2+(V3-V2) X 790 / 20306AH V106'V3+(V4-V3) X 1450 / 2010AAH V170' V4+(V5-V4) X 840 / 1280EAH V234' V6+(V7-V6) X 440 / 2940 2BH V43' V2+(V3-V2) X 860 / 20306BH V107'V3+(V4-V3) X 1480 / 2010ABH V171' V4+(V5-V4) X 860 / 1280EBH V235' V6+(V7-V6) X 500 / 2940 2CH V44' V2+(V3-V2) X 930 / 20306CH V108'V3+(V4-V3) X 1510 / 2010ACH V172' V4+(V5-V4) X 880 / 1280ECH V236' V6+(V7-V6) X 560 / 2940 2DH V45' V2+(V3-V2) X 995 / 20306DH V109'V3+(V4-V3) X 1540 / 2010ADH V173' V4+(V5-V4) X 900 / 1280EDH V237' V6+(V7-V6) X 630 / 2940 2EH V46' V2+(V3-V2) X 1060 / 20306EH V110'V3+(V4-V3) X 1570 / 2010AEH V174' V4+(V5-V4) X 920 / 1280EEH V238' V6+(V7-V6) X 700 / 2940 2FH V47' V2+(V3-V2) X 1120 / 20306FH V111'V3+(V4-V3) X 1595 / 2010AFH V175'V4+(V5-V4) X 940 / 1280EFH V239' V6+(V7-V6) X 780 / 2940 30H V48' V2+(V3-V2) X 1180 / 203070H V112'V3+(V4-V3) X 1620 / 2010B0H V176'V4+(V5-V4) X 960 / 1280F0H V240'V6+(V7-V6) X 860 / 2940 31H V49' V2+(V3-V2) X 1240 / 203071H V113'V3+(V4-V3) X 1645 / 2010B1H V177'V4+(V5-V4) X 980 / 1280F1H V241'V6+(V7-V6) X 950 / 2940 32H V50' V2+(V3-V2) X 1300 / 203072H V114'V3+(V4-V3) X 1670 / 2010B2H V178'V4+(V5-V4) X 1000 / 1280F2H V242'V6+(V7-V6) X 1050 / 2940 33H V51' V2+(V3-V2) X 1360 / 203073H V115'V3+(V4-V3) X 1695 / 2010B3H V179'V4+(V5-V4) X 1020 / 1280F3H V243'V6+(V7-V6) X 1150 / 2940 34H V52' V2+(V3-V2) X 1420 / 203074H V116'V3+(V4-V3) X 1720 / 2010B4H V180'V4+(V5-V4) X 1040 / 1280F4H V244'V6+(V7-V6) X 1260 / 2940 35H V53' V2+(V3-V2) X 1475 / 203075H V117'V3+(V4-V3) X 1745 / 2010B5H V181'V4+(V5-V4) X 1060 / 1280F5H V245'V6+(V7-V6) X 1380 / 2940 36H V54' V2+(V3-V2) X 1530 / 203076H V118'V3+(V4-V3) X 1770 / 2010B6H V182'V4+(V5-V4) X 1080 / 1280F6H V246'V6+(V7-V6) X 1510 / 2940 37H V55' V2+(V3-V2) X 1585 / 203077H V119'V3+(V4-V3) X 1795 / 2010B7H V183'V4+(V5-V4) X 1100 / 1280F7H V247'V6+(V7-V6) X 1650 / 2940 38H V56' V2+(V3-V2) X 1640 / 203078H V120'V3+(V4-V3) X 1820 / 2010B8H V184'V4+(V5-V4) X 1120 / 1280F8H V248'V6+(V7-V6) X 1800 / 2940 39H V57' V2+(V3-V2) X 1690 / 203079H V121'V3+(V4-V3) X 1845 / 2010B9H V185'V4+(V5-V4) X 1140 / 1280F9H V249'V6+(V7-V6) X 1960 / 2940 3AH V58' V2+(V3-V2) X 1740 / 20307AH V122'V3+(V4-V3) X 1870 / 2010BAH V186' V4+(V5-V4) X 1160 / 1280FAH V250' V6+(V7-V6) X 2130 / 2940 3BH V59' V2+(V3-V2) X 1790 / 20307BH V123'V3+(V4-V3) X 1895 / 2010BBH V187' V4+(V5-V4) X 1180 / 1280FBH V251' V6+(V7-V6) X 2310 / 2940 3CH V60' V2+(V3-V2) X 1840 / 20307CH V124'V3+(V4-V3) X 1920 / 2010BCH V188' V4+(V5-V4) X 1200 / 1280FCH V252' V6+(V7-V6) X 2500 / 2940 3DH V61' V2+(V3-V2) X 1890 / 20307DH V125'V3+(V4-V3) X 1945 / 2010BDH V189' V4+(V5-V4) X 1220 / 1280FDH V253' V6+(V7-V6) X 2710 / 2940 3EH V62' V2+(V3-V2) X 1940 / 20307EH V126'V3+(V4-V3) X 1970 / 2010BEH V190' V4+(V5-V4) X 1240 / 1280FEH V254' V7 3FH V63' V2+(V3-V2) X 1985 / 20307FH V127'V3+(V4-V3) X 1990 / 2010BFH V191'V4+(V5-V4) X 1260 / 1280FFH V255'V8 Output Voltage Output Voltage Output Voltage Output Voltage
Preliminary Product Information S16450EJ1V0PM00 9 µ PD160083 Figure 4−−−−3. Relationship between Input Data and Output Voltage (2/2) (Output voltage 2) 0.5 VDD2 ≥≥≥≥ V9 > V10 > V11 > V12 > V13 > V14 > V15 > V16 > V17 ≥≥≥≥ VSS2 + 0.1 V Data Data Dat a Data 00H V0" V17 40H V64" V14 80H V128" V13 C0H V192" V12 01H V1" V16 41H V65" V14+(V13-V14) X 45 / 201081H V129" V13+(V12-V13) X 20 / 1280C1H V193" V12+(V11-V12) X 20 / 810 02H V2" V16+(V15-V16) X 550 / 657042H V66" V14+(V13-V14) X 90 / 201082H V130" V13+(V12-V13) X 40 / 1280C2H V194" V12+(V11-V12) X 40 / 810 03H V3" V16+(V15-V16) X 1030 / 657043H V67" V14+(V13-V14) X 135 / 201083H V131" V13+(V12-V13) X 60 / 1280C3H V195" V12+(V11-V12) X 60 / 810 04H V4" V16+(V15-V16) X 1460 / 657044H V68" V14+(V13-V14) X 180 / 201084H V132" V13+(V12-V13) X 80 / 1280C4H V196" V12+(V11-V12) X 80 / 810 05H V5" V16+(V15-V16) X 1840 / 657045H V69" V14+(V13-V14) X 220 / 201085H V133" V13+(V12-V13) X 100 / 1280C5H V197" V12+(V11-V12) X 105 / 810 06H V6" V16+(V15-V16) X 2190 / 657046H V70" V14+(V13-V14) X 260 / 201086H V134" V13+(V12-V13) X 120 / 1280C6H V198" V12+(V11-V12) X 130 / 810 07H V7" V16+(V15-V16) X 2520 / 657047H V71" V14+(V13-V14) X 300 / 201087H V135" V13+(V12-V13) X 140 / 1280C7H V199" V12+(V11-V12) X 155 / 810 08H V8" V16+(V15-V16) X 2820 / 657048H V72" V14+(V13-V14) X 340 / 201088H V136" V13+(V12-V13) X 160 / 1280C8H V200" V12+(V11-V12) X 180 / 810 09H V9" V16+(V15-V16) X 3100 / 657049H V73" V14+(V13-V14) X 380 / 201089H V137" V13+(V12-V13) X 180 / 1280C9H V201" V12+(V11-V12) X 205 / 810 0AH V10" V16+(V15-V16) X 3360 / 65704AH V74" V14+(V13-V14) X 420 / 20108AH V138" V13+(V12-V13) X 200 / 1280CAH V202" V12+(V11-V12) X 230 / 810 0BH V11" V16+(V15-V16) X 3600 / 65704BH V75" V14+(V13-V14) X 460 / 20108BH V139" V13+(V12-V13) X 220 / 1280CBH V203" V12+(V11-V12) X 255 / 810 0CH V12" V16+(V15-V16) X 3820 / 65704CH V76" V14+(V13-V14) X 500 / 20108CH V140" V13+(V12-V13) X 240 / 1280CCH V204" V12+(V11-V12) X 280 / 810 0DH V13" V16+(V15-V16) X 4020 / 65704DH V77" V14+(V13-V14) X 535 / 20108DH V141" V13+(V12-V13) X 260 / 1280CDH V205" V12+(V11-V12) X 305 / 810 0EH V14" V16+(V15-V16) X 4210 / 65704EH V78" V14+(V13-V14) X 570 / 20108EH V142" V13+(V12-V13) X 280 / 1280CEH V206" V12+(V11-V12) X 330 / 810 0FH V15" V16+(V15-V16) X 4400 / 65704FH V79" V14+(V13-V14) X 605 / 20108FH V143" V13+(V12-V13) X 300 / 1280CFH V207" V12+(V11-V12) X 355 / 810 10H V16" V16+(V15-V16) X 4580 / 657050H V80" V14+(V13-V14) X 640 / 201090H V144" V13+(V12-V13) X 320 / 1280D0H V208" V12+(V11-V12) X 380 / 810 11H V17" V16+(V15-V16) X 4750 / 657051H V81" V14+(V13-V14) X 675 / 201091H V145" V13+(V12-V13) X 340 / 1280D1H V209" V12+(V11-V12) X 405 / 810 12H V18" V16+(V15-V16) X 4910 / 657052H V82" V14+(V13-V14) X 710 / 201092H V146" V13+(V12-V13) X 360 / 1280D2H V210" V12+(V11-V12) X 430 / 810 13H V19" V16+(V15-V16) X 5060 / 657053H V83" V14+(V13-V14) X 745 / 201093H V147" V13+(V12-V13) X 380 / 1280D3H V211" V12+(V11-V12) X 455 / 810 14H V20" V16+(V15-V16) X 5210 / 657054H V84" V14+(V13-V14) X 780 / 201094H V148" V13+(V12-V13) X 400 / 1280D4H V212" V12+(V11-V12) X 480 / 810 15H V21" V16+(V15-V16) X 5350 / 657055H V85" V14+(V13-V14) X 815 / 201095H V149" V13+(V12-V13) X 420 / 1280D5H V213" V12+(V11-V12) X 505 / 810 16H V22" V16+(V15-V16) X 5480 / 657056H V86" V14+(V13-V14) X 850 / 201096H V150" V13+(V12-V13) X 440 / 1280D6H V214" V12+(V11-V12) X 530 / 810 17H V23" V16+(V15-V16) X 5610 / 657057H V87" V14+(V13-V14) X 880 / 201097H V151" V13+(V12-V13) X 460 / 1280D7H V215" V12+(V11-V12) X 555 / 810 18H V24" V16+(V15-V16) X 5730 / 657058H V88" V14+(V13-V14) X 910 / 201098H V152" V13+(V12-V13) X 480 / 1280D8H V216" V12+(V11-V12) X 580 / 810 19H V25" V16+(V15-V16) X 5850 / 657059H V89" V14+(V13-V14) X 940 / 201099H V153" V13+(V12-V13) X 500 / 1280D9H V217" V12+(V11-V12) X 605 / 810 1AH V26" V16+(V15-V16) X 5960 / 65705AH V90" V14+(V13-V14) X 970 / 20109AH V154" V13+(V12-V13) X 520 / 1280DAH V218" V12+(V11-V12) X 630 / 810 1BH V27" V16+(V15-V16) X 6070 / 65705BH V91" V14+(V13-V14) X 1000 / 20109BH V155" V13+(V12-V13) X 540 / 1280DBH V219" V12+(V11-V12) X 660 / 810 1CH V28" V16+(V15-V16) X 6180 / 65705CH V92" V14+(V13-V14) X 1030 / 20109CH V156" V13+(V12-V13) X 560 / 1280DCH V220" V12+(V11-V12) X 690 / 810 1DH V29" V16+(V15-V16) X 6280 / 65705DH V93" V14+(V13-V14) X 1060 / 20109DH V157" V13+(V12-V13) X 580 / 1280DDH V221" V12+(V11-V12) X 720 / 810 1EH V30" V16+(V15-V16) X 6380 / 65705EH V94" V14+(V13-V14) X 1090 / 20109EH V158" V13+(V12-V13) X 600 / 1280DEH V222" V12+(V11-V12) X 750 / 810 1FH V31" V16+(V15-V16) X 6480 / 65705FH V95" V14+(V13-V14) X 1120 / 20109FH V159" V13+(V12-V13) X 620 / 1280DFH V223" V12+(V11-V12) X 780 / 810 20H V32" V15 60H V96" V14+(V13-V14) X 1150 2010A0H V160" V13+(V12-V13) X 640 1280E0H V224" V11 21H V33" V15+(V14-V15) X 90 / 203061H V97" V14+(V13-V14) X 1180 / 2010A1H V161" V13+(V12-V13) X 660 / 1280E1H V225" V11+(V10-V11) X 30 / 2940 22H V34" V15+(V14-V15) X 180 / 203062H V98" V14+(V13-V14) X 1210 / 2010A2H V162" V13+(V12-V13) X 680 / 1280E2H V226" V11+(V10-V11) X 70 / 2940 23H V35" V15+(V14-V15) X 260 / 203063H V99" V14+(V13-V14) X 1240 / 2010A3H V163" V13+(V12-V13) X 700 / 1280E3H V227" V11+(V10-V11) X 110 / 2940 24H V36" V15+(V14-V15) X 340 / 203064H V100" V14+(V13-V14) X 1270 / 2010A4H V164" V13+(V12-V13) X 720 / 1280E4H V228" V11+(V10-V11) X 150 / 2940 25H V37" V15+(V14-V15) X 420 / 203065H V101" V14+(V13-V14) X 1300 / 2010A5H V165" V13+(V12-V13) X 740 / 1280E5H V229" V11+(V10-V11) X 190 / 2940 26H V38" V15+(V14-V15) X 500 / 203066H V102" V14+(V13-V14) X 1330 / 2010A6H V166" V13+(V12-V13) X 760 / 1280E6H V230" V11+(V10-V11) X 230 / 2940 27H V39" V15+(V14-V15) X 575 / 203067H V103" V14+(V13-V14) X 1360 / 2010A7H V167" V13+(V12-V13) X 780 / 1280E7H V231" V11+(V10-V11) X 280 / 2940 28H V40" V15+(V14-V15) X 650 / 203068H V104" V14+(V13-V14) X 1390 / 2010A8H V168" V13+(V12-V13) X 800 / 1280E8H V232" V11+(V10-V11) X 330 / 2940 29H V41" V15+(V14-V15) X 720 / 203069H V105" V14+(V13-V14) X 1420 / 2010A9H V169" V13+(V12-V13) X 820 / 1280E9H V233" V11+(V10-V11) X 380 / 2940 2AH V42" V15+(V14-V15) X 790 / 20306AH V106" V14+(V13-V14) X 1450 / 2010AAH V170" V13+(V12-V13) X 840 / 1280EAH V234" V11+(V10-V11) X 440 / 2940 2BH V43" V15+(V14-V15) X 860 / 20306BH V107" V14+(V13-V14) X 1480 / 2010ABH V171" V13+(V12-V13) X 860 / 1280EBH V235" V11+(V10-V11) X 500 / 2940 2CH V44" V15+(V14-V15) X 930 / 20306CH V108" V14+(V13-V14) X 1510 / 2010ACH V172" V13+(V12-V13) X 880 / 1280ECH V236" V11+(V10-V11) X 560 / 2940 2DH V45" V15+(V14-V15) X 995 / 20306DH V109" V14+(V13-V14) X 1540 / 2010ADH V173" V13+(V12-V13) X 900 / 1280EDH V237" V11+(V10-V11) X 630 / 2940 2EH V46" V15+(V14-V15) X 1060 / 20306EH V110" V14+(V13-V14) X 1570 / 2010AEH V174" V13+(V12-V13) X 920 / 1280EEH V238" V11+(V10-V11) X 700 / 2940 2FH V47" V15+(V14-V15) X 1120 / 20306FH V111" V14+(V13-V14) X 1595 / 2010AFH V175" V13+(V12-V13) X 940 / 1280EFH V239" V11+(V10-V11) X 780 / 2940 30H V48" V15+(V14-V15) X 1180 / 203070H V112" V14+(V13-V14) X 1620 / 2010B0H V176" V13+(V12-V13) X 960 / 1280F0H V240" V11+(V10-V11) X 860 / 2940 31H V49" V15+(V14-V15) X 1240 / 203071H V113" V14+(V13-V14) X 1645 / 2010B1H V177" V13+(V12-V13) X 980 / 1280F1H V241" V11+(V10-V11) X 950 / 2940 32H V50" V15+(V14-V15) X 1300 / 203072H V114" V14+(V13-V14) X 1670 / 2010B2H V178" V13+(V12-V13) X 1000 / 1280F2H V242" V11+(V10-V11) X 1050 / 2940 33H V51" V15+(V14-V15) X 1360 / 203073H V115" V14+(V13-V14) X 1695 / 2010B3H V179" V13+(V12-V13) X 1020 / 1280F3H V243" V11+(V10-V11) X 1150 / 2940 34H V52" V15+(V14-V15) X 1420 / 203074H V116" V14+(V13-V14) X 1720 / 2010B4H V180" V13+(V12-V13) X 1040 / 1280F4H V244" V11+(V10-V11) X 1260 / 2940 35H V53" V15+(V14-V15) X 1475 / 203075H V117" V14+(V13-V14) X 1745 / 2010B5H V181" V13+(V12-V13) X 1060 / 1280F5H V245" V11+(V10-V11) X 1380 / 2940 36H V54" V15+(V14-V15) X 1530 / 203076H V118" V14+(V13-V14) X 1770 / 2010B6H V182" V13+(V12-V13) X 1080 / 1280F6H V246" V11+(V10-V11) X 1510 / 2940 37H V55" V15+(V14-V15) X 1585 / 203077H V119" V14+(V13-V14) X 1795 / 2010B7H V183" V13+(V12-V13) X 1100 / 1280F7H V247" V11+(V10-V11) X 1650 / 2940 38H V56" V15+(V14-V15) X 1640 / 203078H V120" V14+(V13-V14) X 1820 / 2010B8H V184" V13+(V12-V13) X 1120 / 1280F8H V248" V11+(V10-V11) X 1800 / 2940 39H V57" V15+(V14-V15) X 1690 / 203079H V121" V14+(V13-V14) X 1845 / 2010B9H V185" V13+(V12-V13) X 1140 / 1280F9H V249" V11+(V10-V11) X 1960 / 2940 3AH V58" V15+(V14-V15) X 1740 / 20307AH V122" V14+(V13-V14) X 1870 / 2010BAH V186" V13+(V12-V13) X 1160 / 1280FAH V250" V11+(V10-V11) X 2130 / 2940 3BH V59" V15+(V14-V15) X 1790 / 20307BH V123" V14+(V13-V14) X 1895 / 2010BBH V187" V13+(V12-V13) X 1180 / 1280FBH V251" V11+(V10-V11) X 2310 / 2940 3CH V60" V15+(V14-V15) X 1840 / 20307CH V124" V14+(V13-V14) X 1920 / 2010BCH V188" V13+(V12-V13) X 1200 / 1280FCH V252" V11+(V10-V11) X 2500 / 2940 3DH V61" V15+(V14-V15) X 1890 / 20307DH V125" V14+(V13-V14) X 1945 / 2010BDH V189" V13+(V12-V13) X 1220 / 1280FDH V253" V11+(V10-V11) X 2710 / 2940 3EH V62" V15+(V14-V15) X 1940 / 20307EH V126" V14+(V13-V14) X 1970 / 2010BEH V190" V13+(V12-V13) X 1240 / 1280FEH V254" V10 3FH V63" V15+(V14-V15) X 1985 / 20307FH V127" V14+(V13-V14) X 1990 / 2010BFH V191" V13+(V12-V13) X 1260 / 1280FFH V255" V9 Output Voltage Output Voltage Output Voltage Output Voltage
Preliminary Product Information S16450EJ1V0PM0010 µ PD160083 5. RELATIONSHIP BETWEEN INPUT DATA AND OUTPUT PIN Data format: 8 bits × 1 RGB (3 dots) Input width: 12 bits x double edge (1-pixel data) (1) R,/L = H (Right shift) Output S 1 S2 S3 S4 !!! S479 S480 Data D 00P-D03P, D 00N -D03N D 10P-D13P, D 10N -D13N D 20P-D23P, D 20N -D23N D 00P-D03P, D 00N -D03N !!! D 10P-D13P, D 10N -D13N D 20P-D23P, D 20N -D23N (2) R,/L = L (Left shift) Output S 1 S2 S3 S4 !!! S479 S480 Data D 00P-D03P, D 00N -D03N D 10P-D13P, D 10N -D13N D 20P-D23P, D 20N -D23N D 00P-D03P, D 00N -D03N !!! D 10P-D13P, D 10N -D13N D 20P-D23P, D 20N -D23N POL S 2n–1Note S2nNote HV 0-V8 V9-V17 LV 9-V17 V0-V8 Note S2n-1 (Odd output), S2n (Even output) , n = 1, 2, … 240 6. DATA INVERSION (INV) INV controls the internal data inversion. When INV = H, the internal data is inverted and CLK is not inverted (See the figure as below). Using the INV pin, the RSDS data bus interface can be changed. D00N CLKN µPD160083 µPD160083 RSDS receiver Data register D00P D23P D23N CLKP D00P D00N D23P D23N CLKP CLKN INV = H INV = L RSDS receiver Data register
Preliminary Product Information S16450EJ1V0PM00 11 µ PD160083 7. TIMING CHART AND RELATIONSHIP BETWEEN 8-BIT DATA AND DATA BUS LINE CLK (Differential) (Differential) STHR (2) (1) (0) (0) (1) (0) (1) tHOLD2 tHOLD1 tHOLD1 tSETUP2 tSETUP1 tSETUP1 D 00 (Differential) D 01 (Differential) D 02 (Differential) D 03 (Differential) D 10 (Differential) D 11 (Differential) D 12 (Differential) D 13 (Differential) D 20 (Differential) D 21 (Differential) D 22 (Differential) D 23 (3) (2) (3) (2) (3) (4) (6) (0) (2) (4) (6) (0) (2) (4) (6) (7) (6) (7) (6) (7) (5) (4) (5) (4) (5) (3) (2) (3) (2) (3) (1) (0) (1) (0) (1) (7) (6) (7) (6) (7) (5) (4) (5) (4) (5) (3) (2) (3) (2) (3) (1) (0) (1) (0) (1) (7) (6) (7) (6) (7) (5) (4) (5) (4) (5) Remark Sn(0): LSB, Sn(7): MSB
Preliminary Product Information S16450EJ1V0PM0012 µ PD160083 8. RELATIONSHIP BETWEEN MODE, STB, POL, MODE1 to MODE3 AND OUTPUT WAVEFORM The µPD160083 has a various kind of output short function that can be controlled by MODE1 to MODE3. Please refer to the following description of each function and decide MODE1 to MODE3 after considering the suitable driving method. MODE1 MODE2 MODE3 Charge Sharing Description of Output Short H or open X X Non-active Output short doesn ’t work H or open X Active During STB = H H or open Active During 34 CLKs after falling edge of STB L L L Active During 68 CLKs after falling edge of STB Remark X: H or L (1) MODE1 = H or open All outputs always become Hi-Z condition during STB = H at this mode. And output short function doesn’t work and all output always start at the falling edge of STB (See figure 8−1). Figure 8−−−−1. MODE1 = H or open STB VOUT (Odd) VOUT (Even) POL Hi-Z Hi-Z Hi-Z V0 -V8 V9 -V17 V9 -V17 V0 -V8 V0 -V8V9 -V17 : Repair Amp. outputRemark
Preliminary Product Information S16450EJ1V0PM0014 µ PD160083 (3) MODE1 = L, MODE2 = L All output always become Hi-Z condition during STB = H in this mode. And output short function works at the falling edge of STB during requested period by MODE3. At MODE3 = H, the driver IC counts 34 CLKs of output short period by itsself, and count 68 CLKs at MODE = L. After finishing the output short period, the gray-scale voltage to the LCD panel is started. When POL signal is not changed, the gray-scale voltage to the LCD panel is started at the falling edge of STB without any change of POL signal (See figure 8−3). MODE3 Output Short Period H or open 34 CLKs L 68 CLKs Remark MODE1 = L, MODE2 = L Figure 8−−−−3. MODE1 = L, MODE2 = L STB VOUT (Odd) VOUT (Even) POL V0 - V8 V9 - V17 V9 - V17 V9 - V17 V0 - V8 V0 - V8 Output reset (34/68_CLKs) Output reset (34/68_CLKs) Hi-Z Hi-Z Hi-Z : Repair Amp. outputRemark
Preliminary Product Information S16450EJ1V0PM00 15 µ PD160083 9. ELECTRICAL SPECIFICATIONS Parameter Symbol Ratings Unit Logic Part Supply Voltage V DD1D , VDD1A –0.5 to +4.0 V Driver Part Supply Voltage V DD2 –0.5 to +14.0 V Logic Part Input Voltage V I1 –0.5 to VDD1 + 0.5 V Driver Part Input Voltage V I2 –0.3 to VDD2 + 0.3 V Logic Part Output Voltage V O1 –0.5 to VDD1 + 0.5 V Driver Part Output Voltage V O2 –0.5 to VDD2 + 0.5 V Operating Ambient Temperature TA –10 to +75 °C Storage Temperature T stg –55 to +125 °C Caution Product quality may suffer if the absolute maximum rating is exceeded even momentarily for any parameter. That is, the absolute maximum ratings are rated values at which the product is on the verge of suffering physical damage, and therefore the product must be used under conditions that ensure that the absolute maximum ratings are not exceeded. Recommended Operating Range (T A = –10 to +75 °C, VSS1D , VSS1A = VSS2 = 0 V) Parameter Symbol Conditions MIN. TYP. MAX. Unit Logic Part Supply Voltage VDD1D , VDD1A 2.7 3.3 3.6 V Driver Part Supply Voltage VDD2 10.5 12.0 13.5 V High-Level Input Voltage 1 VIH1 0.7 VDD1 VDD1 V Low-Level Input Voltage 1 VIL1 0 0.3 V DD1 V High-Level Input Voltage 2 (Differential :VRSDS P-VRSDS N) VIH2 +100 +200 mV Low-Level Input Voltage 2 (Differential :VRSDS P-VRSDS N) VIL2 VCM = 1.2 V Note –200 –100 mV Common Mode Input Voltage VCM CLK, Dxy (x = 0 to 2) (y = 0 to 3) VOFF = 200 mVp-p Note 0.5 1.2 1.4 V Driver Part Output Voltage VO S1 to S480, RPO1, RPO2 0.1 V DD2 − 0.1 V V0-V8 0.5 VDD2 VDD2 – 0.1 Vγ -Corrected Voltage V Nv V9-V17 0.1 0.5 V DD2 V VDD1 = 2.7 V 70 MHzClock Frequency f CLK VDD1 = 3.0 V 85 MHz Note VRSDS N (CLKN, DxxN) VRSDS P (CLKP, DxxP) VRSDS P-VRSDS N (Internal CLK, DATA) VCM RSDS VIH2 = +100 mV MIN. Internal Logic LL HH 0 V VIL2 = −100 mV MAX. VCM = (VCLKP + VCLKN) /2 or = (VDxxP + VDxxN) /2 (x = 0, 1, 2) VDIFF = (VCLKP − VCLKN) /2 or = (VDxxP − VDxxN) /2 (x = 0, 1, 2) Remark
Preliminary Product Information S16450EJ1V0PM0016 µ PD160083 Parameter Symbol Condition MIN. TYP. MAX. Unit Input Leak Current I IL ± 1.0 µA High-Level Output Voltage VOH STHR (STHL), IOH = 0 mA V DD1 − 0.4 V DD1 V Low-Level Output Voltage VOL STHR (STHL), IOL = 0 mA V SS1 VSS1 + 0.4 V γ -Corrected Resistance Rγ VDD2 = 12.0 V, TA = 25°C, V0-V8 = V9-V17 = 5.0 V 11.91 17.02 22.13 k Ω Pull-up/pull-down Resistance R PU VDD1 = 3.3 V, MODE1 to MODE3, LPC, TEST 80 200 500 k Ω IVOH VX = 11 V, VOUT = 10.5 V Note1 −70 µADriver Output Current IVOL S1 to S480, RPO1, RPO2, VDD2 = 12 V VX = 1.0 V, VOUT = 1.5 V Note1 70 µA VO = 1.5 V to VDD2 – 1.5 V. ± 12 ± 20 mVOutput Voltage Deviation (DVO ) ∆VO VO = 0.1 to 1.5 V, VO = VDD2 – 1.5 V to VDD2 – 0.1 V ± 40 ± 50 mV ∆Vp–p1 VO = 1.5 V to VDD2 – 1.5 V ± 6 ± 10 mVOutput Swing Voltage Difference Deviation (DV RMS ) ∆Vp–p2 VO = 0.1 to 1.5 V, VO = VDD2 – 1.5 V to VDD2 – 0.1 V ± 30 ± 50 mV Output Swing Voltage Average Deviation AV O Input data: 80H ± 1 ± 7.5 mV Logic Part Dynamic Current Consumption 1 IDD11 VDD1 Note1 to note3 2.5 Note2 6.0 Note3 mA Logic Part Dynamic Current Consumption 2 IDD12 VDD1, Note1 to note3 2.0 Note4 6.0 Note5 mA Driver Part Dynamic Current Consumption IDD2 VDD2 , with no load, RPI1, RPI2 are not floating 15.0 Note6 45.0 Note7 mA Notes 1. VX refers to the otuput voltage of analog output pins S1 to S384. VOUT refers to the voltage applied to analog output pins S1 to S384. 2. fCLKP , fCLKN = 67.5 MHz, fSTB = 80.0 kHz, test pattern = dot inversion, TA = 25°C, VDD1 = 3.0 V 3. fCLKP , fCLKN = 67.5 MHz, fSTB = 80.0 kHz, test pattern = dot inversion, VDD1 = 3.6 V 4. fCLKP , fCLKN = 54.0 MHz, fSTB = 64.9 kHz, test pattern = dot inversion, TA = 25°C, VDD1 = 3.0V 5. fCLKP , fCLKN = 54.0 MHz, fSTB = 64.9 kHz, test pattern = dot inversion, VDD1 = 3.6 V 6. fCLKP , fCLKN = 67.5 MHz, fSTB = 80.0 kHz, test pattern = dot inversion, TA = 25°C, VDD2 = 12.0 V 7. fCLKP , fCLKN = 67.5 MHz, fSTB = 80.0 kHz, test pattern = dot inversion, VDD2 = 13.5 V
Preliminary Product Information S16450EJ1V0PM00 17 µ PD160083 Switching Characteristics (TA = –10 to +75 °C, VDD1 = 2.7 to 3.6V, VDD2 = 10.5 to 13.5 V, VSS1 = VSS2 = 0 V) Parameter Symbol Condition MIN. TYP. MAX. Unit VDD1 < 3.0 V 4 12.5 nsStart Pulse Delay Time tPLH1 C L = 15 pF VDD1 ≥ 3.0 V 4 10.0 ns tPLH2 Note1 45 µs tPLH3 Note2 58 µs tPHL2 Note1 45 µs tPHL3 Note2 58 µs tPLH4 Note1 45 µs tPLH5 Note2 58 µs tPHL4 Note1 45 µs Driver Output Delay Time tPHL5 Note2 VDD2 = 12.0 V, RPO1, RPO2, S1 to S480, RL = 9 kΩ , CL = 80 pF 58 µs C I1 Logic input besides STHR (STHL), TA = 25°C 10 pFInput Capacitance C I2 STHR (STHL),TA = 25°C1 5 p F Notes 1. The value is specified when the drive voltage valuw reaches the target output voltage level of ±10%. 2. The value is specified when the drive voltage valuw reaches the target output voltage level of ±0.02 V (Condition: VO = 3.0 V ↔ 12.0 V). <Test condition> C L1 C L2 C L3 R L3R L2 R L5 R L1 = 2.6 kΩ R L2 to RL5 = 1.6 kΩ C Ln = 16 pF C L4 R L4 C L5 R L1 VCOM = 0.5 VDD2 Output Measurement point
Preliminary Product Information S16450EJ1V0PM0018 µ PD160083 Timing Requirement (TA = –10 to +75°C, VDD1 = 2.7 to 3.6V, VSS1 = 0 V, tr = tf = 3.0 ns (CMOS), tr = tf = 1.0 ns (RSDS)) Parameter Symbol Condition MIN. TYP. MAX. Unit VDD1 = 2.7 V 14.3 nsClock Period PW CLK VDD1 = 3.0 V 11.8 ns Clock Pulse High Period PW CLK(H) 5n s Clock Pulse Low Period PW CLK(L) 5n s VDD1 = 2.7 V 3 nsData Setup Time t SETUP1 VDD1 = 3.0 V 2 ns VDD1 = 2.7 V 1 nsData Hold Time t HOLD1 VDD1 = 3.0 V 0 ns Start Pulse Setup Time t SETUP2 1n s Start Pulse Hold Time t HOLD2 3n s Start Pulse “H ” Width PW STH 12 C L K P STB Pulse “H ” Width PW STB 1u s Last Data Timing t LDT 1C L K P STB-CLK Time t STB-CLK STB ↑ → CLKP, CLKN ↓ 3n s Time Between STB and Start Pulse tSTB-STH STB ↑ → STHR (STHL) ↑ 5C L K P POL-STB Time t POL-STB POL ↑ or ↓ → STB ↑ 14 ns STB-POL Time t STB-POL STB ↓ → POL ↓ or ↑ 10 ns Remark tr, tf are defined 10 to 90% of each signal amplitude.
Preliminary Product Information S16450EJ1V0PM00 19 µ PD160083 Switching Characteristics Waveform (R,/L = H) Unless otherwise specified, the input level is defined to be VIH = 0.7 VDD1 , VIL = 0.3 VDD1 at CMOS signal and 0 V at differential signal (RSDS). <MODE1 = H> PWCLK(L) CLK (Differential) POL S1 to S480 STB STHR (1st Dr.) PWCLK(H) tSETUP2 tHOLD2 123 PWCLK tSTB-STH tPLH1 tPOL-STB tPLH3 tPHL2 Hi-Z t LDT PWSTB Invalid tSETUP1 tHOLD1 tSTB-CLK tPHL3 tPLH2 t STB-POL Even Odd 160 161 Even Odd Even tPHL1 STHL (1st Dr.) Last Data RPO1, RPO2 tPLH4 tPLH5 tr tf 0 V VSS1 VDD1 VSS1 VDD1 VSS1 VDD1 VSS1 VDD1 Invalid tPHL4 tPHL5 PWSTH <D1 to D3 > <D472 to D474>< D 475 to D477> Odd tr tf 10% 90% 10% Dn0 to Dn3 (Differential)
0.3 VDD1
0.7 VDD1
10% 90% 10% 0.7 VDD1 0.7VDD1
0 V0 V 0 V0 V0 V0 V0 V0 V0 V
0.7 VDD10.7 VDD1
Preliminary Product Information S16450EJ1V0PM0020 µ PD160083 <MODE1 = L, MODE2 = H> PWCLK(L) CLK (Differential) POL S1 to S480 STB Dn0P to Dn2P (Differential) STHR (1st Dr.) PWCLK(H) tSETUP2 tHOLD2 12 3 PWCLK tSTB-STH tPLH1 t POL-STB tPLH3 tPHL2 t LDT PWSTB Invalid tSETUP1 tHOLD1 tSTB-CLK tPHL3 tPLH2 t STB-POL Even Odd 160 161 Even Odd Even tPHL1 STHL (1st Dr.) Last data RPO1, RPO2 tPLH4 tPLH5 tr tf 0 V 0 V VSS1 VDD1 VSS1 VDD1 VSS1 VDD1 VSS1 VDD1 Invalid tPHL4 tPHL5 PWSTH <D1 to D3> <D472 to D474> <D475 to D477> Odd Output reset 90% 10% 10%
0 V0 V0 V0 V0 V0 V0 V0 V
0.7V DD1 10% 10% 90% tr tf 0.7 VDD10.7 VDD1
Preliminary Product Information S16450EJ1V0PM00 21 µ PD160083 10. RECOMMENDED MOUNTING CONDITIONS The following conditions must be met for mounting conditions of the µPD160010. For more details, refer to the [Semiconductor Device Mount Manual] (http://www.necel.com/pkg/en/mount/index.html) Please consult with our sales offices in case other mounting process is used, or in case the mounting is done under different conditions. µPD160083N- xxx: TCP (TAB Package) Mounting Condition Mounting Method Condition Thermocompression Soldering Heating tool 300 to 350 °C, heating for 2 to 3 sec, pressure 100g (per solder). ACF (Adhesive Conductive Film) Temporary bonding 70 to 100°C, pressure 3 to 8 kg/cm 2, time 3 to 5 sec. Real bonding 165 to 180°C pressure 25 to 45 kg/cm2, time 30 to 40 sec. (When using the anisotropy conductive film SUMIZAC1003 of Sumitomo Bakelite, Ltd.) Caution To find out the detailed conditions for mounting the ACF part, please contact the ACF manufacturing company. Be sure to avoid using two or more mounting methods at a time.
Preliminary Product Information S16450EJ1V0PM0022 µ PD160083 NOTES FOR CMOS DEVICES
1 PRECAUTION AGAINST ESD FOR SEMICONDUCTORS
Note: Strong electric field, when exposed to a MOS device, can cause destruction of the gate oxide and ultimately degrade the device operation. Steps must be taken to stop generation of static electricity as much as possible, and quickly dissipate it once, when it has occurred. Environmental control must be adequate. When it is dry, humidifier should be used. It is recommended to avoid using insulators that easily build static electricity. Semiconductor devices must be stored and transported in an anti-static container, static shielding bag or conductive material. All test and measurement tools including work bench and floor should be grounded. The operator should be grounded using wrist strap. Semiconductor devices must not be touched with bare hands. Similar precautions need to be taken for PW boards with semiconductor devices on it.
2 HANDLING OF UNUSED INPUT PINS FOR CMOS
Note: No connection for CMOS device inputs can be cause of malfunction. If no connection is provided to the input pins, it is possible that an internal input level may be generated due to noise, etc., hence causing malfunction. CMOS devices behave differently than Bipolar or NMOS devices. Input levels of CMOS devices must be fixed high or low by using a pull-up or pull-down circuitry. Each unused pin should be connected to V DD or GND with a resistor, if it is considered to have a possibility of being an output pin. All handling related to the unused pins must be judged device by device and related specifications governing the devices.
3 STATUS BEFORE INITIALIZATION OF MOS DEVICES
Note: Power-on does not necessarily define initial status of MOS device. Production process of MOS does not define the initial operation status of the device. Immediately after the power source is turned ON, the devices with reset function have not yet been initialized. Hence, power-on does not guarantee out-pin levels, I/O settings or contents of registers. Device is not initialized until the reset signal is received. Reset operation must be executed immediately after power-on for devices having reset function.