General Description
The MP1011A is a Power IC offering a complete solution for driving one or more Cold Cathode Fluorescent Lamps (CCFL).
This Power IC converts unregulated DC voltage to a nearly pure sine wave required to ignite and operate the CCFL. Based on proprietary power topology and patented control techniques, it
greatly increases the power conversion efficiency. The MP1011A supports both analog and burst mode dimming without any additional external components. The MP1011A offers four distinct performance advantages:
1. More light for less power
2. Small board implementation
3. Low EMI emission
4. Low cost off the shelf components

Features
·  Integrated power switches
·  6.0 to 22v variable supply voltage with regulated lamp current.
·  Rated 12W power output at 12V input
·  Open lamp regulation
·  Current and Voltage feedback control
·  Logic Level burst mode control
·  Thermal Shutdown
·  Supports Open/Short Lamp protection
·  Soft Start
·  Output is short circuit protected
·  Low lamp operating voltage for increasing transformer or using smaller transformer
·  Allows Burst-Mode Operation
·  No ballast capacitor required

Applications
LCD backlight inverter for large portable or desktop display.

MP1011EMA
TAG Driver, lamp

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Features
* Compatible with existing ST tools (CANIC10, ARMIC30 …,etc)
* 8 output channels + 1 feedback channel (diagnostic - status)
* CMOS compatible signals allow direct connection to a microcontroller
* Outputs and diagnostic status indicated by LEDs
* EMC immunity proof 4kV level EFT(IEC 61000- 4-4), 2kV voltage surge (IEC 61000-4-5)

General description
This reference design implements the functions of VN808CM high side drivers in industrial
applications. Developed using the VIPower M0-3 proprietary technology, VN808CM completes the series of Octal High Side Drivers for the factory automation market. It is intended for driving any kind of load with one side connected to ground. It can be driven by using a 3.3V logic supply. Active current limitation, combined with thermal shutdown and automatic restart, protects the device against overload. With primary application requirements being safety and reliability, this demonstration board is compliant with international electromagnetic compatibility (EMC) specifications as well as other requirements. It has been tested at different typical ambient temperatures. The reference design is suitable for use in programmable logic controllers to produce the related digital outputs according to IEC standards.

ST components
* VN808CM - 8 channel high side driver with CMOS compatible voltage levels
* SM15T36A unidirectional transil diode


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General Description
The FPD95120 is a 320–channel LTPS/CGS driver with Partial Display Memory, a 24–bit RGB video interface and enhanced display quality. It provides 320 output source drivers with a 1:3 glass multiplex ratio. It includes a 230,400–bit memory for partial display modes, a timing controller with glass interface level-shifters, AC and DC VCOM drive schemes and glass power supply circuits. The output format can be configured to drive arbitrary display resolutions up to 320RGB columns. Advanced processing features enable up-scaling of incoming video to accommodate legacy graphics. There is also an upscale function for the Partial Display window to enable larger window sizes.
The on-chip Partial Display Memory is configurable in window size, location and color depth. This memory can support partial display windows such as 240x320 in 3–bit mode and 320x720 in 1–bit color mode. The partial display memory can be used to self-refresh a region of the display in a reduced power state or as an overlay for OSD and alpha-blending features.
The FPD95120 also includes independent RGB gamma curve adjustments as well as user-definable color palettes for 1–bit and 3–bit Partial Display modes.
A low-speed serial interface (LoSSI) is provided to control display operating modes and provide access to the Partial Display Memory. This interface can support both 8–bit and 9– bit protocols. A standard command set is supported to set display modes and operating parameters. Customized register profiles associated with each command are loaded from an on-chip EEPROM. Registers can also be directly accessed by using the Register Access Mode

Features
*Power Savings
*Self-refreshed Partial Display Mode
*Provides timing signal for on-glass charge-sharing circuit
*Standard Command Set
*Registers initialized from on-chip EEPROM
*Command-triggered profiles can change register settings for modes/gamma settings
*Eliminates frequent host SW changes to update register settings
*8 user-defined display configurations
*Programmable Settings
*Display resolution and glass signal timing
*Video interface timing auto-learning circuit
*VID_XFR output reduces tearing in partial mode
*Gamma curves and VCOM adjustment
*Advanced Display Features (evaluation only)
*Configurable Partial Mode Window size, location and color depth
*Self-refreshed partial display mode supports 1–bit and 3– bit depths
*OSD function with Partial RAM data in video mode
*Alpha blending, including transparent mode
*Video 2x upscale with programmable border
*Partial Window 2x upscale with border color
*Interfaces
*Serial Interface (LoSSI) for commands, register access and partial memory access
*24–bit RGB Video interface
*MPL1 high-speed serial interface

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DESCRIPTION
The fundamental of SP6003A synchronous rectifier (SR) driver IC is based on our U.S. patented methods that utilize the principle of “prediction” logic circuit. The IC deliberates previous cycle timing to control the SR in present cycle by “predictive” algorithm that makes adjustments to the turn-off time, in order to achieve maximum efficiency and avoid cross-conduction at the same time. It also maintains the MOSFET’s body diode conduction at minimum level. The SP6003A is capable to adapt in almost all existing flyback converters with few adjustments considered necessary.

FEATURES
• Offers efficiency improvement over Schottky Diode (depends on drive configuration of the
SR).
• Drives all logic level Power MOSFET.
• Prediction gate timing control.
• Minimum MOSFET body diode conduction.
• Operating frequency up to 650 KHz.
• Synchronize to transformer secondary voltage waveform.

APPLICATIONS
• Servers & workstations
• Storage area network power supplies
• Telecommunication converters
• Embedded systems
• Industrial & commercial systems using high current processors

SP6003AS8RG
SP6003AS8TG

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FEATURES
*Gain Set by External Components (6 dB typ.)
*Internal 75 Ω Drivers
*Active High ON/OFF Control
*Very Low Standby Current (typ. ISTBY ≤ 25 μA)
*Single +5 V Power Supply Operation


APPLICATIONS
*RGB Video Line Driver Applications
*Video Equipment
*Digital Cameras
*CCD Cameras
*TV Monitors
*Video Tape Recorders
*LCD Projectors

DESCRIPTION
Operating from a single +5 V supply, the TK15402 is a triple video driver IC that takes standard video signals as analog inputs and provides buffered analog outputs for driving 150 Ω loads (series 75 Ω resistor and 75 Ω cable load). The standard video input signals (1 VP-P) are
typically amplified 6 dB using external components to produce a 2 VP-P signal into an AC-coupled 150 Ω load.
During standby (Pin 2 grounded), the TK15402 consumes only 113 μW of power. Nominal power dissipation (no input) is typically 98 mW.
The TK15402M is available in the SSOP-12 Surface Mount Package.


TK15402M

TAG Driver, VIDEO

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Description
VLA507 is a hybrid integrated circuit designed for driving IGBT modules. This device operates as an isolation amplifier for these modules and provides the required electrical isolation between the input and output with an opto- coupler.

Features
* Output is ±3 Amperes Maximum
* Two Supply Drive (VCC: 15 Volts, VEE: -10 Volts)
* SIP Outline Allows More Space on Mounting Area
* Electrical Isolation Voltage Between Input and Output (2500 Vrms for 1 Minute)
* TTL Compatible Input

Application
To drive IGBT modules for welding, induction heating, or inverters.

Recommended IGBT Modules
NFH Series IGBTs –
VCES = 1200V up to 150A class (f: up to 30kHz)
NF Series IGBTs –
VCES = 600V up to 200A class (f: up to 20kHz)
VCES = 1200V up to 150A class (f: up to 20kHz)

TAG Driver, Hybrid, ic, IGBT

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■Description
IR2E51Y incorporates white LED driver with auto brightness control.
This IC is equipped with charge pump DC/DC converter.
Input voltage is boosted into CPO by a charge pump circuit.
This IC maintains high efficiency since the charge pump circuit automatically selects 1x or 1.5x charge pump mode depending on input voltage and load.
It contains 4 white LED drivers to drive the main-LCD backlight, 2 white LED drivers for sub-LCD backlight and RGB-LED drivers.
All LED are connected in parallel.
With peripheral ambient light sensor, this IC automatically adjusts white LED brightness to ambient brightness.
This IC supports I2C-Bus interface.
This product is optimum for use as the backlight white LED driver IC for cellular phone and PDA applications, etc.


■Features
1. Supply Voltage Range: VIN=3.0V to 4.5V, VCC=2.3V to 3.2V
2. Supports I2C-Bus interface
3. SCL pin and SDA pin are installed with noise filters.
4. Sink-type variable constant current driver for LED (maximum current 27.4mA/ch)
5. Monitoring all LED pins (Response to VF variation of LED)
6.Auto brightness control circuit for main-LCD embedded. (16 steps and 128 gradation sequence)
7.PWM LED Brightness Control (0% to 100%) (RGB) (The PWM signal frequency of 2kHz to 5kHz is recommended.)
8.1x/1.5x Modes Charge Pump: Automatically Selected
9.Voltage reference embedded
10.Stand-by circuit embedded
11.Power-on-reset circuit embedded
12.Soft-Start Limits Inrush Current
13.Effective illuminance range (3lx to 55000lx) (GA1A1S201WP)


■Agency approvals/Compliance
1. Compliant with RoHS directive(2002/95/EC)


■Applications
1.Back light and call alert display (White & RGB LED)

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 The CS4161 is a Stepper Motor Driver that implements an H–Bridge design in order to drive two coils in an eight step sequence per revolution in the divide by 1 mode; 16 step sequence in the divide by 2 mode. The H–Bridge is capable of delivering 85 mA to the load.

 The sequencer insures that the odometer is monotonic. This sequencer is configured such that simultaneous conduction does not occur. Before each successive output sequence the part is taken through a state where both outputs are turned off individually. This tends to minimize the inductive kick back energy that the part must absorb. On chip clamp diodes are across each output to protect the part from the kick back energy that it must absorb.

 The CS4161 includes overvoltage and short circuit protection circuitry. It is lead for lead compatible with the CS8441. The CS4161 includes an additional undervoltage lockout (UVLO) function which disables the output stage until the supply voltage rises above 5.6 V, typically. The UVLO has hysteresis to prevent any power up glitching.

Features
• Undervoltage Lockout
• Cross–Conduction Prevention Logic
• Divide by 1 and Divide by 2 Modes
• Guaranteed Monotonic
• On–Chip Flyback Diodes
• Fault Protection
– Overvoltage
– Load Dump Protection to 60 V

CS4161YN8

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FEATURES
· Members of the Texas Instruments Widebus™ Family
· Output Ports Have Equivalent 22-W Series Resistors, So No External Resistors Are Required
· Support Mixed-Mode Signal Operation (5-V Input and Output Voltages With 3.3-V VCC)
· Support Unregulated Battery Operation Down to 2.7 V
· Typical VOLP (Output Ground Bounce)<0.8 V at VCC = 3.3 V, TA = 25°C
· Ioff and Power-Up 3-State Support Hot Insertion
· Distributed VCC and GND Pins Minimize High-Speed Switching Noise
· Flow-Through Architecture Optimizes PCB Layout
· Latch-Up Performance Exceeds 100 mA Per JESD 78, Class II
· ESD Protection Exceeds JESD 22
– 2000-V Human-Body Model (A114-A)
– 200-V Machine Model (A115-A)
– 1000-V Charged-Device Model (C101)

DESCRIPTION/ORDERING INFORMATION
 The 'LVT162244A devices are 16-bit buffers and line drivers designed for low-voltage (3.3-V) VCC operation, but with the capability to provide a TTL interface to a 5-V system environment. These devices can be used as four 4-bit buffers, two 8-bit buffers, or one 16-bit buffer. These devices provide true outputs and symmetrical active-low output-enable (OE) inputs.
The outputs, which are designed to source or sink up to 12 mA, include equivalent 22-W series resistors to reduce overshoot and undershoot.
When VCC is between 0 and 1.5 V, the devices are in the high-impedance state during power up or power down.

 However, to ensure the high-impedance state above 1.5 V, OE should be tied to VCC through a pullup resistor; the minimum value of the resistor is determined by the current-sinking capability of the driver.
These devices are fully specified for hot-insertion applications using Ioff and power-up 3-state. The Ioff circuitry disables the outputs, preventing damaging current backflow through the devices when they are powered down.
The power-up 3-state circuitry places the outputs in the high-impedance state during power up and power down, which prevents driver conflict.

SN74LVT162244AGRDR
SN74LVT162244AZRDR
SN74LVT162244ADL
SN74LVT162244ADLG4
SN74LVT162244ADLR
74LVT162244ADLRG4
SN74LVT162244ADGGR
74LVT162244ADGGRE4
SN74LVT162244ADGVR
74LVT162244ADGVRE4
SN74LVT162244AGQLR
SN74LVT162244AZQLR
SNJ544LVT162244AWD

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Features
• Three channel video reconstruction filters
• YUV/RGB filters
• 2:1 Mux inputs for multiple RGB/YUV inputs
• Selectable 8MHz or 30MHz 6th order filters for RGB (YUV) applications
• 8MHz 6th order Y, C filters with composite summer
• DC coupled input, AC coupled output
• All outputs can drive AC coupled 150Ω loads and provide 6dB of gain
• Dual multiplexed inputs
• 0.6% differential gain with 0.2° differential phase
• 36dB/octave roll-off on all channels

Description
 The FMS6419 offers comprehensive filtering for set top box or DVD applications. This part consists of a triple 6th order filter with selectable 30MHz or 8MHz frequencies.
 A 2-to-1 multiplexer is provided on each filter channel. The triple filters are intended for either YUV or RGB signals. All channels accept DC coupled ground-referenced 1V signals.
 The filters provide 2Vpp signals into AC coupled terminated loads. The low-pass filters are powered by 3.3V and the outputs by 5.0V.

Applications
• Cable Set top boxes
• Satellite Set top boxes
• DVD players
• HDTV
• Personal Video Recorders (PVR)
• Video On Demand (VOD)

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