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TPS65124RGTR-TPS65124RGTR G4-TPS65124RGTRG4-TPS65124RGTT-TPS65124RGTTG4 Fast Delivery,Good Price
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TPS65124RGTRTIN/a7937avaiSingle-Inductor, Triple-Output Supply for Small Form Factor TFT Display in QFN-16, Programmable Seq
TPS65124RGTR G4 |TPS65124RGTRG4TIN/a37979avaiSingle-Inductor, Triple-Output Supply for Small Form Factor TFT Display in QFN-16, Programmable Seq
TPS65124RGTRG4TIN/a9525avaiSingle-Inductor, Triple-Output Supply for Small Form Factor TFT Display in QFN-16, Programmable Seq
TPS65124RGTTTI N/a1386avaiSingle-Inductor, Triple-Output Supply for Small Form Factor TFT Display in QFN-16, Programmable Seq
TPS65124RGTTG4TIN/a1000avai3-CH Single Inductor Multiple Outputs (SIMO) Bias IC w/ Adjustable Sequencing 16-QFN -40 to 85


TPS65124RGTR G4 ,Single-Inductor, Triple-Output Supply for Small Form Factor TFT Display in QFN-16, Programmable SeqFEATURES • Automatic or Programmable PowerSequencing• Main Output, VMAIN• Complete 1 mm Component P ..
TPS65124RGTRG4 ,Single-Inductor, Triple-Output Supply for Small Form Factor TFT Display in QFN-16, Programmable SeqELECTRICAL CHARACTERISTICSV = 3.6 V, EN = RUN = V , L = 10 µH, T = -40°C to 85°C, typical values ar ..
TPS65124RGTT ,Single-Inductor, Triple-Output Supply for Small Form Factor TFT Display in QFN-16, Programmable SeqMAXIMUM RATINGS(1)over operating free-air temperature range (unless otherwise noted)UNITVIN -0.3 V ..
TPS65124RGTTG4 ,3-CH Single Inductor Multiple Outputs (SIMO) Bias IC w/ Adjustable Sequencing 16-QFN -40 to 85SLVS531A–JUNE 2004–REVISED MARCH 2005These devices have limited built-in ESD protection. The leads ..
TPS65130RGER ,Adjustable, Dual Output, Positive & Negative 800-mA Switch Boost DC/DC 4x4 QFN-24 for OLED,TFT,CCDFeatures 3 DescriptionThe TPS6513x is dual-output DC-DC converter1• 2.7-V to 5.5-V Input Voltage Ra ..
TPS65130RGET ,Split-Rail Converter with Dual Positive and Negative Outputs (200mA typ) 24-VQFN -40 to 85 SLVS493D–MARCH 2004–REVISED JANUARY 20165 Pin Configuration and FunctionsRGE Package24-PIN VQFN Wi ..
TSUS5202 ,Infrared emitting diodesElectrical CharacteristicsT = 25 °C, unless otherwise specifiedambParameter Test condition Symbol M ..
TSUS5402 ,Infrared emitting diodesElectrical CharacteristicsT = 25 °C, unless otherwise specifiedambParameter Test condition Symbol M ..
TSV321RILT ,General purpose low voltage rail to rail input/output op-ampFeatures Pin connections (top view)• Operating range V = 2.5 V to 6 V CC• Rail-to-rail input and o ..
TSV324IDT ,General purpose low voltage rail to rail input/output op-ampAbsolute maximum ratings Symbol Parameter Value Unit (1)V Supply voltage 7 V CC(2)V Differential i ..
TSV324IYDT ,General purpose low voltage rail to rail input/output op-ampapplications • Audio driver (headphone driver) • Sensor signal conditioning SO8, MiniSO8, TSSOP8 ..
TSV324IYPT ,General purpose low voltage rail to rail input/output op-amp TSV321, TSV358, TSV324, TSV321A, TSV358A, TSV324A, General purpose input/output rail-to-rail lo ..


TPS65124RGTR-TPS65124RGTR G4-TPS65124RGTRG4-TPS65124RGTT-TPS65124RGTTG4
Single-Inductor, Triple-Output Supply for Small Form Factor TFT Display in QFN-16, Programmable Seq
24.0 20.0 16.0 12.0 8.0 4.0 0.9 0.5 0.1 TPS65120, TPS65121, TPS65123, TPS65124 www.ti.com SLVS531A–JUNE 2004–REVISED MARCH 2005 SINGLE-INDUCTOR QUADRUPLE-OUTPUT TFT LCD POWER SUPPLY FEATURES • Automatic or Programmable Power Sequencing • Main Output, V MAIN • Complete 1 mm Component Profile Solution – Adjustable Voltage, 3.0 V to 5.6 V/25 mA • 2.5 V to 5.5 V Input Voltage Range – Post-Regulated for Low Ripple (5mV ) PP – ±0.8% Typical Accuracy • Output Short Circuit Protected – Efficiency up to 83% • 16-Pin QFN Package (3 × 3 × 0,9 mm) • Positive Output, V GH APPLICATIONS – Adjustable Voltage up to 20 V/2 mA • Small Form Factor a-Si and LTPS TFT LCD – ±3% Typical Accuracy • Cell Phones, Smart Phones • Negative Output, V GL • PDAs, Pocket PCs – Adjustable Voltage down to -18 V/2 mA • Portable DVD – ±3% Typical Accuracy • Digital-Still Cameras, Camcorders • Auxiliary 1.8 V/3.3 V Linear Regulator • Handheld Instruments • Portable GPS • Car Navigation Systems DESCRIPTION The TPS6512x DC-DC converter supplies all three voltages required by amorphous-silicon (a-Si) and low-temperature poly-silicon (LTPS) TFT-LCD displays. The compact layout of the TPS6512x uses a single inductor to generate independently-regulated positive and negative outputs. A free-running variable peak current PWM control scheme time-multiplexes the inductor between outputs. This control architecture operates at a pseudo-fixed-frequency to provide fast response to line and load transients while maintaining a relatively constant switching frequency and high efficiency over a wide range of input and output voltages. Due to the high switching frequency capability of the device, inexpensive and ultra-thin 8.2 or 10µH inductors can be used. The main output, V , is post-regulated to provide a low-ripple source drive voltage for the LCD display. The MAIN auxiliary outputs generate a boosted output voltage, V , up to 20 V, and a negative output voltage, V , down to GH GL -18 V for the LCD gate drive. The device has internal current limiting for high reliability under fault conditions. Additionally, the device offers a fixed output linear regulator for the LCD logic circuitry. 100 90 TPS65123 D1 80 V GL VIN SWN V IN R3 C1 down to −18 V/2 mA 70 2.7 V to 5.5 V L1 2.2 μ F RUN C3 60 10μH EN R4 100 nF SWP 50 GATE FBL 40 V V GH MAIN VGH VMAIN R5 30 up to 20 V/2 mA 3.0 V to 5.3 V/25 mA FBM R1 C2 BOOT C5 20 FBH 100 nF R6 C4 220 nF 10 R2 1μ F 0 PGND AGND V − Input Voltage − V A A IN I − Load Current − mA BOOT Figure 1. Typical Application Figure 2. Core Converter Efficiency Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet. PRODUCTION DATA information is current as of publication date. Copyright © 2004–2005, Products conform to specifications per the terms of the Texas Instruments standard warranty. Production processing does not necessarily include testing of all parameters. 5.5 5.2 4.7 4.0 3.2 2.8 2.6 2.4 2.3 Core Converter Efficiency − %
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