Higerlas own stock of PIC10LF322T-I/OT ,SOT-236 ,MICROCHIP ,2022+ , 3000/Reel , Total Quantity: 10823PCS,hot sale.

PIC10LF322T-I/OT

The PIC10LF322T-I/OT is a microcontroller from Microchip Technology with the following features and specifications:

PIC10LF322T-I/OT

PIC10LF322T-I/OT Key Features:

  • Core: 8-bit PIC® MCU
  • Operating Voltage: 1.8V to 3.6V
  • Flash Program Memory: 896 Bytes
  • RAM: 64 Bytes
  • EEPROM: 128 Bytes
  • I/O Pins: 4
  • Package: SOT-23-6
  • Peripherals:
  • Enhanced Timer (TMR2)
  • 8-bit Analog-to-Digital Converter (ADC)
  • Configurable Logic Cell (CLC)
  • Numerically Controlled Oscillator (NCO)
  • Complementary Waveform Generator

PIC10LF322T-I/OT Additional Details:

  • Low Power Consumption: Ideal for battery-powered applications.
  • Wide Operating Voltage Range: Suitable for a variety of power supplies.
  • Integrated Peripherals: Useful for signal measurement, control, and generation tasks.

PIC10LF322T-I/OT Applications:

  • Portable devices
  • Sensor interface
  • Small form factor applications
  • Consumer electronics

For more detailed information, you can refer to the official datasheet from Microchip Technology.

Using the PIC10LF322T-I/OT microcontroller involves several steps, from setting up the hardware to writing and uploading code to the microcontroller. Here’s a basic guide to get you started:

PIC10LF322T-I/OT 1. Set Up the Hardware:

PIC10LF322T-I/OT Tools and Materials Needed:

  • PIC10LF322T-I/OT microcontroller
  • Breadboard and jumper wires (if prototyping)
  • Power supply (1.8V to 3.6V)
  • Capacitors (for power stabilization)
  • Programming tool (e.g., PICkit 3 or PICkit 4)
  • PC with MPLAB X IDE installed

PIC10LF322T-I/OT Connections:

  • Power: Connect VDD to the positive supply voltage and VSS to the ground.
  • Programming Pins: Connect the ICSP (In-Circuit Serial Programming) pins (VPP/MCLR, ICSPDAT, and ICSPCLK) to the corresponding pins on the programmer.
  • I/O Pins: Connect any additional components (sensors, LEDs, etc.) to the appropriate I/O pins.

PIC10LF322T-I/OT 2. Install Software:

PIC10LF322T-I/OT MPLAB X IDE:

  • Download and install MPLAB X IDE from Microchip’s official website.
  • Optionally, install MPLAB Code Configurator (MCC) to help with code generation.

PIC10LF322T-I/OT XC8 Compiler:

  • Download and install the XC8 compiler, which is necessary for compiling code for PIC microcontrollers.

PIC10LF322T-I/OT 3. Create a New Project:

  1. Open MPLAB X IDE:
  • Go to File -> New Project.
  • Select Microchip Embedded -> Standalone Project.
  • Choose your device (PIC10LF322T).
  • Select the programmer (e.g., PICkit 3).
  • Name your project and select a location to save it.
  1. Configure the Project:
  • If using MCC, open it via Tools -> Embedded -> MPLAB Code Configurator.
  • Use MCC to configure device settings, peripherals, and generate initialization code.

PIC10LF322T-I/OT 4. Write Your Code:

  1. Initialize Peripherals:
  • Set up configuration bits (oscillator settings, watchdog timer, etc.).
  • Initialize any peripherals you plan to use (ADC, timers, etc.).
  1. Main Code:
  • Write your main application code in the main.c file. Here’s a simple example that blinks an LED:
   // Include necessary header files
   #include <xc.h>

   // Configuration bits
   #pragma config FOSC = INTRCIO  // Internal oscillator
   #pragma config WDTE = OFF      // Watchdog Timer disabled
   #pragma config PWRTE = ON      // Power-up Timer enabled
   #pragma config MCLRE = OFF     // MCLR pin function is digital input
   #pragma config CP = OFF        // Code protection is disabled
   #pragma config BOREN = ON      // Brown-out Reset enabled
   #pragma config CLKOUTEN = OFF  // CLKOUT function is disabled

   void main(void) {
       TRISAbits.TRISA0 = 0; // Set RA0 as output (LED)
       while (1) {
           LATAbits.LATA0 = 1; // Turn on LED
           __delay_ms(500);    // Delay 500 ms
           LATAbits.LATA0 = 0; // Turn off LED
           __delay_ms(500);    // Delay 500 ms
       }
   }

PIC10LF322T-I/OT 5. Compile and Program:

  1. Build the Project:
  • Click on the Build button (hammer icon) to compile your code.
  1. Program the Microcontroller:
  • Connect the programmer to your PC and the microcontroller.
  • Click on the Make and Program Device button (downward arrow icon) to upload the code to the microcontroller.

PIC10LF322T-I/OT 6. Test Your Setup:

  • Power the microcontroller and observe the behavior of your application (e.g., the LED should blink).

PIC10LF322T-I/OT 7. Debugging:

  • Use MPLAB X IDE’s debugging tools to troubleshoot and refine your code.

This is a basic guide to get you started with the PIC10LF322T-I/OT microcontroller. For more detailed information, refer to the PIC10LF322T datasheet and Microchip’s documentation and application notes.

PIC16F15356T-I/SS,8400Pieces,Higerlas own Stock/New and original sealed/Beat the agents’ price

PIC16F15356T-I/SS 8400PIECES,Higerlas own Stock/New and original sealed,

The PIC16F15356T-I/SS is a microcontroller from Microchip Technology. It belongs to the PIC16F series, known for its 8-bit microcontrollers with a variety of features suitable for embedded applications. Here’s a brief overview of its key specifications and features:

PIC16F15356T-I/SS Key Specifications:

  • CPU: 8-bit PIC16
  • Flash Memory: 14 KB
  • SRAM: 1 KB
  • EEPROM: 256 bytes
  • Operating Voltage: 2.3V to 5.5V
  • Operating Frequency: Up to 32 MHz
  • I/O Pins: 16
  • Package: SSOP-20

PIC16F15356T-I/SS Key Features:

  • Peripherals:
  • 2 x 16-bit Timers
  • 1 x 8-bit Timer
  • 2 x Capture/Compare/PWM modules
  • 2 x Enhanced Universal Synchronous Asynchronous Receiver Transmitter (EUSART) modules
  • Analog-to-Digital Converter (ADC) with up to 12 channels
  • 5-bit Digital-to-Analog Converter (DAC)
  • Comparators and Voltage Reference
  • 4 x CLC (Configurable Logic Cell) modules
  • PIC16F15356T-I/SS Core Independent Peripherals (CIP):**
  • Complementary Waveform Generator (CWG)
  • Numerically Controlled Oscillator (NCO)
  • Signal Measurement Timer (SMT)
  • Zero Cross Detect (ZCD)
  • PIC16F15356T-I/SSAdditional Features:**
  • Watchdog Timer (WDT) with dedicated Low-Power RC oscillator
  • Enhanced Power-On/Off-Reset
  • Brown-out Reset (BOR)
  • Low-Power Sleep mode

PIC16F15356T-I/SS Applications:
The PIC16F15356T-I/SS is suitable for various applications such as:

  • Consumer electronics
  • Industrial control systems
  • Automotive applications
  • Home automation
  • Medical devices

PIC16F15356T-I/SS Package Information:

  • Package Type: SSOP (Shrink Small Outline Package)
  • Pin Count: 20

If you need more detailed information, you can refer to the datasheet or the product page on the Microchip website.

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PIC16F15356T-I/SS

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Manufacturer:Microchip Technology
Manufacturer Product Number:PIC16F15356T-I/SS
Description:PIC16F15356T-I/SS IC MCU 8BIT 28KB FLASH 28SSOP
Detailed DescriptionPIC16F15356T-I/SS PIC PIC® XLP™ 16F Microcontroller IC 8-Bit 32MHz 28KB (16K x 14) FLASH 28-SSOP

PIC16F15356T-I/SS,microcontrollers feature analog, core independent peripherals and communication
peripherals, combined with eXtreme Low-Power (XLP) technology for a wide range of general purpose and low-power applications.
The devices feature multiple PWMs, multiple communication, temperature sensor, and memory features such as Memory Access Partition (MAP) to support customers in data protection and bootloader applications, and Device Information Area (DIA) which stores factory calibration values to help improve temperature sensor accuracy.

#PIC16F15356T-I/SS#PIC16F15356-I/SS#Microchip #microchip

2024+ Stock Sell: PIC18F25Q10T-I/SS,Microchip,28-SSOP, 100800Pieces

We have our own stock of  PIC18F25Q10T-I/SS,Microchip,28-SSOP,100800 PIECES,now for sale.

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PIC18F25Q10T-I/SS,2

MICROCHIP PIC18F25Q10T-I/SS is a MCU with 32KB Flash, 2KB RAM, 256B EEPROM, 10b ADC2, 5b DAC, Comp, PWM, CCP, CWG, HLT, WWDT, SCAN/CRC, ZCD, PPS, EUSART, SPI/I2C, IDLE/DOZE/PMD – Package: 28 SSOP .209in T/R

PIC18F25Q10T-I/SS
PIC18F25Q10T-ISS-1024×768.png

PIC18F25Q10T-I/SS Datasheet: https://ww1.microchip.com/downloads/aemDocuments/documents/MCU08/ProductDocuments/DataSheets/PIC18F24-25-Q10-Data-Sheet-40001945D.pdf

To use the PIC18F25Q10T-I/SS microcontroller, you typically need to follow these general steps:

Read the Datasheet: Start by obtaining the datasheet for the PIC18F25Q10T-I/SS from Microchip’s official website. The datasheet contains crucial information about the microcontroller, including pinouts, electrical characteristics, memory organization, and detailed explanations of the peripherals.

Development Tools: Gather the necessary development tools, including a compatible programmer/debugger and an Integrated Development Environment (IDE) that supports the PIC18F series. MPLAB X IDE is commonly used for programming and debugging PIC microcontrollers. Additionally, you might need a hardware development board for prototyping.

Programming Language: Choose a programming language to write your code. Microchip provides support for assembly language and C language programming. The choice of language depends on your preferences and project requirements.

Code Development: Write your code using the selected programming language. Use the information provided in the datasheet to understand the microcontroller’s architecture and how to configure its various features.

Compile the Code: Use the MPLAB X IDE (or other compatible IDEs) to compile your code. This step generates a binary file that can be programmed into the microcontroller.Program the Microcontroller: Connect your programmer/debugger to the PIC18F25Q10T-I/SS on your development board and use the IDE to program the microcontroller with the compiled code. Make sure to follow the programming specifications provided by Microchip.

2000pcs of FAN7621BSJX or FAN7621SJX in stock for sale ,ON fairchild, new and original

FAN7621
FAN7621BSJX FAN7621SJX
https://www.semibing.com/Inquiry
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Brief Introduction of FAN7621BSJX or FAN7621

The FAN7621BSJX or FAN7621SJX is a pulse frequency modulation controller for high-efficiency half-bridge resonant converters.Offering everything necessary to build a reliable and robust resonant converter, the FAN7621B simplifies designs and improves productivity, while improving performance. The FAN7621B includes a highside gate-drive circuit, an accurate current controlled oscillator, frequency limit circuit, soft-start, and built-in protection functions. The high-side gate-drive circuit has a common-mode noise cancellation capability, which guarantees stable operation with excellent noise immunity. Using the zero-voltage-switching (ZVS) technique dramatically reduces the switching losses and efficiency is significantly improved. The ZVS also reduces the switching noise noticeably, which allows a small-sized Electromagnetic Interference (EMI) filter. The FAN7621B can be applied to various resonant converter topologies; such as series resonant, parallel resonant, and LLC resonant converters.

Features of FAN7621BSJX or FAN7621

Features
 
Variable Frequency Control with 50% Duty Cycle for Half-bridge Resonant Converter Topology
High Efficiency through Zero Voltage Switching (ZVS)
Fixed Dead Time (350ns)
Up to 300kHz Operating Frequency
Pulse Skipping for Frequency Limit (Programmable) at Light-Load Condition
Remote On/Off Control using CON Pin
Protection Functions: Over-Voltage Protection (OVP), Overload Protection (OLP), Over-Current Protection (OCP), Abnormal Over-Current Protection (AOCP), Internal Thermal Shutdown (TSD)
Applications
PDP TV LCD TV Desktop PC Server Video Game Console

FAN7621BSJX FAN7621SJX, PFM CONTROLLER FOR HALF-BRIDGE

Converter Offline Half-Bridge Topology Up to 300kHz 16-SOP

Product Attributes

Categories:      Integrated Circuits (ICs)

PMIC – AC DC Converters, Offline Switchers 

Manufacturer:          ON Semiconductor 

Packaging:        Tape & Reel (TR)    

Part Status:      Active      

Output Isolation:     Isolated  

Internal Switch(s):   No   

Voltage – Breakdown       

Topology  Half-Bridge      

Voltage – Start Up    12.5V       

Voltage – Supply (Vcc/Vdd)        10V ~ 25V        

Duty Cycle        50%

Frequency – Switching      Up to 300kHz  

Power (Watts) 192W       

Fault Protection       Current Limiting, Over Load, Over Temperature, Over Voltage     

Control Features      Frequency Control  

Operating Temperature  -40°C ~ 130°C (TJ)   

Package / Case         16-SOIC (0.209″, 5.30mm Width)   

Supplier Device Package 16-SOP    

Mounting Type:Surface MountFAN7621B — PFM Controller for Half-Bridge Resonant Converters

FAN7621B

PFM Controller for Half-Bridge Resonant Converters

FAN7621BSJX or FAN7621SJX  Features:

1,Variable Frequency Control with 50% Duty Cycle

for Half-bridge Resonant Converter Topology

2,  High Efficiency through Zero Voltage Switching (ZVS)

3,  Fixed Dead Time (350ns)

4,  Up to 300kHz Operating Frequency

5, Pulse Skipping for Frequency Limit (Programmable)

at Light-Load Condition

6,  Remote On/Off Control using CON Pin

7,  Protection Functions: Over-Voltage Protection

(OVP), Overload Protection (OLP), Over-Current

Protection (OCP), Abnormal Over-Current Protection

(AOCP), Internal Thermal Shutdown (TSD)

Applications

8, PDP and LCD TVs

9, Desktop PCs and Servers

10, Adapters

11,  Telecom Power Supplies

12, Video Game Consoles

The FAN7621BSJX FAN7621SJX is a pulse frequency modulation,

controller  for  high-efficiency  half-bridge  resonant

converters. Offering everything necessary to build a

reliable and robust resonant converter, the FAN7621B

simplifies designs and improves productivity, while

improving performance. The FAN7621B includes a high-

side gate-drive circuit, an accurate current controlled

oscillator, frequency limit circuit, soft-start, and built-in

protection functions. The high-side gate-drive circuit has

a common-mode noise cancellation capability, which

guarantees  stable  operation with excellent noise

immunity.  Using  the  zero-voltage-switching  (ZVS)

technique dramatically reduces the switching losses and

efficiency is significantly improved. The ZVS also

reduces the switching noise noticeably, which allows a

small-sized Electromagnetic Interference (EMI) filter.

The FAN7621B can be applied to various resonant

converter topologies; such as series resonant, parallel

resonant, and LLC resonant converters.

Related Resources

AN4151 — Half-bridge LLC Resonant Converter Design

using FSFR-series Fairchild Power Switch (FPS TM )

FAN7621BSJ

-40°C ~ 130°C  16-Lead Small Outline Package (SOP)

-50 -25 0 25 50 75 100

Temp ( O C)

Normalized at 25 O C

Figure 14. CON Pin Enable Voltage vs. Temperature  Figure 15. OCP Voltage vs. Temperature

© 2009 Fairchild Semiconductor Corporation  www.fairchildsemi.com

FAN7621B • Rev. 1.0.1  9

FAN7621B — PFM Controller for Half-Bridge Resonant Converters

Functional Description

1. Basic Operation: FAN7621B is designed to drive

high-side and low-side MOSFETs complementarily with

50% duty cycle. A fixed dead time of 350ns is introduced

between consecutive transitions, as shown in Figure 16.

High-side

MOSFET

gate drive

Low-side

MOSFET

gate drve

Dead time

time

Figure 16. MOSFETs Gate Drive Signal

2. Internal Oscillator: FAN7621B employs a current-

controlled oscillator, as shown in Figure 17. Internally,

the voltage of R T pin is regulated at 2V and the charging

/ discharging current for the oscillator capacitor, C T , is

obtained by copying the current flowing out of R T  pin

(I CTC ) using a current mirror. Therefore, the switching

frequency increases as I CTC increases.

Figure 17. Current Controlled Oscillator

3. Frequency Setting: Figure 18 shows the typical

voltage gain curve of a resonant converter, where the

gain is inversely proportional to the switching frequency

in the ZVS region. The output voltage can be regulated

by modulating the switching frequency. Figure 19 shows

the typical circuit configuration for R T pin, where the

opto-coupler transistor is connected to the R T pin to

modulate the switching frequency.

Figure 21. Internal Block of Control Pin

Protection: When the control pin voltage exceeds 5V,

protection  is  triggered.  Detailed  applications  are

described in the protection section.

Pulse Skipping: FAN7621B stops switching when the

control pin voltage drops below 0.4V and resumes

switching when the control pin voltage rises above 0.6V.

To use pulse-skipping, the control pin should be

connected to the opto-coupler collector pin.

© 2009 Fairchild Semiconductor Corporation  www.fairchildsemi.com

FAN7621B • Rev. 1.0.1  13

FAN7621B — PFM Controller for Half-Bridge Resonant Converters

6. PCB Layout Guideline: Duty imbalance problems

may occur due to the radiated noise from main

transformer, the inequality of the secondary-side leakage

inductances of main transformer, and so on. Among

them, it is one of the dominant reasons that the control

components in the vicinity of R T pin are enclosed by the

primary current flow pattern on PCB layout. The direction

of the magnetic field on the components caused by the

primary current flow is changed when the high-and-low

side MOSFET turns on by turns. The magnetic fields with

opposite direction from each other induce a current

through, into, or out of the R T pin, which makes the turn-

on duration of each MOSFET different. It is strongly

recommended to separate the control components in the

vicinity of R T pin from the primary current flow pattern on

PCB layout. Figure 28 shows an example for the duty-

balanced case. The yellow and blue lines show the

primary current flows when the lower-side and higher-

side MOSFETs turns on, respectively. The primary

current does not enclose any component of controller.

In addition, it is helpful to reduce the duty imbalance to

make the loop configured between CON pin and opto-

coupler as small as possible, as shown in the red line in

Figure 28.

Figure 28. Example for Duty Balancing

© 2009 Fairchild Semiconductor Corporation  www.fairchildsemi.com

FAN7621B • Rev. 1.0.1  14

FAN7621B — PFM Controller for Half-Bridge Resonant Converters

Typical Application Circuit (Half-Bridge LLC Resonant Converter)

Application  Device  Input Voltage Range  Rated Output Power

Output Voltage

(Rated Current)

LCD TV  FAN7621B

390V DC

(340~400V DC )

192W  24V-8A

Features

High efficiency ( >94% at 400V DC input)

Reduced EMI noise through zero-voltage-switching (ZVS)

Enhanced system reliability with various protection functions

FAN7621

FAN7621B — PFM Controller for Half-Bridge Resonant Converters

Typical Application Circuit  (Continued)

Usually, LLC resonant converters require large leakage inductance value. To obtain a large leakage inductance,

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MT29C8G96MAZBBDKD-48 IT

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MT29C8G96MAZBBDKD-48 IT

MT29C8G96MAZBBDKD-48 IT

Manufacturer: Micron Technology Inc. Manufacturer Part: MT29C8G96MAZBBDKD-48 IT TR
  Combo Memory 8Gx16 Flash + 4096Mx32 Mobile LPDRAM 1.8V 137-Pin TFBGA
Description: IC FLASH RAM 8G PARALLEL 208MHZ
Detailed: Description: FLASH – NAND, Mobile LPDRAM Memory IC 8Gb (512M x 16)(NAND), 4G (128M x 32)(LPDRAM) Parallel 208MHz

Product Attributes:

TYPE DESCRIPTION
Categories Integrated Circuits (ICs)
Memory
Manufacturer Micron Technology Inc.
Series
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Memory Type: Non-Volatile
Memory Format: FLASH, RAM
Technology: FLASH – NAND, Mobile LPDRAM
Memory Size: 8Gb (512M x 16)(NAND), 4G (128M x 32)(LPDRAM)
Memory Interface: Parallel
Clock Frequency: 208MHz
Write Cycle Time – Word, Page
Voltage – Supply: 1.7V ~ 1.9V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type:
Package / Case:
Supplier Device Package:

Environmental & Export Classifications

Lead Free Status / RoHS Status: Lead free / ROHS3 Compliant
Moisture Sensitivity Level :(MSL) 3 (168 Hours)

Additional Resources

Standard Package:  1000
Other Names MT29C8G96MAZBBDKD-48 IT TR-ND
MT29C8G96MAZBBDKD-48ITTR  

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company advantage:

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Semibing, A technical service-oriented trading company that sells foreign industrial products, integrating sales and service.
It is a professional integrator of industrial automation machine power meter products.
The company has a high-quality workforce and has been committed to electronic equipment, industrial production lines, circuit boards, container terminals, printing,
Medical equipment, food machinery, petrochemicals, machine tool equipment, mixing and mixing equipment, rubber tire equipment, automated storage equipment, steel,
Automation services in the fields of glass and cans.
company advantage:

  1. Simply provide the brand, model and related parameters of the required product, and provide the price and delivery time in the shortest time.
    Global brand inquiry capabilities.
  2. Professional engineers with many years of experience in large-scale production enterprises are responsible for model and parameter verification to ensure complete supply to customers.
    The right model to meet production requirements.
  3. Established good cooperative relations with many foreign brand headquarters and Asia-Pacific branches, and can get the best discount price.
  4. Cooperate with a number of global air, sea and express logistics companies to reduce transportation costs for customers.
  5. Having the qualification of import and export business and having nearly 1,000 square meters of warehouse in Hong Kong, it can effectively reduce the storage of Hong Kong for customers.
    This and customs clearance costs, and provide fast customs clearance services.
    6, to provide customers with good after-sales service and long-term technical support.
    The company has consistently adhered to the enterprise spirit of “honesty, one promises, and virtue”, with strong comprehensive supporting strength and extremely competitive
    Strive for the price advantage, provide users with professional, fast and efficient services, and strive to become a trusted supplier of customers!
    The company’s main agent products are
    IDEC Button indicator,IDEC electric relay,IDEC connecting terminal,IDEC PLC,IDEC touch screen,IDEC touch panel,IDEC Touch Panel,IDEC Touch Screen
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XA1E-BV311RXA1E-LV311Q4R

Real stock of M4T28-BR12SH1 DIP4 1841+ ST 240735PCS

Semibing has M4T28-BR12SH1 DIP4 1841+ ST 240735PCS in our own stock. All new and original products.

Pls, leave us your RFQ for the price and lead time.

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M4T28-BR12SH1

ManufacturerST Microelectronics
Manufacturer Part NumberM4T28-BR12SH1
DescriptionSNAPHAT BATT/CRYSTAL FOR SOIC

TYPEDESCRIPTIONSELECT ALL 
CategoriesIntegrated Circuits (ICs)
Clock/Timing – IC Batteries
ManufacturerSTMicroelectronics
SeriesTimekeeper®, Snaphat®
Part StatusActive
TypeBattery and Crystal
Battery ChemistryLithium
Capacity48mAh
Voltage – Rated2.8V
Frequency32.768kHz
Load Capacitance12.5pF
Operating Temperature0°C ~ 70°C (TA)
Base Part NumberM4T28

Offer AD7228ABR AD7228ABRZ Analog Devices Inc, In sale here now

AD7228ABR AD7228ABRZ semibing.com

Part Number AD7228ABRZ-ND
Manufacturer Analog Devices Inc.
Manufacturer Part Number AD7228ABRZ
Description IC DAC 8BIT V-OUT 24SOIC
Manufacturer Standard Lead Time 8 Weeks
Detailed Description 8 Bit Digital to Analog Converter 8 24-SOIC

Datasheets AD7228A
Product Training Modules Data Converter Fundamentals
DAC Architectures
Five Things to Know About DACs Part 1: Resolution vs. Accuracy
Five Things to Know About DACs Part 2: Total Unadjusted Error (TUE)
Five Things to Know About DACs Part 5: Dynamic Performance
View More
Video File High-Speed Converters by Analog Devices
Design Resources Development Tool Selector
Featured Product Analog Devices IoT and the Intelligence of Things
Interactive RF Signal Chain
EDA / CAD Models AD7228ABRZ by SnapEDA
EDA / CAD Models Download from Ultra Librarian
Online Catalog 8 Bit

Product Attributes
TYPE DESCRIPTION SELECT ALL
Categories Integrated Circuits (ICs)
Data Acquisition – Digital to Analog Converters (DAC)
Manufacturer Analog Devices Inc.
Series –
Packaging Tube
Part Status Active
Number of Bits 8
Number of D/A Converters 8
Settling Time 5µs, 7µs
Output Type Voltage – Buffered
Differential Output No
Data Interface Parallel
Reference Type External
Voltage – Supply, Analog 10.8V ~ 16.5V, ±5V
Voltage – Supply, Digital 13.5V ~ 16.5V
INL/DNL (LSB) ±1 (Max), ±1 (Max)
Architecture R-2R
Operating Temperature -40°C ~ 85°C
Package / Case 24-SOIC (0.295″, 7.50mm Width)
Supplier Device Package 24-SOIC
Mounting Type Surface Mount
Base Part Number AD7228

GENERAL GENERAL DESCRIPTION The AD7228 contains eight 8-bit voltage mode digital-to- analog converters (DACs), with output buffer amplifiers and interface logic on a single monolithic chip. No external trims are required to achieve the full specified performance for the device. Separate on-chip latches are provided for each of the eight DACs. Data is transferred into the data latches through a common 8-bit, TTL/CMOS-compatible input port (5 V). The A0, A1, and A2 address inputs determine which latch is loaded when WR goes low. The control logic is speed compatible with most 8-bit microprocessors. Specified performance is guaranteed for input reference voltages from 2 V to 10 V when using dual supplies. The device is also specified for single-supply operation using a reference of 10 V. Each output buffer amplifier is capable of developing 10 V across a 2 kΩ load. The AD7228 is fabricated on an all ion implanted, high speed, linear-compatible CMOS (LC2 MOS) process, specifically developed to integrate high speed digital logic circuits and precision analog circuits on the same chip. PRODUCT HIGHLIGHTS 1. The single chip design of eight 8-bit DACs and amplifiers allows a dramatic reduction in board space requirements and offers increased reliability in systems using multiple converters. The PDIP, CERDIP, and SOIC pinout is aimed at optimizing board layout with all analog inputs and outputs at one side of the package and all digital inputs at the other. 2. The voltage mode configuration of the DACs allows single supply operation of the AD7228. The device can also be operated with dual supplies giving enhanced performance for some parameters. 3. The AD7228 has a common 8-bit data bus with individual DAC latches, providing a versatile control architecture for simple interface to microprocessors. All latch enable signals are level triggered and speed compatible with most high performance 8-bit microprocessors. DESCRIPTION The AD7228 contains eight 8-bit voltage mode digital-to- analog converters (DACs), with output buffer amplifiers and interface logic on a single monolithic chip. No external trims are required to achieve the full specified performance for the device. Separate on-chip latches are provided for each of the eight DACs. Data is transferred into the data latches through a common 8-bit, TTL/CMOS-compatible input port (5 V). The A0, A1, and A2 address inputs determine which latch is loaded when WR goes low. The control logic is speed compatible with most 8-bit microprocessors. Specified performance is guaranteed for input reference voltages from 2 V to 10 V when using dual supplies. The device is also specified for single-supply operation using a reference of 10 V. Each output buffer amplifier is capable of developing 10 V across a 2 kΩ load. The AD7228 is fabricated on an all ion implanted, high speed, linear-compatible CMOS (LC2 MOS) process, specifically developed to integrate high speed digital logic circuits and precision analog circuits on the same chip. PRODUCT HIGHLIGHTS 1. The single chip design of eight 8-bit DACs and amplifiers allows a dramatic reduction in board space requirements and offers increased reliability in systems using multiple converters. The PDIP, CERDIP, and SOIC pinout is aimed at optimizing board layout with all analog inputs and outputs at one side of the package and all digital inputs at the other. 2. The voltage mode configuration of the DACs allows single-supply operation of the AD7228. The device can also be operated with dual supplies giving an enhanced performance for some parameters. 3. The AD7228 has a common 8-bit data bus with individual DAC latches, providing a versatile control architecture for a simple interface to microprocessors. All latch enable signals are level triggered and speed compatible with most high-performance 8-bit microprocessors.

Semibing has them in stock,for an quick inquiry,please click the red BUTTON. https://www.semibing.com/Inquiry

XC7K325T-2FFG900C,XINLINX,2000pcs in stock.

XC7K325T-2FFG900C

Kintex-7 Product, XC7K325T-2FFG900C Advantage Kintex?-7 FPGAs provide your designs with the best price/performance/watt at 28nm while giving you high DSP ratios, cost-effective packaging, and support for mainstream standards like PCIe? Gen3 and 10 Gigabit Ethernet. The Kintex-7 family is ideal for applications including 3G and 4G wireless, flat panel displays, and video over IP solutions.

XC7K325T-2FFG900C, we have them in stock, as 2000 pieces.

xc7a35t datasheet
Programmable System Integration
Up to 478K logic cells, VCXO component, AXI IP, and AMS integration
Increased System Performance, Up to 32 x 12.5G GTs, 2,845 GMACs, 34Mb BRAM, DDR3-1866, BOM Cost Reduction, Half the price of similar density 40nm devices, Total Power Reduction-50% lower power than previous generation 40nm devices.
Accelerated Design Productivity, Scalable optimized architecture, comprehensive tools, IP and Boards and Kits,

XC7K325T-2FFG900C – FPGA, KIntex-7, MMCM, PLL, 400 I/O, 470,37 MHz, 326080 cell, 970 mV / 1,03 V, FCBGA-900 -3, -2, -1, -1L, -2L speed grade options with 0 to 85°C/0°C to 100°C/-40°C to 100°C temperatures
Programmable system integration, increased system performance, BOM cost reduction
Total power reduction (50% lower power than previous generation 40nm devices)
Accelerated design productivity, scalable optimized architecture, comprehensive tools, and IP State-of-the-art, high performance, low power (HPL), 28nm, high-k metal gate (HKMG) technology
Powerful clock management tiles combining phase-locked loop and mixed-mode clock manager blocks
Lidless flip chip and high-performance flip-chip package options
Kintex?-7 FPGA provides high-speed serial connectivity with built-in multi-gigabit transceivers
User configurable analog interface (XADC), real 6-input lookup table (LUT) technology
High-performance SelectIO? technology with support for DDR3 interfaces up to 1866Mb/s
XC7K325T-2FFG900C Xilinx IC FPGA 500 I/O 900FCBGA Embedded – FPGAs (Field Programmable Gate Array) In-Stock
Manufacturer Part Number: XC7K325T-2FFG900C, Description: IC FPGA 500 I/O 900FCBGA, Lead-Free Status: / RoHS Status: Lead-free/ RoHS Compliant, Moisture Sensitivity Level (MSL): 4 (72 Hours), Product Training Modules: Powering Series 7 Xilinx FPGAs with TI PowerDesign Resources: Development Tool Selector

Base Part Number: XC7K325T-2FFG900C

Cutting Edge Innovation with FPGAs

Artificial intelligence, as it turns out, is just too useful to remain up in the cloud. Demand for local AI processing is increasing as smart devices want the intelligence without the internet connection. Everyone is talking about AI at the Edge and Terasic is no exception. In fact, it’s their theme for this summer’s InnovateFPGA design contest.

Cutting Edge Innovation with FPGAs-semibing.com

FPGA virtues. (Source: Terasic)

Teams from all over the world are currently submitting their project proposals to show off their takes on artificial intelligence. Various cash prizes and Terasic development kits will be awarded to the best projects at the regional and global levels.  The top three teams from each region also receive a trip to Tianjin, China to present their designs at the grand finals during the 2019 International Conference on Field-Programmable Technology.

One of the criteria that teams will be judged on is their demonstration of Intel’s three FPGA virtues. These are the benefits that FPGAs bring to processor systems: boosting performance, adapting to changes, and expanding I/O. With the theme of AI, performance will likely be a big focus as FPGAs outperform traditional processors on the matrix operations common in neural networks, machine vision, and other related applications.

This year’s contest offers developers the choice of two Intel Cyclone V SoC platforms to build their innovative FPGA designs on. The DE10-Nano Kit, the star of last year’s contest, returns and is now accompanied by the new OpenVPN Starter Kit, a PCIe card with nearly 3x the logic elements of the DE10-Nano. Participants are also welcome to use Intel’s OpenVPN deep learning toolkit which just so happens to pair quite well with Terasic’s starter kit of the same name.

Cutting Edge Innovation with FPGAs-semibing.com

OpenVINO Starter Kit block diagram. (Source: Terasic)

For those reading this after the project submission deadline of June 30th, don’t worry. You can still participate without competing. Anyone interested in AI, FPGAs, or just exciting projects can register with InnovateFPGA, as a community member. Each community member can vote for their 3 favorite projects in each of the 4 regions as well as provide comments, and feedback to the competing teams. Voting will occur in two rounds, the first being July 1st-7th with regional finals, being held October 9th-23rd. As a reward for being an active community member, Terasic will hold drawings for two DE10-Nano kits each week of the voting rounds.

Please Visit the InnovateFPGA Portal to register as a community member and start browsing the projects. Use your votes wisely, and make sure your favorite projects make it to the finals!