THS7327PHPR Supplier,Distributor,Price,Datasheet,PDF

THS7327PHPR short lead time(IC 3-CH RGBHV VIDEO BUFF 48HTQFP),THS7327PHPR distributor

Part Number:   THS7327PHPR
Description:   IC 3-CH RGBHV VIDEO BUFF 48HTQFP
Category:   Texas Instruments(TI)
Manufacture:   Texas Instruments(TI)
Package:   IC 3-CH RGBHV VIDEO BUFF 48HTQFP
Standard Package:   
   Send RFQ for THS7327PHPR 

THS7327PHPR Distributor,Datasheet,PDF,Suppliers,Price


Algoroo:https://www.goluckyvip.com/tag/15666.html
Ali Inspector:https://www.goluckyvip.com/tag/15667.html
Ali Reviews:https://www.goluckyvip.com/tag/15668.html
Alibris:https://www.goluckyvip.com/tag/15669.html
Snapdeal假货:https://www.goluckyvip.com/tag/1567.html
Alicia:https://www.goluckyvip.com/tag/15672.html
徒步旅行一般需要带什么装备?短途的。:https://www.vstour.cn/a/447303.html
刀鱼是什么鱼:https://www.vstour.cn/a/448297.html
1 pcs
Mininum order quantity from 1PCS THS7327PHPR
Mininum order value from 1USD
2 days
lead time of THS7327PHPR is from 2 to 5 days
12 hours
Fast quotation of THS7327PHPR within 12 hours
60 days
60 days full quality warranty of THS7327PHPR
 
1, we will give you new and original parts with factory sealed package
2, Quality warranted: All products have to be passed our Quality Control before delivery.
2,If you need more details of THS7327PHPR,like pictures ,package,datasheet and so on, pls email to [email protected]

Texas Instruments develops analog, digital signal processing, RF and DLP® semiconductor technologies that help customers deliver consumer and industrial electronics products with greater performance, increased power efficiency,THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP higher precision, more mobility and better quality.Texas Instruments Incorporated combines innovative digital signal processor (DSP) and analog technologies to meet customers' real-world signal processing requirements for a broad range of communications, computing, consumer electronics, industrial and automotive applications. In addition to silicon technology, TI provides software and systems expertise enabling customers to differentiate their products. As signal processing and analog solutions are applied in ever more creative ways, TI technology helps customers develop products that make people's lives convenient, productive, secure and fun,THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP

Reducing Overall Power Budget
Most portable, battery-powered, wireless applications (mobile phones, portable consumer electronics, notebooks or any portable equipment with WLAN,THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP Bluetooth or any other wireless protocol) and a growing number of non-battery-powered applications deployed in the field (like RF microwave subsystems) face the challenge of managing their unused subsystem power consumption. The goal is to optimize their power budget while complying with severe space and cost constraints.THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP

A popular and simple option to reduce the system’s overall power budget is to shut-off subsystems not in use. This can be done easily by placing a load switch on the power rail to connect and disconnect the rail when required. THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP,For instance, a WLAN power module can be disabled while unused and, therefore, eliminate current losses due to subsystem leakages. In a similar way, an emerging number of mobile phone manufacturers tend to disable the RF power amplifier when unused as its represents a reasonable amount of leakage. In communications infrastructure applications, some subsystems can be shut-off during the night to reduce overall leakages when the amount of processing required isn’t as high as during the day.THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP

ON-resistance Specification
ON-resistance is clearly a critical specification as it determines the dropout seen through the FET. An application with low-current ratings (THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP In addition to the maximum continuous current the designer targets to switch, it is crucial to consider what the maximum pulsed-current is that the switch can accept.THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP In wireless applications some loads consist of moderate continuous currents followed by current bursts due to the RF power amplifiers. A good example is the GSM/GPRS transmit burst that sinks up to 1.7A during 576µS with a duty cycle of 12.5 percent. It is important to scale the design to comply with such pulsed current.THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP

The UCC3915 programmable hot swap power manager provides complete power-management, hot-swap capability, and circuit breaker functions. The only external component required to operate the device, other than power supply bypassing, THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP is the fault-timing capacitor, CT. All control and housekeeping functions are integrated,and externally programmable. These include the fault current level, maximum output sourcing current, maximum fault time, and startup delay. In the event of a constant fault, the internal fixed 2% duty cycle ratio limits average output power.The internal 4-bit DAC allows programming of the fault-level current from 0 A to 3 A with 0.25-A resolution.THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP The IMAX control pin sets the maximum-sourcing current to 1 A above the trip level or to a full 4 A of output current for fast output capacitor charging. (continued)

When the output current is below the fault level, the output MOSFET is switched on with a nominal ON resistance of 0.15 Ω. When the output current exceeds the fault level, but is less than the maximum-sourcing level, the output remains switched on, but the fault timer starts, charging CT. Once CT charges to a preset threshold, the switch is turned off, and remains off for 50 times the programmed fault time.THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP When the output current reaches the maximum sourcing level, the MOSFET transitions from a switch to a constant current source.The UCC3915 can be put into sleep mode, drawing only 100 μA of supply current. Other features include an open-drain fault-output indicator, thermal shutdown, undervoltage lockout, 7-V to 15-V operation, and low-thermal resistance SOIC and TSSOP power packages.THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP

Although the UCC3915 is designed to provide system protection for all fault conditions, all integrated circuits can ultimately fail short. For this reason, if the UCC3915 is intended for use in safety-critical applications where UL or some other safety rating is required, a redundant safety device such as a fuse should be placed in series with the device. THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFPThe UCC3915 will prevent the fuse from blowing for virtually all fault conditions, increasing system reliability and reducing maintenance cost, in addition to providing the hot-swap benefits of the device. This Schottky barrier diode bus-termination array is designed to reduce reflection noise on memory THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP bus lines. This device consists of a 16-bit high-speed Schottky diode array suitable for clamping to VCC and/or GND. The SN74S1053 is characterized for operation from 0°C to 70°C.Diode terminations have several advantages when compared to resistor termination schemes.THS7327PHPR Texas Instruments(TI) IC 3-CH RGBHV VIDEO BUFF 48HTQFP  Split resistor or Thevenin equivalent termination can cause a substantial increase in power consumption. The use of a single resistor to ground to terminate a line usually results in degradation of the output high level, resulting in reduced noise immunity.Series damping resistors placed on the outputs of the driver reduce negative transients, but they also can increase propagation delays down the line, as a series resistor reduces the output drive capability of the driving device. Diode terminations have none of these drawbacks.