BT6K48-AS TOSHIBA | Alldatasheet

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Features

/Gb7/G20LCD panel drive output pins: Switching 220 pins /240 pins output /Gb7/G20LCD panel drive output voltage: 13.0 to 33.0 V /Gb7/G20Power supply voltage (VDD): 2.5 to 3.6 V /Gb7/G20Data transfer method: Bidirectional shift registers /Gb7/G20Operating temperature: −20 to 75°C /Gb7/G20Package: Gold bump chip /Gb7/G20CMOS process /Gb7/G20Recommended driver: Source driver JBT6K47-AS for TFT-LCD panel Power supply IC JBT6K49-AS Block Diagram VDDL/R VSSL/R VGGL/R VEEL/R G1 G3 Output circuit block Control circuit block Bidirectional shift registers Output pin switching circuit Input circuit block G238 G240 G239 U/D OCM /OE2 /OE1 DI CPV

Chip size 15470 /Gb4 1240 /G6dm (1) /G2d7735, 620 (2) 7735, /G2d620 (3) /G2d7735, /G2d620 Chip end coordinates (4) 7735, 620 /G6dm Bump pitch 60 /G6dm Bump height 15 /G6dm Pin Name Numbers of Pin Input pin 96 Output pin 240 TEG pin 16 DUMMY pin 46 (Include DUV, DUG, DU) Alignment mark 2 Note 1: The TEG pin is a test pin reserved for electrical characteristics measurements, and must be left open. Alignment mark specification Al Coordinates entry point Pattern prohibited 50 /G6dm 30 /G6dm 30 /G6dm 30 /G6dm 50 /G6dm 50 /G6dm30 /G6dm30 /G6dm50 /G6dm 30 /G6dm

/Gb7/G20Short-side dummy PAD (DU) /Gb7/G20Long-side power supply PAD (VGGL/R) /Gb7/G20Long-side input PAD /Gb7/G20Long-side power supply PAD (VEEL/R, VDDL/R, VSSL/R)/Gb7/G20Long-side output PAD (G1 to G240) [Unit: /G6dm] 65 65 65 2020 65 65 65 2020 40 40 105 40 40 105 100 VGGL Output PAD 240 60 /G6dm pitch single layout JBT6K48-AS Chip size: 15.47 /Gb4 1.24 mm 7 7 Alignment mark_L VSSR VDDR TEG DU TEST17 DUV /OE1 /OE2 DU DI CP V DUG U/D DUV OCM DUG VEER Alignment mark_R VGGR 8 10 12 8 4 4 4 4 4 4 4 4 4 4 4 4 8 10 12 16 DU VSSL VDDL VEEL G240 G239 4 4 DU DU

PAD Coordinates (1) [Unit: /G6dm] No. Name X POINT Y POINT No. Name X POINT Y POINT No. Name X POINT Y POINT

1 V EEL /G2d7258 /G2d482 44 OCM /G2d2701 /G2d482 87 DU 2364 /G2d482

2 V EEL /G2d7173 /G2d482 45 OCM /G2d2616 /G2d482 88 DU 2449 /G2d482

3 V EEL /G2d7088 /G2d482 46 OCM /G2d2531 /G2d482 89 DU 2534 /G2d482

4 V EEL /G2d7003 /G2d482 47 DUV /G2d2311 /G2d482 90 DU 2619 /G2d482

5 V EEL /G2d6918 /G2d482 48 DUV /G2d2226 /G2d482 91 TEG1 2848 /G2d482

6 V EEL /G2d6833 /G2d482 49 DUV /G2d2141 /G2d482 92 TEG2 2933 /G2d482

7 V EEL /G2d6748 /G2d482 50 DUV /G2d2056 /G2d482 93 TEG3 3018 /G2d482

8 V EEL /G2d6663 /G2d482 51 U/D /G2d1836 /G2d482 94 TEG4 3103 /G2d482

9 V EEL /G2d6578 /G2d482 52 U/D /G2d1751 /G2d482 95 TEG5 3188 /G2d482

10 V EEL /G2d6493 /G2d482 53 U/D /G2d1666 /G2d482 96 TEG6 3273 /G2d482

11 V EEL /G2d6408 /G2d482 54 U/D /G2d1581 /G2d482 97 TEG7 3358 /G2d482

12 V EEL /G2d6323 /G2d482 55 DUG /G2d1361 /G2d482 98 TEG8 3443 /G2d482

13 V DDL /G2d5948 /G2d482 56 DUG /G2d1276 /G2d482 99 TEG9 3528 /G2d482

14 V DDL /G2d5863 /G2d482 57 DUG /G2d1191 /G2d482 100 TEG10 3613 /G2d482

15 V DDL /G2d5778 /G2d482 58 DUG /G2d1106 /G2d482 101 TEG11 3698 /G2d482

16 V DDL /G2d5693 /G2d482 59 CPV /G2d886 /G2d482 102 TEG12 3783 /G2d482

17 V DDL /G2d5608 /G2d482 60 CPV /G2d801 /G2d482 103 TEG13 3868 /G2d482

18 V DDL /G2d5523 /G2d482 61 CPV /G2d716 /G2d482 104 TEG14 3953 /G2d482

19 V DDL /G2d5438 /G2d482 62 CPV /G2d631 /G2d482 105 TEG15 4038 /G2d482

20 V DDL /G2d5353 /G2d482 63 DI /G2d436 /G2d482 106 TEG16 4123 /G2d482

21 V SSL /G2d5108 /G2d482 64 DI /G2d351 /G2d482 107 V SSR 4343 /G2d482

22 V SSL /G2d5023 /G2d482 65 DI /G2d266 /G2d482 108 V SSR 4428 /G2d482

23 V SSL /G2d4938 /G2d482 66 DI /G2d181 /G2d482 109 V SSR 4513 /G2d482

24 V SSL /G2d4853 /G2d482 67 DU 39 /G2d482 110 V SSR 4598 /G2d482

25 V SSL /G2d4768 /G2d482 68 DU 124 /G2d482 111 V SSR 4683 /G2d482

26 V SSL /G2d4683 /G2d482 69 DU 209 /G2d482 112 V SSR 4768 /G2d482

27 V SSL /G2d4598 /G2d482 70 DU 294 /G2d482 113 V SSR 4853 /G2d482

28 V SSL /G2d4513 /G2d482 71 /OE2 514 /G2d482 114 V SSR 4938 /G2d482

29 V SSL /G2d4428 /G2d482 72 /OE2 599 /G2d482 115 V SSR 5023 /G2d482

30 V SSL /G2d4343 /G2d482 73 /OE2 684 /G2d482 116 V SSR 5108 /G2d482

31 DU /G2d4098 /G2d482 74 /OE2 769 /G2d482 117 V DDR 5353 /G2d482

32 DU /G2d4013 /G2d482 75 /OE1 964 /G2d482 118 V DDR 5438 /G2d482

33 DU /G2d3928 /G2d482 76 /OE1 1049 /G2d482 119 V DDR 5523 /G2d482

34 DU /G2d3843 /G2d482 77 /OE1 1134 /G2d482 120 V DDR 5608 /G2d482

35 DU /G2d3758 /G2d482 78 /OE1 1219 /G2d482 121 V DDR 5693 /G2d482

36 DU /G2d3673 /G2d482 79 DUV 1439 /G2d482 122 V DDR 5778 /G2d482

37 DU /G2d3588 /G2d482 80 DUV 1524 /G2d482 123 V DDR 5863 /G2d482

38 DU /G2d3503 /G2d482 81 DUV 1609 /G2d482 124 V DDR 5948 /G2d482

39 DUG /G2d3261 /G2d482 82 DUV 1694 /G2d482 125 V EER 6323 /G2d482

40 DUG /G2d3176 /G2d482 83 TEST17 1914 /G2d482 126 V EER 6408 /G2d482

41 DUG /G2d3091 /G2d482 84 TEST17 1999 /G2d482 127 V EER 6493 /G2d482

42 DUG /G2d3006 /G2d482 85 TEST17 2084 /G2d482 128 V EER 6578 /G2d482

43 OCM /G2d2786 /G2d482

86 TEST17 2169 /G2d482 129 V EER 6663 /G2d482

PAD Coordinates (2) [Unit: /G6dm] No. Name X POINT Y POINT No. Name X POINT Y POINT No. Name X POINT Y POINT

130 V EER 6748 /G2d482 173 G26 5670 411 216 G69 3090 411

131 V EER 6833 /G2d482 174 G27 5610 411 217 G70 3030 411

132 V EER 6918 /G2d482 175 G28 5550 411 218 G71 2970 411

133 V EER 7003 /G2d482 176 G29 5490 411 219 G72 2910 411

134 V EER 7088 /G2d482 177 G30 5430 411 220 G73 2850 411

135 V EER 7173 /G2d482 178 G31 5370 411 221 G74 2790 411

136 V EER 7258 /G2d482 179 G32 5310 411 222 G75 2730 411

137 DU 7587 /G2d305 180 G33 5250 411 223 G76 2670 411

138 DU 7587 /G2d205 181 G34 5190 411 224 G77 2610 411

139 DU 7587 /G2d105 182 G35 5130 411 225 G78 2550 411

140 DU 7587 /G2d5 183 G36 5070 411 226 G79 2490 411

141 DU 7587 95 184 G37 5010 411 227 G80 2430 411

142 DU 7587 195 185 G38 4950 411 228 G81 2370 411

143 DU 7587 295 186 G39 4890 411 229 G82 2310 411

144 V GGR 7463 411 187 G40 4830 411 230 G83 2250 411

145 V GGR 7403 411 188 G41 4770 411 231 G84 2190 411

146 V GGR 7343 411 189 G42 4710 411 232 G85 2130 411

147 V GGR 7283 411 190 G43 4650 411 233 G86 2070 411

148 G1 7170 411 191 G44 4590 411 234 G87 2010 411

149 G2 7110 411 192 G45 4530 411 235 G88 1950 411

150 G3 7050 411 193 G46 4470 411 236 G89 1890 411

151 G4 6990 411 194 G47 4410 411 237 G90 1830 411

152 G5 6930 411 195 G48 4350 411 238 G91 1770 411

153 G6 6870 411 196 G49 4290 411 239 G92 1710 411

154 G7 6810 411 197 G50 4230 411 240 G93 1650 411

155 G8 6750 411 198 G51 4170 411 241 G94 1590 411

156 G9 6690 411 199 G52 4110 411 242 G95 1530 411

157 G10 6630 411 200 G53 4050 411 243 G96 1470 411

158 G11 6570 411 201 G54 3990 411 244 G97 1410 411

159 G12 6510 411 202 G55 3930 411 245 G98 1350 411

160 G13 6450 411 203 G56 3870 411 246 G99 1290 411

161 G14 6390 411 204 G57 3810 411 247 G100 1230 411

162 G15 6330 411 205 G58 3750 411 248 G101 1170 411

163 G16 6270 411 206 G59 3690 411 249 G102 1110 411

164 G17 6210 411 207 G60 3630 411 250 G103 1050 411

165 G18 6150 411 208 G61 3570 411 251 G104 990 411

166 G19 6090 411 209 G62 3510 411 252 G105 930 411

167 G20 6030 411 210 G63 3450 411 253 G106 870 411

168 G21 5970 411 211 G64 3390 411 254 G107 810 411

169 G22 5910 411 212 G65 3330 411 255 G108 750 411

170 G23 5850 411 213 G66 3270 411 256 G109 690 411

171 G24 5790 411 214 G67 3210 411 257 G110 630 411

172 G25 5730 411

215 G68 3150 411 258 G111 570 411

PAD Coordinates (3) [Unit: /G6dm] No. Name X POINT Y POINT No. Name X POINT Y POINT No. Name X POINT Y POINT

259 G112 510 411 302 G155 /G2d2070 411 345 G198 /G2d4650 411

260 G113 450 411 303 G156 /G2d2130 411 346 G199 /G2d4710 411

261 G114 390 411 304 G157 /G2d2190 411 347 G200 /G2d4770 411

262 G115 330 411 305 G158 /G2d2250 411 348 G201 /G2d4830 411

263 G116 270 411 306 G159 /G2d2310 411 349 G202 /G2d4890 411

264 G117 210 411 307 G160 /G2d2370 411 350 G203 /G2d4950 411

265 G118 150 411 308 G161 /G2d2430 411 351 G204 /G2d5010 411

266 G119 90 411 309 G162 /G2d2490 411 352 G205 /G2d5070 411

267 G120 30 411 310 G163 /G2d2550 411 353 G206 /G2d5130 411

268 G121 /G2d30 411 311 G164 /G2d2610 411 354 G207 /G2d5190 411

269 G122 /G2d90 411 312 G165 /G2d2670 411 355 G208 /G2d5250 411

270 G123 /G2d150 411 313 G166 /G2d2730 411 356 G209 /G2d5310 411

271 G124 /G2d210 411 314 G167 /G2d2790 411 357 G210 /G2d5370 411

272 G125 /G2d270 411 315 G168 /G2d2850 411 358 G211 /G2d5430 411

273 G126 /G2d330 411 316 G169 /G2d2910 411 359 G212 /G2d5490 411

274 G127 /G2d390 411 317 G170 /G2d2970 411 360 G213 /G2d5550 411

275 G128 /G2d450 411 318 G171 /G2d3030 411 361 G214 /G2d5610 411

276 G129 /G2d510 411 319 G172 /G2d3090 411 362 G215 /G2d5670 411

277 G130 /G2d570 411 320 G173 /G2d3150 411 363 G216 /G2d5730 411

278 G131 /G2d630 411 321 G174 /G2d3210 411 364 G217 /G2d5790 411

279 G132 /G2d690 411 322 G175 /G2d3270 411 365 G218 /G2d5850 411

280 G133 /G2d750 411 323 G176 /G2d3330 411 366 G219 /G2d5910 411

281 G134 /G2d810 411 324 G177 /G2d3390 411 367 G220 /G2d5970 411

282 G135 /G2d870 411 325 G178 /G2d3450 411 368 G221 /G2d6030 411

283 G136 /G2d930 411 326 G179 /G2d3510 411 369 G222 /G2d6090 411

284 G137 /G2d990 411 327 G180 /G2d3570 411 370 G223 /G2d6150 411

285 G138 /G2d1050 411 328 G181 /G2d3630 411 371 G224 /G2d6210 411

286 G139 /G2d1110 411 329 G182 /G2d3690 411 372 G225 /G2d6270 411

287 G140 /G2d1170 411 330 G183 /G2d3750 411 373 G226 /G2d6330 411

288 G141 /G2d1230 411 331 G184 /G2d3810 411 374 G227 /G2d6390 411

289 G142 /G2d1290 411 332 G185 /G2d3870 411 375 G228 /G2d6450 411

290 G143 /G2d1350 411 333 G186 /G2d3930 411 376 G229 /G2d6510 411

291 G144 /G2d1410 411 334 G187 /G2d3990 411 377 G230 /G2d6570 411

292 G145 /G2d1470 411 335 G188 /G2d4050 411 378 G231 /G2d6630 411

293 G146 /G2d1530 411 336 G189 /G2d4110 411 379 G232 /G2d6690 411

294 G147 /G2d1590 411 337 G190 /G2d4170 411 380 G233 /G2d6750 411

295 G148 /G2d1650 411 338 G191 /G2d4230 411 381 G234 /G2d6810 411

296 G149 /G2d1710 411 339 G192 /G2d4290 411 382 G235 /G2d6870 411

297 G150 /G2d1770 411 340 G193 /G2d4350 411 383 G236 /G2d6930 411

298 G151 /G2d1830 411 341 G194 /G2d4410 411 384 G237 /G2d6990 411

299 G152 /G2d1890 411 342 G195 /G2d4470 411 385 G238 /G2d7050 411

300 G153 /G2d1950 411 343 G196 /G2d4530 411 386 G239 /G2d7110 411

301 G154 /G2d2010 411

344 G197 /G2d4590 411 387 G240 /G2d7170 411

PAD Coordinates (4) [Unit: /G6dm] No. Name X POINT Y POINT

388 V GGL /G2d7283 411

389 V GGL /G2d7343 411

390 V GGL /G2d7403 411

391 V GGL /G2d7463 411

392 DU /G2d7587 295

393 DU /G2d7587 195

394 DU /G2d7587 95

395 DU /G2d7587 /G2d5

396 DU /G2d7587 /G2d105

397 DU /G2d7587 /G2d205

398 DU /G2d7587 /G2d305

/Gbe/G20Alignment mark_L /G2d7548/G20/G2d433/G20 /Gbe/G20Alignment mark_R 7548/G20/G2d433/G20

Data transfer direction switching pin Specifies the shift direction of the shift registers. /Gb7/G20U/D /G3d H: G1 /Gae G2 /Gae G3 /Gae G4 /Gae G5 /Gae … /Gae G240 /Gb7/G20U/D /G3d L: G240 /Gae G239 /Gae G238 /Gae G237 /Gae … /Gae G1 Use the pin at DC level. For High, VDD; for Low, VSS. CPV I Vertical shift clock Shift clock for the shift registers. Data are shifted in sync with the rising edge of CPV. DI I Vertical shift data input pin The data is input in the first stage of the shift register and latched in the shift register at the first rising edge of the CPV. OCM I Output switching This pin switches numbers of LCD panel drive pins. OCM /G3d H: 220 Output mode (G221 to G240 pin output indefinite voltage.) OCM /G3d L: 240 Output mode /OE1 I Output mode switching pin (1) Mode Output Mode H Normal mode L All output off mode (ASYNC) /OE2 I Output mode switching pin (2) Mode Output Mode H Normal mode L All output off mode (sync with CPV) G1 to G240 O LCD panel drive pins. VDDL/VDDR /Gbe/G20Power supply pin for internal logic VSSL/VSSR /Gbe Power supply pin for internal logic VGGL/VGGR /Gbe LCD panel drive pins VEEL/VEER /Gbe LCD panel drive pins TEST17 I Test pin (1) The pull down resistor is connected to this pin, and must be left open. TEG1 to 16 I Test pin (2) This is a test pin, and must be left open. DUG DUV DU /Gbe Dummy pin These pins are dummies, and each pin has an electric function such as, V DD, VSS or floating. The details are listed below. Pin Name Remarks DUG DUG … A dummy pin for V SS. DUV DUV … A dummy pin for V DD. DU DU … A dummy pin for floating. Note 2: The DUG pin and the DUV pin are used to fix the level by the adjacent input pin. Do not use them as the reference power supply.

Device Function and Operation /Gb7/G20Setting the Data Transferring Direction Setting U/D pin enables JBT6K48-AS shift the shift register in sync with the falling edge of the vertical shift clock input from the CPV pin. When the U/D pin data is fixed before the DI data is input, the function becomes valid. /Gb7/G20Inputting Data The data is latched at the first falling edge of the CPV . The signal is output from the first falling edge of the CPV recognized the data. /Gb7/G20Switching Numbers of the Output Pin The valid output pin can be switched either 220 pins or 240 pins using the COM pin. The details about the valid output pins are listed below. OCM Valid output pin Remarks

0 G1 to G240

1 G1 to G220 G221 to G240 output indefinite voltage level

OCM U/D Shifting Direction 0 0 G240 /Gae G239 /Gae G238 /Gae …… /Gae G3 /Gae G2 /Gae G1 0 1 G1 /Gae G2 /Gae G3 /Gae …… /Gae G238 /Gae G239 /Gae G240 1 0 G220 /Gae G219 /Gae G218 /Gae …… /Gae G3 /Gae G2 /Gae G1 1 1 G1 /Gae G2 /Gae G3 /Gae …… /Gae G218 /Gae G219 /Gae G220

/Gb7/G20Output mode switching function JBT6K48-AS is capable to control the output signal using /OE1 and /OE2 pins. The /OE2 signal proceeds the /OE1 signal at output-off mode. /OE2 /OE1 Functions 1 Normal mode (Fig. 1) 0 Output signals turn off unsynchronizing with CPV (Fig. 3) 1 Output signals turn off synchronizing with CPV (Fig. 2) 0 /OE2 has priority no relation to /OE1 and output signals turn off a) Normal operation mode CPV DI G1 (G240) G3 (G238) G4 (G237) G2 (G239) G239 (G2) G240 (G1) 1 2 3 4 5 236 237 238 239 240 G237 (G4) G238 (G3) ( ) indicates when U/D is Low. Figure 1

b) Normal mode /G2b Sync off mode (/OE2) CPV DI G1 (G240) /OE2 G5 (G236) G3 (G238) G4 (G237) G7 (G234) G6 (G235) G2 (G239) G8 (G233) G239 (G2) G240 (G1) 1 2 3 4 5 G10 (G231) G9 (G232) G11 (G230) Figure 2

c) Normal mode /G2b ASYNC off mode (/OE1) CPV DI G1 (G240) /OE1 G5 (G236) G3 (G238) G4 (G237) G7 (G234) G6 (G235) G2 (G239) G8 (G233) G239 (G2) G240 (G1) 1 2 3 4 5 Figure 3

d) Synchronizing off mode /G2b un-synchronizing off mode CPV DI G1 (G240) /OE1 G5 (G236) G3 (G238) G4 (G237) G7 (G234) G6 (G235) G2 (G239) G8 (G233) 1 2 3 4 5 Figure 4 /OE2 G9 (G232)

/Gb7/G20Recommended Power-on and Power-off Sequence If the logic power supply is applied under the floating condition, the device might be destructed by the large amounts of current because the LCD panel drive voltage is high. For this reason, apply the logic power supply first, then turn the LCD panel drive power supply on, or turn the both power supply on at the same timing. The internal logic condition is instable immediately after the logic power-on. Therefore, initialize the internal logic by transferring the clock for the continuous connecting and setting period using the CPV and DI input. Turn the LCD panel drive power off first, then turn the logic power off, or turn the both power off at the same timing. /Gb7/G20Relations between power supplies Maximum Ratings (Unless Otherwise Noted, VSS /G3d/G3d/G3d/G3d 0 V, Ta /G3d/G3d/G3d/G3d 25°C) Characteristics Symbol Rating Unit Supply voltage (1) V DD /G2d0.3 to 6.5 V Supply voltage (2) V EE /G2d20.0 to 0.3 V Supply voltage (3) V GG /G2d VEE /G2d0.3 to 45.0/G20 V Input voltage V IN /G2d0.3 to VDD/G20/G2b 0.3 V Operating temperature T opr /G2d20 to 75 °C Storage temperature T stg /G2d55 to 125 °C VDD VGG t VEE/VOFF VEE Figure 1 VDD VEE VGG VSS LCD drive output Logic input Internal logic Level shifter

Electrical Characteristics

DC Characteristics (1) Unless Otherwise Noted, VGG /G2d/G2d/G2d/G2d VEE /G3d/G3d/G3d/G3d 16.0 to 33.0 V, VDD /G3d/G3d/G3d/G3d 2.5 to 3.6 V, Ta /G3d/G3d/G3d/G3d /G2d/G2d/G2d/G2d20 to 75°C Characteristics Symbol Test Circuit Test Condition Min Typ. Max Unit Relevant Pin Supply voltage 1) V DD /Gbe /Gbe 2.5 /Gbe 3.6 V V DDL/R Supply voltage (2) V EE /Gbe /Gbe /G2d16.5 /G2d11.0 /G2d5 V V EEL/R Supply voltage (3) V GG /Gbe /Gbe 8 12.5 16.5 V V GGL/R Supply voltage (4) /GefVGG /G2d VEE/Gef /Gbe/G20 /Gbe 16.0 /Gbe/G2033.0 V VGGL/R, VEEL/R Low level V IL V SS /Gbe 0.2 VDD Input voltage High level V IH /Gbe /Gbe 0.8 VDD /Gbe V DD V DI, CPV, U/D, /OE1, /OE2, OCM Low level R OL V OUT /G3d VOFF /G2b 0.5 V /Gbe /Gbe 7.5 Output resistance High level R OH /Gbe VOUT /G3d VGG /G2d 0.5 V /Gbe /Gbe 7.5 k/G57 G1 to G240 Input leakage current I IN /Gbe /Gbe /G2d1 /Gbe 1 /G6dA DI, CPV, U/D, /OE1, /OE2, OCM Operating frequency f CPV1 /Gbe /Gbe /Gbe 20 50 kHz CPV Output load capacitance C L1 /Gbe (Note 3) /Gbe 36 100 pF G1~G240 Note 3: Load capacitance per an output pin. DC Characteristics (2) Unless Otherwise Noted, VGG /G2d/G2d/G2d/G2d VEE /G3d/G3d/G3d/G3d 16.0 to 33.0 V, VDD /G3d/G3d/G3d/G3d 2.5 to 3.6 V, Ta /G3d/G3d/G3d/G3d /G2d/G2d/G2d/G2d20 to 75°C Typical value is VDD /G3d/G3d/G3d/G3d 3.0 V, VGG /G2d/G2d/G2d/G2d VEE /G3d/G3d/G3d/G3d 30.0 V, CPV /G3d/G3d/G3d/G3d 20 kHz, Ta /G3d/G3d/G3d/G3d 25°C Characteristics Symbol Test Circuit Test Condition Min Typ. Max Unit Relevant Pin Current dissipation (1) I GG /Gbe (Note 4, 5) /Gbe 3.2 30.0 V GGL/R Current dissipation (2) I EE /Gbe (Note 4, 5) /Gbe 3.3 /G2d30.0 V EEL/R Current dissipation (3) I DD /Gbe (Note 4) /Gbe 1.8 12.5 V DDL/R Current dissipation (4) I SS /Gbe (Note 4) /Gbe 1.7 /G2d13.0 V SSL/R Current dissipation (5) STB /Gbe (Note 6) /G2d1 /Gbe 1 /G6dA VGGL/R, VEEL/R, VDDL/R, VSSL/R Note 4: CPV /G3d 50 kHz Note 5: f Fram /G3d 70 Hz Note 6: CPV /G3d “L”

AC Characteristics Unless Otherwise Noted, VGG /G2d/G2d/G2d/G2d VEE /G3d/G3d/G3d/G3d 30.0 V, VDD /G3d/G3d/G3d/G3d 2.5 to 3.6 V, Ta /G3d/G3d/G3d/G3d /G2d/G2d/G2d/G2d20 to 75°C Characteristics Symbol Test Circuit Test Condition Min Typ. Max Unit CPV cycle time t cycCPV /Gbe/G20 /Gbe 10 /G6ds CPV pulse width Low level t CPVL /Gbe/G20 /Gbe 500 ns CPV pulse width High level t CPVH /Gbe/G20 /Gbe 5 /G6ds CPV rising/falling time trCPV /tfCPV /Gbe/G20 /Gbe 100 ns /OE enable time t wOE /Gbe/G20 /Gbe 1 /G6ds tsDI /Gbe/G20 /Gbe 100 Data setup time tsOE /Gbe/G20 /Gbe 100 ns thDI /Gbe/G20 /Gbe 300 Data hold time thOE /Gbe/G20 /Gbe 300 ns Output delay time (1) t pdG /Gbe/G20CL /G3d 100 pF 2 /G6ds Output delay time (2) t pdOE /Gbe/G20CL /G3d 100 pF 2 /G6ds Output rising/falling time trOG /tfOG /Gbe/G20CL /G3d 100 pF 1.5 /G6ds

/OE1 VIL VIL tsOE t hOE CPV tcycCPV tCPVL tCPVH DI VIH V IH VIL VIL VIH VIH VIL trCPV tfCPV VIL VIH tsDI thDI /OE1 G1 to G240 50% tpdOE 50% 50%50% tpdOE twOE VIL CPV G1 to G240 10% 50% 90% 10% 50% 90% tpdG tpdG trOG VIL tfOG

/Gb7/G20TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of such TOSHIBA products could cause loss of human life, bodily injury or damage to property. In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as set forth in the most recent TOSHIBA products specifications. Also, please keep in mind the precautions and conditions set forth in the “Handling Guide for Semiconductor Devices,” or “TOSHIBA Semiconductor Reliability Handbook” etc.. /Gb7/G20The TOSHIBA products listed in this document are intended for usage in general electronics applications (computer, personal equipment, office equipment, measuring equipment, industrial robotics, domestic appliances, etc.). These TOSHIBA products are neither intended nor warranted for usage in equipment that requires extraordinarily high quality and/or reliability or a malfunction or failure of which may cause loss of human life or bodily injury (“Unintended Usage”). Unintended Usage include atomic energy control instruments, airplane or spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments, medical instruments, all types of safety devices, etc.. Unintended Usage of TOSHIBA products listed in this document shall be made at the customer’s own risk. /Gb7/G20Light striking a semiconductor device generates electromotive force due to photoelectric effects. In some cases this can cause the device to malfunction. This is especially true for devices in which the surface (back), or side of the chip is exposed. When designing circuits, make sure that devices are protected against incident light from external sources. Exposure to light both during regular operation and during inspection must be taken into account. /Gb7/G20The products described in this document are subject to the foreign exchange and foreign trade laws. /Gb7/G20The information contained herein is presented only as a guide for the applications of our products. No responsibility is assumed by TOSHIBA CORPORATION for any infringements of intellectual property or other rights of the third parties which may result from its use. No license is granted by implication or otherwise under any intellectual property or other rights of TOSHIBA CORPORATION or others. /Gb7/G20The information contained herein is subject to change without notice. 000707EBMRESTRICTIONS ON PRODUCT USE