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AD8147ACPZ-R7

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AD8147ACPZ-R7

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Part Number AD8147ACPZ-R7
Manufacturer Analog Devices Inc.
Description IC DRIVER TRIPLE DIFF 24-LFCSP
Datasheet AD8147ACPZ-R7 Datasheet
Package 24-WFQFN Exposed Pad, CSP
In Stock 2,304 piece(s)
Unit Price $ 4.0905 *
Lead Time Can Ship Immediately
Estimated Delivery Time Sep 21 - Sep 26 (Choose Expedited Shipping)
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Part Number # AD8147ACPZ-R7 (Linear - Amplifiers - Video Amps and Modules) is manufactured by Analog Devices Inc. and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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AD8147ACPZ-R7 Specifications

ManufacturerAnalog Devices Inc.
CategoryIntegrated Circuits (ICs) - Linear - Amplifiers - Video Amps and Modules
Datasheet AD8147ACPZ-R7Datasheet
Package24-WFQFN Exposed Pad, CSP
Series-
ApplicationsDifferential
Output TypeDifferential
Number of Circuits3
-3db Bandwidth780MHz
Slew Rate3000 V/µs
Current - Supply61.5mA
Current - Output / Channel87mA
Voltage - Supply, Single/Dual (±)4.5 V ~ 11 V, ��2.25 V ~ 5.5 V
Mounting TypeSurface Mount
Package / Case24-WFQFN Exposed Pad, CSP
Supplier Device Package24-LFCSP-WQ (4x4)

AD8147ACPZ-R7 Datasheet

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Triple Differential Driver for Wideband Video Data Sheet AD8146/AD8147/AD8148 Rev. B Document Feedback 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. Specifications subject to change without notice. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices. Trademarks and registered trademarks are the property of their respective owners. One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. Tel: 781.329.4700 ©2007–2014 Analog Devices, Inc. All rights reserved. Technical Support www.analog.com FEATURES Triple high speed fully differential driver 700 MHz, −3 dB, 2 V p-p bandwidth (AD8146/AD8148) 600 MHz, −3 dB, 2 V p-p bandwidth (AD8147) 200 MHz, 0.1 dB, 2 V p-p bandwidth 3000 V/μs slew rate Fixed gain (AD8146/AD8147: G = 2, AD8148: G = 4) Differential or single-ended input to differential output Can be used as differential-to-differential receiver Drives one or two 100 Ω UTP cables Adjustable output common-mode voltage (AD8146) Internal common-mode feedback network Output balance error −50 dB @ 50 MHz On-chip, sync-on common-mode encoding (AD8147/AD8148) Output pull-down feature for line isolation Low power: 57 mA @ 5 V for 3 drivers (AD8146) Wide supply voltage range: +5 V to ±5 V Available in a small 4 mm × 4 mm LFCSP APPLICATIONS QXGA or 1080p video transmission KVM networking Video over unshielded twisted pair (UTP) Differential signal multiplexing FUNCTIONAL BLOCK DIAGRAMS AD8146OPD 1 VS– 2 –IN A 3 +IN A 4 VS– 5 VOCMC VS+ –IN C +IN C VS– 18 17 16 15 14 –OUT A 6 –OUT C13 V S + –I N B +I N B V S – V O CM A 24 23 22 21 20 V O CM B 19 +O U T A V S + +O U T B –O U T B V S + 7 8 9 10 11 +O U T C 12 A B C 09 32 7- 00 1 Figure 1. AD8147/ AD8148 OPD 1 VS– 2 –IN R 3 +IN R 4 VS– 5 SYNC LEVEL VS+ (SYNC) –IN B +IN B VS– 18 17 16 15 14 –OUT R 6 –OUT B13 V S + –I N G +I N G V S – (S YN C ) V S YN C 24 23 22 21 20 H SY N C 19 +O U T R V S + +O U T G –O U T G V S + 7 8 9 10 11 +O U T B 12 A B C ×2 09 32 7- 00 2 Figure 2. GENERAL DESCRIPTION The AD8146/AD8147/AD8148 are high speed triple, differential or single-ended input to differential output drivers. The AD8146 and AD8147 have a fixed gain of 2, and the AD8148 has a fixed gain of 4. They are all specifically designed for the highest resolution component video signals but can be used for any type of analog signals or high speed data transmission over either Category 5 UTP cable or differential printed circuit board (PCB) transmission lines. These drivers can be used with the AD8145 triple differential- to-singled-ended receiver, and the AD8117 crosspoint switch to produce a video distribution system capable of supporting UXGA or 1080p signals. Manufactured on the Analog Devices, Inc. second generation XFCB bipolar process, the drivers have large signal bandwidths of 700 MHz and fast slew rates. They have an internal common- mode feedback feature that provides output amplitude and phase matching that is balanced to −60 dB at 50 MHz, suppressing even-order harmonics and minimizing radiated electromagnetic interference (EMI). The common-mode voltage of each AD8146 output can be set to any level, allowing transmission of signals over the common- mode voltages. The AD8147 and AD8148 encode the vertical and horizontal sync signals on the common-mode voltages of the outputs. All outputs can be independently set to low voltage states to be used with series diodes for line isolation, allowing easy differential multiplexing over the same twisted pair cable. The AD8146/AD8147/AD8148 are available in a 24-lead LFCSP and operate over a temperature range of −40°C to +85°C.

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AD8146/AD8147/AD8148 Data Sheet Rev. B | Page 2 of 24 TABLE OF CONTENTS Features .............................................................................................. 1  Applications ....................................................................................... 1  Functional Block Diagrams ............................................................. 1  General Description ......................................................................... 1  Revision History ............................................................................... 2  Specifications ..................................................................................... 3  Absolute Maximum Ratings ............................................................ 7  Thermal Resistance ...................................................................... 7  ESD Caution .................................................................................. 7  Pin Configurations and Function Descriptions ........................... 8  Typical Performance Characteristics ........................................... 10  Theory of Operation ...................................................................... 14  Definition of Terms .................................................................... 14  Analyzing an Application Circuit ............................................. 14  Closed-Loop Gain ...................................................................... 14  Calculating the Input Impedance ............................................. 15  Input Common-Mode Voltage Range in Single-Supply Applications ................................................................................ 15  Output Common-Mode Control ............................................. 15  Sync-On Common-Mode ......................................................... 15  Applications ..................................................................................... 16  Driving RGB Video Signals Over Category-5 UTP Cable .... 16  Video Sync-On Common-Mode .............................................. 16  Driving Two UTP Cables With One Driver ........................... 18  Using the AD8146 as a Receiver ............................................... 18  Output Pull-Down (OPD) ........................................................ 19  Layout and Power Supply Decoupling Considerations ......... 19  Driving a Capacitive Load ......................................................... 19  Adding Pre-Emphasis to the AD8148 ...................................... 20  Exposed Paddle (EP).................................................................. 21  Outline Dimensions ....................................................................... 22  Ordering Guide .......................................................................... 22  REVISION HISTORY 3/14—Rev. A to Rev. B Changed LFCSP_VQ to LFCSP_WQ (Throughout) ................... 7 Updated Outline Dimensions ....................................................... 22 Changes to Ordering Guide .......................................................... 22 8/10—Rev. 0 to Rev. A Changes to Table 1 ............................................................................ 3 Changes to Table 2 ............................................................................ 5 Changes to Pin Configurations and Function Descriptions Section ................................................................................................ 8 Changes to Adding Pre-Emphasis to the AD8148 Section ....... 20 Updated Outline Dimensions ....................................................... 22 5/07—Revision 0: Initial Version

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Data Sheet AD8146/AD8147/AD8148 Rev. B | Page 3 of 24 SPECIFICATIONS VS = ±5V, VOCM = 0 V (AD8146); SYNC LEVEL = 0 V (AD8147/AD8148); T = 25°C; RL, dm = 200 Ω, unless otherwise noted. TMIN to TMAX = −40°C to +85°C. Table 1. Parameter Conditions Min Typ Max Unit DIFFERENTIAL INPUT AC Dynamic Performance −3 dB Small Signal Bandwidth VO = 0.2 V p-p, AD8146/AD8148 900 MHz AD8147 780 MHz −3 dB Large Signal Bandwidth VO = 2 V p-p, AD8146/AD8148 700 MHz AD8147 600 MHz Bandwidth for 0.1 dB Flatness VO = 2 V p-p, AD8146/AD8147 200 MHz AD8148 235 MHz Slew Rate VO = 2 V p-p, 25% to 75% 3000 V/µs Isolation Between Amplifiers f = 10 MHz AD8146/AD8147 −86 dB AD8148 −80 dB DIFFERENTIAL INPUT DC Input Common-Mode Voltage Range −5 to +5 V Input Resistance Differential 1.0 kΩ Single-ended input AD8146/AD8147 750 Ω AD8148 833 Ω Input Capacitance Differential 2 pF DC CMRR ΔVOUT, dm/ΔVIN, cm, ΔVIN, cm = ±1 V AD8146/AD8147/AD8148 −53/−49/−55 dB DIFFERENTIAL OUTPUT Differential Signal Gain ΔVOUT, dm/ΔVIN, dm; ΔVIN, dm = ±1 V AD8146/AD8147 1.94 2.00 V/V ΔVOUT, dm/ΔVIN, dm; ΔVIN, dm = ±1 V AD8148 3.8 4.0 V/V Output Voltage Swing Each single-ended output AD8146/AD8147/AD8148 −3/−2.25/−3.42 +3.4/+3.4/+3.5 V Output Offset Voltage −19 +19 mV Output Offset Drift TMIN to TMAX ±8 µV/°C Output Balance Error ΔVOUT, cm/ΔVIN, dm, ΔVOUT, dm = 2 V p-p f = 50 MHz AD8146/AD8147 −52 dB AD8148 −49 dB DC AD8146/AD8148 −41 dB AD8147 −44 dB Output Voltage Noise (RTO) f = 1 MHz AD8146/AD8147 25 nV/√Hz AD8148 42 nV/√Hz Output Short-Circuit Current Short to GND, source/sink +87/−67 mA

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AD8146/AD8147/AD8148 Data Sheet Rev. B | Page 4 of 24 Parameter Conditions Min Typ Max Unit VOCM DYNAMIC PERFORMANCE (AD8146 ONLY) −3 dB Bandwidth ΔVOCM = 100 mV p-p 340 MHz Slew Rate VOCM = −1 V to +1 V, 25% to 75% 800 V/µs DC Gain ΔVOCM = ±1 V 0.98 1.00 V/V VOCM INPUT CHARACTERISTICS (AD8146 ONLY) Input Voltage Range ±3 V Input Resistance 12.5 kΩ Input Offset Voltage −36 +36 mV DC CMRR ΔVOUT, dm/ΔVOCM, ΔVOCM = ±1 V −48 dB SYNC DYNAMIC PERFORMANCE (AD8147/ AD8148 ONLY) Slew Rate VOUT, cm = −1 V to +1 V; 25% to 75% 1000 V/µs HSYNC AND VSYNC INPUTS (AD8147/AD8148 ONLY) Low-to-High Threshold 1.5 to1.7 V High-to-Low Threshold 1.5 to1.7 V SYNC LEVEL INPUT (AD8147/AD8148 ONLY) Setting to 0.5 V Pulse Levels 0.5 V Gain to Red Common-Mode Output ΔVO, cm/ΔVSYNC LEVEL, AD8147/AD8148 0.93/0.96 1.10/1.05 V/V Gain to Green Common-Mode Output ΔVO, cm/ΔVSYNC LEVEL, AD8147/AD8148 1.91/1.93 2.15/2.08 V/V Gain to Blue Common-Mode Output ΔVO, cm/ΔVSYNC LEVEL, AD8147/AD8148 −1.10/−1.05 −0.93/−0.96 V/V POWER SUPPLY Operating Range +4.5 ±5.5 V Quiescent Current, Positive Supply AD8146/AD8147/AD8148 58/61.5/62.5 mA Disabled AD8146 6 mA AD8147/AD8148 21.5 mA Quiescent Current, Negative Supply AD8146/AD8147/AD8148 −58/−60.5/−62 mA Disabled −37 mA PSRR ΔVOUT, dm/ΔVS; ΔVS = ±1 V AD8146/AD8147/AD8148 −66/−52/−55 dB OUTPUT PULL-DOWN OPD Input Low Voltage 1.1 V OPD Input High Voltage 2.1 V OPD Input Bias Current 520 µA OPD Assert Time 1 µs OPD Deassert Time 10 ns Output Voltage When OPD Asserted Each output, OPD input @ VS+ −3.8 V

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Data Sheet AD8146/AD8147/AD8148 Rev. B | Page 5 of 24 VS = +5 V or ±2.5 V; VOCM = midsupply (AD8146); SYNC LEVEL = 0 V (AD8147/AD8148); T = 25°C; RL, dm = 200 Ω, unless otherwise noted. TMIN to TMAX = −40°C to +85°C. Table 2. Parameter Conditions Min Typ Max Unit DIFFERENTIAL INPUT AC Dynamic Performance −3 dB Small Signal Bandwidth VO = 0.2 V p-p, AD8146 870 MHz AD8147/AD8148 680 MHz −3 dB Large Signal Bandwidth VO = 2 V p-p, AD8147 590 MHz AD8146/AD8148 620 MHz Bandwidth for 0.1 dB Flatness VO = 2 V p-p, AD8146/AD8147 165 MHz AD8148 200 MHz DIFFERENTIAL INPUT DC Input Common-Mode Voltage Range 0 to 5 V Input Resistance Differential 1.0 kΩ Single-ended input AD8146/AD8147 750 Ω AD8148 833 Ω Input Capacitance Differential 2 pF DC CMRR ΔVOUT, dm/ΔVIN, cm; ΔVIN, cm = ±1 V, AD8146/AD8147/AD8148 −49/−45/−49 dB DIFFERENTIAL OUTPUT Differential Signal Gain ΔVOUT, dm/ΔVIN, dm; ΔVIN, dm = ±1 V, AD8146/AD8147 1.94 2.00 V/V ΔVOUT, dm/ΔVIN, dm; ΔVIN, dm = ±1 V AD8148 3.80 4.00 V/V Output Voltage Swing Each single-ended output, VS = ±2.5 V −1.17 +1.24 V Output Offset Voltage −17 +17 mV Output Offset Drift TMIN to TMAX ±8 µV/°C Output Balance Error ΔVOUT, cm/ΔVIN, dm, ΔVOUT, dm = 2 V p-p, f = 50 MHz −53 dB AD8146/AD8147 −49 dB AD8148 DC AD8146/AD8148 −41 dB AD8147 −44 dB Output Voltage Noise (RTO) f = 1 MHz AD8146/AD8147 25 nV/√Hz AD8148 42 nV/√Hz Output Short-Circuit Current Short to GND, source/sink +63/−48 mA VOCM DYNAMIC PERFORMANCE (AD8146 ONLY) −3 dB Bandwidth ΔVOCM = 100 mV p-p 310 MHz Slew Rate VOCM = −1 V to +1 V, 25% to 75% 800 V/µs DC Gain ΔVOCM = ±1 V 0.98 1.00 V/V

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AD8146/AD8147/AD8148 Data Sheet Rev. B | Page 6 of 24 Parameter Conditions Min Typ Max Unit VOCM INPUT CHARACTERISTICS (AD8146 ONLY) Input Voltage Range ±1.2 V Input Resistance 12.5 kΩ Input Offset Voltage −36 +36 mV DC CMRR ΔVO, dm/ΔVOCM; ΔVOCM = ±1 V −42 dB SYNC DYNAMIC PERFORMANCE (AD8147/ AD8148 ONLY) Slew Rate VOUT, cm = −1 V to +1 V; 25% to 75% 800 V/µs HSYNC AND VSYNC INPUTS (AD8147/AD8148 ONLY) Low-to-High Threshold 1.3 to 1.5 V High-to-Low Threshold 1.3 to 1.5 V SYNC LEVEL INPUT (AD8147/AD8148 ONLY) Setting to 0.5 V Pulse Levels 0.5 V Gain to Red Common-Mode Output ΔVO, cm/ΔVSYNC LEVEL, AD8147/AD8148 0.88/0.92 1.07/1.04 V/V Gain to Green Common-Mode Output ΔVO, cm/ΔVSYNC LEVEL, AD8147/AD8148 1.83/1.85 2.08/2.00 V/V Gain to Blue Common-Mode Output ΔVO, cm/ΔVSYNC LEVEL, AD8147/AD8148 −1.07/−1.04 −0.88/−0.92 V/V POWER SUPPLY Operating Range +4.5 ±5.5 V Quiescent Current Positive Supply AD8146/AD8147/AD8148 50/55.5/ 54 mA Disable AD8146 4 mA AD8147/AD8148 12 mA Quiescent Current Negative Supply AD8146/AD8147/AD8148 −50/−55/−53 mA Disabled AD8146/AD8147/ AD8148 −14/−18.2/−15 mA PSRR ΔVOUT, dm/ΔVS; ΔVS = ±1 V, AD8146/AD8147/AD8148 −70/−52/-60 dB OUTPUT PULL-DOWN OPD Input Low Voltage 1.0 V OPD Input High Voltage 2.0 V OPD Input Bias Current 160 µA OPD Assert Time 600 ns OPD Deassert Time 10 ns Output Voltage When OPD Asserted Each output, OPD input @ VS+ −1.6 V

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Data Sheet AD8146/AD8147/AD8148 Rev. B | Page 7 of 24 ABSOLUTE MAXIMUM RATINGS Table 3. Parameter Rating Supply Voltage 11 V All VOCM ±VS Power Dissipation See Figure 3 Input Common-Mode Voltage ±VS Storage Temperature Range −65°C to +125°C Operating Temperature Range −40°C to +85°C Lead Temperature (Soldering, 10 sec) 300°C Junction Temperature 150°C Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. THERMAL RESISTANCE θJA is specified for the worst-case conditions, that is, θJA is specified for the device soldered in a circuit board in still air. Table 4. Thermal Resistance with the Underside Pad Connected to the Plane Package Type/PCB Type θJA Unit 24-Lead LFCSP_WQ/4-Layer 57 °C/W Maximum Power Dissipation The maximum safe power dissipation in the AD8146/ AD8147/AD8148 package is limited by the associated rise in junction temperature (TJ) on the die. At approximately 150°C, which is the glass transition temperature, the plastic changes its properties. Even temporarily exceeding this temperature limit can change the stresses that the package exerts on the die, permanently shifting the parametric performance of the AD8146/AD8147/AD8148. Exceeding a junction temperature of 175°C for an extended time can result in changes in the silicon devices, potentially causing failure. The power dissipated in the package (PD) is the sum of the quiescent power dissipation and the power dissipated in the package due to the load drive for all outputs. The quiescent power is the voltage between the supply pins (VS) times the quiescent current (IS). The load current consists of differential and common-mode currents flowing to the loads, as well as currents flowing through the internal differential and common- mode feedback loops. The internal resistor tap used in the common-mode feedback loop places a 4 kΩ differential load on the output. Differential feedback, network resistor values are given in the Theory of Operation section and Applications section. RMS output voltages should be considered when dealing with ac signals. Airflow reduces θJA. In addition, more metal directly in contact with the package leads from metal traces, through holes, ground, and power planes reduces the θJA. The exposed paddle on the underside of the package must be soldered to a pad on the PCB surface that is thermally connected to a ground plane to achieve the specified θJA. Figure 3 shows the maximum safe power dissipation in the package vs. the ambient temperature for the 24-lead LFCSP (57°C/W) package on a JEDEC standard 4-layer board with the underside paddle soldered to a pad that is thermally connected to a ground plane. θJA values are approximations. 3.5 0 –40 –20 0 20 40 60 80 AMBIENT TEMPERATURE (°C) M A XI M U M P O W ER D IS SI PA TI O N (W ) 3.0 2.5 2.0 1.5 1.0 0.5 09 32 7- 02 1 Figure 3. Maximum Power Dissipation vs. Temperature for a 4-Layer Board ESD CAUTION

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AD8146/AD8147/AD8148 Data Sheet Rev. B | Page 8 of 24 PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS PIN 1 INDICATOR1OPD 2VS– 3–IN A 4+IN A 5VS– 6–OUT A NOTES 1. THE EXPOSED PADDLE ON THE UNDERSIDE OF THE CHIP MUST BE CONNECTED TO A GROUND PLANE. 15 +IN C 16 –IN C 17 VS+ 18 VOCMC 14 VS– 13 –OUT C 7 +O U T A 8 V S + 9 +O U T B 11 V S + 12 +O U T C 10 –O U T B 21 V S – 22 +I N B 23 –I N B 24 V S + 20 V O C M A 19 V O C M B AD8146 TOP VIEW (Not to Scale) 09 32 7- 00 4 Figure 4. AD8146 Pin Configuration Table 5. AD8146 Pin Function Descriptions Pin No. Mnemonic Description 1 OPD Output Pull-Down. 2, 5, 14, 21 VS− Negative Power Supply Voltage. 3 −IN A Inverting Input, Amplifier A. 4 +IN A Noninverting Input, Amplifier A. 6 −OUT A Negative Output, Amplifier A. 7 +OUT A Positive Output, Amplifier A. 8, 11, 17, 24 VS+ Positive Power Supply Voltage. 9 +OUT B Positive Output, Amplifier B. 10 −OUT B Negative Output, Amplifier B. 12 +OUT C Positive Output, Amplifier C. 13 −OUT C Negative Output, Amplifier C. 15 +IN C Noninverting Input, Amplifier C. 16 −IN C Inverting Input, Amplifier C. 18 VOCMC The voltage applied to this pin controls output common-mode voltage, Amplifier C. 19 VOCMB The voltage applied to this pin controls output common-mode voltage, Amplifier B. 20 VOCMA The voltage applied to this pin controls output common-mode voltage, Amplifier A. 22 +IN B Noninverting Input, Amplifier B. 23 −IN B Inverting Input, Amplifier B. Exposed Paddle GND Signal Ground Reference.

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Data Sheet AD8146/AD8147/AD8148 Rev. B | Page 9 of 24 PIN 1 INDICATOR1OPD 2VS– 3–IN R 4+IN R 5VS– 6–OUT R 15 +IN B 16 –IN B 17 VS+ (SYNC) 18 SYNC LEVEL 14 VS– 13 –OUT B 7 +O U T R 8 V S + 9 +O U T G 11 V S + 12 +O U T B 10 –O U T G 21 V S – (S YN C ) 22 +I N G 23 –I N G 24 V S + 20 V S YN C 19 H SY N C AD8147/ AD8148 TOP VIEW (Not to Scale) 09 32 7- 00 5 NOTES 1. THE EXPOSED PADDLE ON THE UNDERSIDE OF THE CHIP MUST BE CONNECTED TO A GROUND PLANE. Figure 5. AD8147/AD8148 Pin Configuration Table 6. AD8147/AD8148 Pin Function Descriptions Pin No. Mnemonic Description 1 OPD Output Pull-Down. 2, 5, 14 VS− Negative Power Supply Voltage. 3 −IN R Inverting Input, Red Amplifier. 4 +IN R Noninverting Input, Red Amplifier. 6 −OUT R Negative Output, Red Amplifier. 7 +OUT R Positive Output, Red Amplifier. 8, 11, 24 VS+ Positive Power Supply Voltage. 9 +OUT G Positive Output, Green Amplifier. 10 −OUT G Negative Output, Green Amplifier. 12 +OUT B Positive Output, Blue Amplifier. 13 −OUT B Negative Output, Blue Amplifier. 15 +IN B Noninverting Input, Blue Amplifier. 16 −IN B Inverting Input, Blue Amplifier. 17 VS+ (SYNC) Positive Power Supply Voltage for Sync. 18 SYNC LEVEL The voltage applied to this pin controls the amplitude of the sync pulses that are applied to the common-mode voltages. 19 HSYNC Horizontal Sync Pulse Input. 20 VSYNC Vertical Sync Pulse Input. 21 VS− (SYNC) Negative Power Supply Voltage for Sync. 22 +IN G Noninverting Input, Green Amplifier. 23 −IN G Inverting Input, Green Amplifier. Exposed Paddle GND Signal Ground Reference.

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