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  january 2010 doc id 16799 rev 1 1/10 AN3110 application note using the stvm100 to automatically adjust vcom voltage in e-paper introduction the widespread use of multimedia electronic de vices, coupled with environmental concerns over the manufacturing and use of traditional paper products, provide the opportunity for the utilization of electron ic paper (e-paper). electronic paper is the best replacement for conventional paper. a high-quality image can be displayed for weeks without power. energy is consumed only during the short refresh time. unlike its counterpart, liquid crystal display (lcd) devices, e-paper does not require a backlight, which not only saves energy, but also makes reading more comfortable. achieving high-quality images on e-paper requires the correct setting of the vcom voltage on the pc board. stmicroelectronics offers the stvm100 vcom calibrator which is ideal for e-paper applications and allows the vcom voltage to be set automatically. in this application note, the e-paper principle is briefly described so that the user can understand the necessity of an accurate vcom voltage setting and how the stvm100 can be used for this purpose. www.st.com
general principle of e-paper AN3110 2/10 doc id 16799 rev 1 1 general principle of e-paper using electrophoretic display (epd) technology , pre-charged particles within the capsules can be either driven to the top plate (common electrode) of the e-paper which is white due to the reflection of the light, or driven to the bottom plate (column electrodes) of the paper which is dark. the partic les are in a bi-stability state so that the posit ion can be maintained even though there is no power applied to the e-paper. similar to liquid crystal display (lcd) devices, some of the epd devices are also formatted by pixels with the active matrix controll ed using tft (thin-film transistor) technology. in figure 1 , the gate driver sends a line selection pulse to the top line and turns on the first line tft. the data (analog voltage) is transferred from the source driver to the pixels in the first line. after the first line data is updated, the gate driver selects the second line and then the third, and so on. once the last line has been scanned, the entire picture on the screen has been updated (whole e-paper refresh). then the gate driver begins again from the first line and starts the next refresh if required. the line selection pulse pattern is configurable in the gate driver. figure 1. e-paper display layout
AN3110 general principle of e-paper doc id 16799 rev 1 3/10 figure 2 shows the detailed pixel schematic. the c ep is the equivalent capacitance of the e- paper. the position of the pre-charged particle s in the capsules between the two electrodes depends on the absolute voltage applied on the electrodes. the common electrodes of all the pixels are connected together and a constant vcommon voltage (vcom) is required to drive this electrode. the vcom voltage should be set correctly panel-by-panel for the best performance. residual pixels (?ghosting? effect) will appear after content refresh if the vcom voltage is not set correctly. after the line is selected by the gate driver, the corresponding column electrode is connected to the source driver by the tft. when the source driver supplies positive voltage to the column electrodes, the positively-charged particles are repelled by the positive electric field and moved to the top plate of the capsule. the white particles are reflective and reflect the ambient light to the viewer so that this pixel is viewed white. otherwise, if negative voltage is supplied to the column el ectrode, the positively-charged particles are attracted to the negative electric field and moved towards the bottom side of the capsule which then appears dark. figure 2. basic e-paper pixel schematic to source driver to gate driver common electrode column electrode tft am04747v1 c ep
e-paper vcom calibration using the stvm100 AN3110 4/10 doc id 16799 rev 1 2 e-paper vcom calibration using the stvm100 the vcom values vary according to the type of e-paper. each of the vcom values is well tested and provided by the e-paper manufacturer who normally labels the e-paper pc board with a barcode and a decimal value. the common distribution range is from ?0.5 v to ?2.5 v, but this range varies according to the technology. the digital vcom calibrator stvm100 (see datasheet at www.st.com) can completely replace the mechanical potentiometer as an automatic, more accurate, and robust solution. the stvm100 provides a digital i 2 c interface to control the sink current output (i out ). this output drives an external resistive voltage divider, which can then be applied to an external vcom buffer (ts512, precision dual operational amplifier). four external resistors r1, r6, r7 and r12 determine the highest and lowest value of the vcom. an increase in the output sink current lowers the voltage on the external divider so that the vcom can be adjusted by 128 steps within this range. once the desired vc om setting is achieved, it can be stored in the internal eeprom that is automatically recalled during each power-up. figure 3 shows the basic connection of the stvm100 in e-paper applications. figure 3. stvm100 and vcom buffer (ts512 from st) on e-paper pc board in this example, by choosing 1% accuracy resistors of r1, r6, r7 and r12 with a supply of 15 v, a range of ?0.5 v to ? 2.5 v can be obtained at point vcom? by writing 0 to 127 to the stvm100 through the i 2 c bus. the vcom? is buffered by the ts512 to vcom? buf which is applied to the vcom plate of the e-paper. the advantages of this circuit are: the stvm100 replaces the conventional variable resistor (vr). the stvm100 is robust, accurate, easily configurable, and provides automatic ad justment capability. the ts512 supports 18 v (here 15 v is used) which is necessary in e-paper applications. no additional supply is required, making the power management circuit design easier. vdd 5 avdd 2 vout 1 vset 8 gnd 4 wp 3 scl 7 sda 6 u1 stvm100 +3v3 80.6k r1 +15v 28k r6 100k r12 14k r7 gnd -15v sda scl vcom+ vcom- 1out 1 1in- 2 1in+ 3 vdd- 4 2in+ 5 2in- 6 2out 7 vdd+ 8 u2 ts512 vcom- buf vset 0 r2 0 r9 gnd tp 5 tp 8 tp 6 -15v +15v 0 r14 0 r15 +3v3 not m ounted am0474 8 v1
AN3110 stvm100 auto-adjustment demonstration kit doc id 16799 rev 1 5/10 3 stvm100 auto-adjustment demonstration kit since the target vcom value is given by a decimal value or by a barcode on the manufacturer?s e-paper pc board, st has also developed an auto-adjustment demonstration kit to facilitate calibration. only four single wires are needed to connect the e-paper pc board and the adjustment kit, and the user can input the target vcom value either manually or by a barcode reader in the gui as shown in figure 4 . after a single click on the "run" button, no more than 1 second later, the target vcom is correctly adjusted and appears in the "final vcom" text box. in this gui, single-step up/down buttons are also available for the user to do a simple comparison and confirmation of the vcom value. figure 4. vcom auto-adjustment kit gui am04749v1
auto-adjustment demonstration kit test results AN3110 6/10 doc id 16799 rev 1 4 auto-adjustment demonstration kit test results table 1 gives an example of the lab test results of the auto-adjustment kit. it can be seen that this board has a maximum 11 mv difference between the target vcom write and the actual measured on vcom? buf. the result s demonstrate its suitability for the e-book vcom application. please contact local st sales of fice for the availability of t he demonstration board hardware and software. table 1. test results of the auto-adjustment kit target voltage for vcom? buf (v) measured voltage on vcom? buf (v) delta between target and measured voltage on vcom? buf (v) ?0.65 ?0.657 ?0.007 ?0.75 ?0.757 ?0.007 ?0.85 ?0.852 ?0.002 ?0.95 ?0.95 0 ?1 ?0.998 0.002 ?1.1 ?1.096 0.004 ?1.2 ?1.193 0.007 ?1.3 ?1.29 0.01 ?1.4 ?1.404 ?0.004 ?1.5 ?1.5 0 ?1.51 ?1.5 0.01 ?1.52 ?1.517 0.003 ?1.53 ?1.533 ?0.003 ?1.54 ?1.533 0.007 ?1.55 ?1.549 0.001 ?1.56 ?1.565 ?0.005 ?1.57 ?1.565 0.005 ?1.58 ?1.581 ?0.001 ?1.59 ?1.581 0.009 ?1.6 ?1.597 0.003 ?1.7 ?1.694 0.006 ?1.8 ?1.792 0.008 ?1.9 ?1.889 0.011 ?2 ?2.003 ?0.003 ?2.1 ?2.1 0
AN3110 auto-adjustment demonstration kit test results doc id 16799 rev 1 7/10 note: vcom? buf is the point on the demonstration board which connects to the vcom panel on the e-book. please refer to figure 3 for a detailed description. ?2.2 ?2.198 0.002 ?2.3 ?2.295 0.005 ?2.4 ?2.393 0.007 ?2.5 ?2.491 0.009 ?2.6 ?2.589 0.011 ?2.7 ?2.691 0.009 maximum error (v) 0.011 table 1. test results of the auto-adjustment kit (continued) target voltage for vcom? buf (v) measured voltage on vcom? buf (v) delta between target and measured voltage on vcom? buf (v)
conclusion AN3110 8/10 doc id 16799 rev 1 5 conclusion the stvm100 vcom calibrator is ideally suited for the e-paper and e-book display applications. by taking advantage of its 7-bit, non-volatile common voltage setting capability, it allows easy and automated configuration of e-book display panels in a manufacturing environment. an stvm100 auto-adjustment kit is also available to demonstrate how vcom accuracy of better than 16 mv is easily achievable.
AN3110 revision history doc id 16799 rev 1 9/10 6 revision history table 2. document revision history date revision changes 07-jan-2010 1 initial release.
AN3110 10/10 doc id 16799 rev 1 please read carefully: information in this document is provided solely in connection with st products. stmicroelectronics nv and its subsidiaries (?st ?) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described he rein at any time, without notice. all st products are sold pursuant to st?s terms and conditions of sale. purchasers are solely responsible for the choice, selection and use of the st products and services described herein, and st as sumes no liability whatsoever relating to the choice, selection or use of the st products and services described herein. no license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted under this document. i f any part of this document refers to any third party products or services it shall not be deemed a license grant by st for the use of such third party products or services, or any intellectual property contained therein or considered as a warranty covering the use in any manner whatsoev er of such third party products or services or any intellectual property contained therein. unless otherwise set forth in st?s terms and conditions of sale st disclaims any express or implied warranty with respect to the use and/or sale of st products including without limitation implied warranties of merchantability, fitness for a parti cular purpose (and their equivalents under the laws of any jurisdiction), or infringement of any patent, copyright or other intellectual property right. unless expressly approved in writing by an authorized st representative, st products are not recommended, authorized or warranted for use in military , air craft, space, life saving, or life sustaining applications, nor in products or systems where failure or malfunction may result in personal injury, death, or severe property or environmental damage. st products which are not specified as "automotive grade" may only be used in automotive applications at user?s own risk. resale of st products with provisions different from the statements and/or technical features set forth in this document shall immediately void any warranty granted by st for the st product or service described herein and shall not create or extend in any manner whatsoev er, any liability of st. st and the st logo are trademarks or registered trademarks of st in various countries. information in this document supersedes and replaces all information previously supplied. the st logo is a registered trademark of stmicroelectronics. all other names are the property of their respective owners. ? 2010 stmicroelectronics - all rights reserved stmicroelectronics group of companies australia - belgium - brazil - canada - china - czech republic - finland - france - germany - hong kong - india - israel - ital y - japan - malaysia - malta - morocco - philippines - singapore - spain - sweden - switzerland - united kingdom - united states of america www.st.com


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