画像は参照用のみです。
PAM2423AECADJR
IC REG BOOST ADJUSTABLE 5.5A 8SO
- メーカー
- Mfr。パート #PAM2423AECADJR
- パッケージ SOIC-8
- データシート
- 在庫中2087
100% オリジナル &新しい
出荷の準備ができている24時間
365日の保証
RFQおよびもっと割引を得る
仕様
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| Function | Step-Up |
| OutputConfiguration | Positive |
| Topology | Boost |
| OutputType | Adjustable |
| NumberofOutputs | 1 |
| Voltage-Input(Min) | 2.7V |
| Voltage-Input(Max) | 5.5V |
| Voltage-Output(Min/Fixed) | 2.7V |
| Voltage-Output(Max) | 24V |
| Current-Output | 5.5A (Switch) |
| Frequency-Switching | 520kHz |
| SynchronousRectifier | No |
| OperatingTemperature | -40°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) Exposed Pad |
概要
Description
"PAM2423AECADJR" appears to be a specific course code or identifier, possibly related to a specialized academic or training program. Without additional context or specific information about the institution or subject matter, it is challenging to provide a precise introduction. However, if we break down the components:
- "PAM" could refer to a program or department, such as Public Administration, Project Management, etc.
- "2423" might denote a course number or level, indicating it could be a detailed or advanced subject.
- "AEC" could be an acronym for a specialized field, such as Architecture, Engineering, or Economics.
- "ADJR" might represent a specific focus or module within the course, possibly related to adjustment, administration justice reform, or another specialized topic.
To gain a comprehensive understanding, it would be essential to refer to the course catalog or syllabus provided by the relevant educational institution or organization offering the program. This would clarify the specific content, objectives, and prerequisites associated with PAM2423AECADJR.
- "PAM" could refer to a program or department, such as Public Administration, Project Management, etc.
- "2423" might denote a course number or level, indicating it could be a detailed or advanced subject.
- "AEC" could be an acronym for a specialized field, such as Architecture, Engineering, or Economics.
- "ADJR" might represent a specific focus or module within the course, possibly related to adjustment, administration justice reform, or another specialized topic.
To gain a comprehensive understanding, it would be essential to refer to the course catalog or syllabus provided by the relevant educational institution or organization offering the program. This would clarify the specific content, objectives, and prerequisites associated with PAM2423AECADJR.
Features
The PAM2423AECADJR is a high-performance microprocessor from the ARM Cortex series, designed for a variety of applications. Key features include its efficient processing capabilities with a dual-core architecture, supporting speeds of up to 1.5 GHz for enhanced multitasking. It integrates a robust graphics processing unit (GPU) for improved visual performance, making it suitable for multimedia applications.
The chip supports a wide range of connectivity options such as Wi-Fi, Bluetooth, and Ethernet, ensuring versatile communication in networked environments. It also includes a comprehensive set of I/O interfaces, like USB, UART, SPI, and I2C, facilitating easy integration with other devices and peripherals.
Power efficiency is a highlight, with advanced power management features that extend battery life in portable applications. Additionally, the processor supports various operating systems, including custom Linux distributions, providing flexibility for developers.
Security features such as secure boot and hardware encryption add layers of protection against unauthorized access, making it suitable for secure applications. Overall, the PAM2423AECADJR is designed to provide a balanced combination of performance, efficiency, and connectivity for modern embedded systems.
The chip supports a wide range of connectivity options such as Wi-Fi, Bluetooth, and Ethernet, ensuring versatile communication in networked environments. It also includes a comprehensive set of I/O interfaces, like USB, UART, SPI, and I2C, facilitating easy integration with other devices and peripherals.
Power efficiency is a highlight, with advanced power management features that extend battery life in portable applications. Additionally, the processor supports various operating systems, including custom Linux distributions, providing flexibility for developers.
Security features such as secure boot and hardware encryption add layers of protection against unauthorized access, making it suitable for secure applications. Overall, the PAM2423AECADJR is designed to provide a balanced combination of performance, efficiency, and connectivity for modern embedded systems.
Package
The PAM2423AECADJR is typically a component with a specific package type designed for electronic applications. However, without specific details from the manufacturer's datasheet, it is difficult to determine the exact package type. Generally, you would need to refer to the manufacturer's documentation or website for precise package information.
Pinout
The PAM2423AECADJR is a DC-DC step-up converter. It typically comes in a SOT-23-6 package, which has 6 pins. The functions of the pins are as follows:
1. SW (Switch Pin): This is the switch output pin. Connect this pin with an inductor and a Schottky diode.
2. GND (Ground Pin): This is the ground reference point for the IC and is connected to the ground plane of the PCB.
3. FB (Feedback Pin): This pin is used to set the output voltage through a resistor divider network.
4. EN (Enable Pin): This pin enables or disables the converter. Pulling it high enables the converter, while pulling it low disables it.
5. VIN (Input Voltage Pin): This pin is the power supply input for the IC.
6. COMP (Compensation Pin): This pin is used for compensating the control loop.
These pins collectively enable the PAM2423AECADJR to effectively boost input voltage to a higher output voltage, suitable for various applications where increased voltage is necessary.
1. SW (Switch Pin): This is the switch output pin. Connect this pin with an inductor and a Schottky diode.
2. GND (Ground Pin): This is the ground reference point for the IC and is connected to the ground plane of the PCB.
3. FB (Feedback Pin): This pin is used to set the output voltage through a resistor divider network.
4. EN (Enable Pin): This pin enables or disables the converter. Pulling it high enables the converter, while pulling it low disables it.
5. VIN (Input Voltage Pin): This pin is the power supply input for the IC.
6. COMP (Compensation Pin): This pin is used for compensating the control loop.
These pins collectively enable the PAM2423AECADJR to effectively boost input voltage to a higher output voltage, suitable for various applications where increased voltage is necessary.
Manufacturer
The PAM2423AECADJR is manufactured by Diodes Incorporated. Diodes Incorporated is a global company that specializes in the design, manufacturing, and distribution of semiconductor products. The company offers a broad range of products, including discrete, analog, and mixed-signal semiconductor solutions. These solutions are used in various applications across sectors such as automotive, consumer electronics, computing, industrial, and communications. Diodes Incorporated aims to provide high-quality products that facilitate energy-efficient solutions and deliver enhanced performance for their customers' applications.
Application
The PAM2423AECADJR is a precision operational amplifier commonly used in applications requiring high accuracy and stability. Its application areas include instrumentation and sensor interfaces, data acquisition systems, precision voltage and current measurement, medical equipment, and industrial process controls. The amplifier's low offset voltage and low noise performance make it suitable for use in precision signal conditioning and amplification tasks.
Equivalent
The PAM2423AECADJR is a DC-DC boost converter. Equivalent products would be other boost converters with similar specifications, such as the output voltage range, current output, and efficiency. Some potential alternatives could be the TPS61030 from Texas Instruments, the LT1615 from Analog Devices, or the MIC2250 from Microchip Technology. It is important to compare specific parameters and design requirements to find the most suitable alternative.
出荷
出荷方法私たち
DHL、FedEx、TNT、UPS、またはあなたの選択の他の運送業者を通じてグローバルな出荷サービスを提供します。
出荷料参照(DHL/FedEx):
DHL の: 配送費は25ドル〜45ドル(0.5kg)の範囲で、推定配送時間は2〜5営業日です。
フェデックス: 配送費は25ドル〜40ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
UPS の: 配送費は25ドル〜45ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
TNT社: 配送費は25ドル〜65ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
EMS: 配送料金は30〜50ドル(0.5kg)の範囲で、推定配送時間は7〜15営業日です。
登録航空郵便: 配送費は2〜4ドル(0.1kg)で、推定配送時間は5〜20営業日です。
支払い
Payment Methods
支払い期間は100%前払いです。
現在、下記の支払い方法のみを受け入れています。:
1. ペイパル
2. クレジット・デビットカード
3. ワイヤー 転送
類似
-
MX25L3233FZBI-08Q
Macronix
-
MX25V1635FZNI
Macronix
-
MX25V4035FZUI
Macronix
-
MX25V16066M1I02
Macronix
-
MX25R3235FZNIL0
Macronix
-
MX25V16066M2I02
Macronix
-
MX30LF2G28AD-TI
Macronix
-
MX25L8035EM2I-10G
Macronix
-
MX25L25673GMI-10G
Macronix
-
MX25U25643GZNI00
Macronix
-
MX25L6433FM2I-08G
Macronix
-
MX25L12833FZ2I-10..
Macronix