ADD8754-EVAL AD | Alldatasheet
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Evaluation Kit for LCD Power, VCOM, and Gate Modulation ADD8754-EVAL Rev. A Evaluation boards are only intended for device evaluation and not for production purposes. Evaluation boards as supplied “as is” and without warranties of any kind, express, implied, or statutory including, but not limited to, any implied warranty of merchantability or fitness for a particular purpose. No license is granted by implication or otherwise under any patents or other intellectual property by application or use of evaluation boards. Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. Analog Devices reserves the right to change devices or specifications at any time without notice. Trademarks and registered trademarks are the property of their respective owners. Evaluation boards are not authorized to be used in life support devices or systems. Tel: 781.329.4700 www.analog.com Fax: 781.461.3113 ©2006–2007 Analog Devices, Inc. All rights reserved. ADD8754
FEATURES
Fully assembled evaluation board with test pins and standoffs User-selectable jumpers for easy configuration changes Optimized layout to reduce ground bounce and EMI Multiple ground test-pins for easy grounding Test pins labeled and segmented for each functional block PACKAGE CONTENTS ADD8754 evaluation board
5 ADD8754 devices
Electronic version of ADD8754 data sheet Electronic version of ADD8754-EVAL data sheet Excel®-based spreadsheet for power dissipation calculations Excel-based spreadsheet for loop compensation components selection PRODUCT DESCRIPTION The ADD8754-EV AL simplifies the evaluation of the device. It includes a fully assembled evaluation board and detailed usage instructions. This data sheet describes the ADD8754 evaluation board only. For specific information regarding the ADD8754 device, LCD power, VCOM, and gate modulation, see the ADD8754 data sheet. EVALUATION BOARD DIGITAL PICTURE 06040-001 Figure 1.
Rev. A | Page 2 of 12 TABLE OF CONTENTS
REVISION HISTORY
3/07—Rev. 0 to Rev. A 6/06—Revision 0: Initial Version
Figure 5. Basic Board Circuit with Factory-Installed Component
Rev. A | Page 5 of 12 FUNCTIONAL BLOCK OVERVIEW This section provides an overview of the important features of each functional block to assist in evaluating the ADD8754 device. For detailed information about the ADD8754, see the ADD8754 data sheet. See Table 1 for a list of factory voltage settings. When reviewing this section, keep the following points in mind:
- The ADD8754 has an undervoltage lockout circuit that prevents operation below a VIN of 2.8 V .
- The high-side charge pump has a Zener diode regulated output (VCPH) of 28 V .
- The low-side charge pump has a Zener diode regulated output (VCPL) of −5 V .
- The evaluation board shuts down when the SHDN pin is connected to ground (JP1 is shorted). STEP-UP SWITCHING REGULATOR The step-up switching regulator, or boost converter, converts a dc voltage input of 5 V to an output of 10 V (adjustable up to 20 V). With its factory setting, the boost converter can output up to 750 mA of load current. Typically, a TFT-LCD monitor requires about 500 mA of current at 10 V . For an accurate evaluation of the step-up regulator, it is recom- mended that an equivalent panel load (20 Ω to 40 Ω) be applied from BOOST_OUT to GND. Resetting the Boost Output Voltage BOOST_OUT is determined by the divider resistors R1 and R2. To obtain a given output, set R2 = 10 kΩ and calculate ( ) 21.1 21.1_ −×= OUTBOOSTR2R1 Loop Compensation Resistor RC and Capacitor CC set the loop compensation for stability. If the input voltage, output voltage, inductor, or output capacitor values need to be changed, see the ADD8754 data sheet for a method tPo recalculate the compensation values for stable operation of the step-up switching regulator. Inductor Current Rating The factory-installed inductor is rated for 1.5 A. If the output current and/or output voltage make the inductor current higher than 1.5 A, then the inductor should be replaced with an appro- priate inductor to prevent saturation. Soft Start The soft start time is adjusted by Capacitor CSS. See the ADD8754 data sheet for instructions on recalculating a new soft start time. LDO The LDO generates a selectable logic voltage output for the digital logic needs of a TFT-LCD display. Typically, this voltage is applied to the timing controller (TCON) and gate drivers. For instructions on selecting the 3.3 V , 2.85 V , or 2.5 V voltage output, see Table 2. VCOM AMPLIFIER Buffer and Feedback Configurations The VCOM amplifier of the ADD8754 can be used as a unity- gain buffer or with panel feedback. To set the ADD8754 in a unity-gain buffer configuration, short Jumper JP4 . Please note that if using model ADD8754ACPZ, buffer mode is not recom- mended. To use panel feedback, open Jumper JP4 and use the VCOM_S pin, Resistor R16, Resistor R17, Capacitor C16, and Capacitor C17 to configure the feedback network. To add VCPL feedback, R14, R15, C14, and C15 can be changed. R13, R21, C13, and C22 are used to set the VCOM amplifier gain. R10 and C9 are used if a filtered output is desired from the VCOM amplifier. Adjusting VCOM The reference voltage for VCOM is adjustable by turning the on-board potentiometer (Potentiometer R12) using a small screwdriver. The VCOM voltage range depends on the boost output voltage and how it is divided by Resistor R24, Resistor R4, and Resistor R12. If your board includes an AD5259 256-position digital potentiometer, this device is configured for use (the analog potentiometer is disabled). See the AD5259 Digital Potentiometer (Optional) section for details about setting and disabling this device. For more information about the AD5259, see the AD5259 data sheet. GATE PULSE MODULATOR The gate pulse modulator takes a high voltage (VGH) and ramps this voltage down to a lower voltage (VDD_1). The VFLK signal determines when the voltage begins ramping. The CE capacitor and RE resistor determine the delay and the ramp rate. VDPM must be pulled high to enable GPM (Jumper JP5 should be shorted). A startup delay for VGH_M can be set with C8.
a voltage divider or Zener diode can be used to set this voltage. waveform. See the ADD8754 data sheet for details.
- Digital pulse signal
- 3.3 V amplitude (low = 0 V , high = 3.3 V)
- 16 μs period
- 30% duty cycle AD5259 DIGITAL POTENTIOMETER (OPTIONAL) If the ADD8754-EV AL includes an optional AD5259 digital potentiometer, the VCOM output voltage is set by using Resistor R3, Resistor R4 and the programmed output resis- tance of the 10 kΩ digital potentiometer, AD5259. Set the components as shown in Table 3.
Table 3. AD5259 Component Differences
- Connect the ADD8754-EV AL to the parallel port of a PC
using a parallel port cable.
- Insert the CD from the evaluation kit into the CD drive
and click setup.exe to install the software.
- Once installation is complete, open the AD5259 Evaluation
Board Program from the Start menu.
- Enter data in the Enter Data text box and then click
Write to RDAC to write the data.
- Click the Store RDAC Content to EEMEM button to store
the current RDAC setting to EEMEM. Manual on the ADD8754 Evaluation Kit CD.
Figure 6. Evaluation Board Layout Table 4. Evaluation Board Functional Block Descriptions 1 Positive Charge Pump. Provides access to the positive charge pump output (VCPH) and ground. 2 Gate Pulse Modulation. Accepts digital inputs from the timing controller (TCON) and provides a modulated VGH waveform (VGH_M). 3 VCOM Amplifiers. Provides access to the VCOM amplifier. The potentiometer in Block 9 adjusts the VCOM voltage. 4 AD5259 Serial Port. Accepts a serial port. Only boards with the optional AD5259 digital potentiometer include this port. 5 LDO. Provides access to the LDO output. 6 Digital Potentiometer. For digital control of the AD5259. Only boards equipped with the optional AD5259 use this pin. 7 Power Supply. Accepts an input voltage and provides the step-up output voltage (BOOST_OUT) and various ground pins. 8 Negative Charge Pump. Provides access to the negative charge pump output (VCPL) and ground. 9 VCOM Potentiometer. Includes one analog potentiometer configured in a rheostat mode for VCOM adjustment. the thermal vias to the thermal pad on the bottom side of the IC.
Figure 7. Evaluation Board Layout—Top Layer
Figure 8. Evaluation Board Layout—Bottom Layer Table 5. Evaluation Board Layer Descriptions Blue (Top) Top-of-board metal traces and ground plane. See Figure 7. orientation purposes only; text does not appear on bottom of board.
Figure 9. Evaluation Board
Rev. A | Page 11 of 12
ORDERING INFORMATION
Table 6. Qty. Reference Designator Description Value 2 C1, C2 Positive charge pump flying capacitors 0.1 μF
2 C3, C4 Positive charge pump charging capacitors 1 μF
1 C5 Negative charge pump flying capacitor 0.1 μF
1 C6 Negative charge pump charging capacitor 1 μF
1 C7 Negative charge pump filter capacitor 1 μF
1 C8 VPDM start-up delay capacitor Open
1 C9 VCOM load capacitor Open
1 C10 VDD_2 (VCOM supply) bypass capacitor 0.1 μF 1 C11 VDD_1 (GPM low) bypass capacitor 0.1 μF 1 C12 LDO output bypass capacitor 0.1 μF
1 C131 VCOM feedback capacitor Open
2 C14, C15 VCOM VGH feedback capacitors Open
1 C16 VCOM sense feedback capacitor Short
1 C17 VCOM sense feedback capacitor Open
1 C18 VCOM positive input bypass capacitor 4.7 μF
1 C22 VCOM feedback capacitor Open
1 C231 AD5259 VDD bypass capacitor Open
1 C24 VDD_1 filter capacitor Open
1 CC Step-up loop compensation capacitor 470 pF
1 CC1 Step-up loop compensation capacitor 30 pF
1 CE GPM negative ramp delay capacitor 1 nF
1 CIN VIN_1 and VIN_2 bypass capacitor 10 μF
1 CIN1 VIN_1 bypass capacitor 0.1 μF 1 CIN2 VIN_2 bypass capacitor 0.1 μF 1 CLDO LDO output capacitor 4.7 μF
2 COUT1, COUT2 Step-up output (charging) capacitors 10 μF
1 COUT3 Step-up output capacitor 0.1 μF
1 CSS Soft-start capacitor 10 nF
1 D1 Step-up converter diode 1N5818
2 D2/D3 Positive charge pump doubler diodes BAV99WT1
2 D4/D5 Positive charge pump tripler diodes BAV99WT1
2 D6/D7 Negative charge pump diodes BAV99WT1
1 FUSE Input supply fuse 1A
1 JP1 SHDN jumper Open
1 JP2 FREQ select jumper Short
1 JP3 LDO output select jumper Short 1 and Short 2
1 JP4 VCOM buffer configuration jumper Short
1 JP5 VDPM from step-up jumper Short
1 JP6 VCOM supply from step-up jumper Short
1 JP7 Positive charge pump to VGH Short
1 L1 Step-up converter inductor 10 μH
1 R1 Step-up feedback divider resistor (top) 71.5 kΩ
1 R2 Step-up feedback divider resistor (bottom) 10 kΩ
1 R31 AD5259 divider resistor (top) Open
1 R4 VCOM positive input divider resistor (bottom) 20 kΩ
1 R5 Positive charge pump current limiting resistor 1 kΩ
1 R6 Negative charge pump current limiting resistor 300 Ω
1 R7 VDPM step-up voltage divider resistor (top) 47 kΩ
1 R8 VDPM step-up voltage divider resistor (bottom) 8.2 kΩ
Rev. A | Page 12 of 12 Qty. Reference Designator Description Value
1 R9 Charge pump surge current limiting resistor 10 Ω
1 R10 VCOM series load resistor Open
1 R11 FREQ select pull-up resistor 100 kΩ
1 R121 Variable resistor for VCOM positive input 10 kΩ
1 R131 VCOM feedback resistor Open
2 R14, R15 VCOM VGH feedback resistors Open
1 R16 VCOM sense feedback resistor Short
1 R17 VCOM sense feedback resistor Open
1 R18 VGH output voltage divider resistor (bottom) Open
1 R211 AD5259 VCOM negative input resistor Open
2 R221, R231 AD5259 digital control pull-up resistors Open
1 R241 VCOM positive input divider resistor (top) 15 kΩ
1 R25 VDD_1 (GPM low) resistor divider (top) Short
1 RC Step-up loop compensation resistor 180 kΩ
1 RE GPM negative ramp rate (slope) resistor 33 kΩ
2 R_SCA1, R_SCL1 AD5259 digital control series resistors Open
1 RSD SHDN pull-up resistor 100 kΩ
1 RZ VDD_1 (GPM low) resistor divider (bottom) Open
1 U1 ADD8754 24-lead LFCSP ADD8754
1 U2 AD5259 8-lead SOIC AD5259
1 VZ1 Negative charge pump output Zener diode BZX84C5V1
1 VZ2 Positive charge pump output Zener diode BZX85C28
1 These component values must be changed when using the AD5259 digital potentiometer. ORDERING GUIDE Model Description ADD8754-EVAL Evaluation Kit ESD CAUTION ©2006–2007 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. EB06040-0-3/07(A)