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MIC5841YWM
IC PWR DRIVER BIPOLAR 1:8 18SOP
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- Mfr。パート #MIC5841YWM
- パッケージ SOIC-18
- データシート MIC5841YWM DataSheet
- 在庫中5690
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仕様
| Package | Tube |
| ProductStatus | Active |
| SwitchType | Latched Driver |
| NumberofOutputs | 8 |
| Ratio-Input:Output | 1:8 |
| OutputConfiguration | Low Side |
| OutputType | Bipolar |
| Interface | Strobe, Serial |
| Voltage-Load | 15V (Max) |
| Current-Output(Max) | 500mA |
| InputType | Non-Inverting |
| OperatingTemperature | -55°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| SupplierDevicePackage | 18-SOP (Wide) |
概要
Description
The MIC5841YWM is an integrated circuit (IC) designed for use as a serial-input latched driver. It is commonly used in applications that require high-voltage and high-current outputs, such as driving LED displays, relays, solenoids, or other inductive loads. The device contains an 8-bit serial-in, parallel-out shift register that can interface directly with microprocessors or microcontrollers for control purposes.
Key features of the MIC5841YWM include:
1. High-Voltage Outputs: It can handle output voltages up to 60V, making it suitable for driving various high-voltage components.
2. Current Capability: It provides output current up to 500mA per channel, allowing it to drive larger loads.
3. Serial Interface: The serial input and output allow for easy cascading of multiple ICs for expanded capability without additional I/O pins.
4. Latch Functionality: The addition of latches ensures that the data output remains stable and immune to changes in input data until the latch is updated.
This IC is available in a 16-pin small-outline integrated circuit (SOIC) package, facilitating compact PCB designs. It finds common use in industrial and consumer electronics where robust, efficient, and scalable driver solutions are required.
Key features of the MIC5841YWM include:
1. High-Voltage Outputs: It can handle output voltages up to 60V, making it suitable for driving various high-voltage components.
2. Current Capability: It provides output current up to 500mA per channel, allowing it to drive larger loads.
3. Serial Interface: The serial input and output allow for easy cascading of multiple ICs for expanded capability without additional I/O pins.
4. Latch Functionality: The addition of latches ensures that the data output remains stable and immune to changes in input data until the latch is updated.
This IC is available in a 16-pin small-outline integrated circuit (SOIC) package, facilitating compact PCB designs. It finds common use in industrial and consumer electronics where robust, efficient, and scalable driver solutions are required.
Features
The MIC5841YWM is a high-voltage, high-current peripheral driver commonly used in applications requiring a high level of reliability and performance. Key features include:
1. High Voltage Tolerance: Capable of handling output voltages up to 50V, making it suitable for various demanding applications.
2. High Current Output: Can deliver continuous output currents, typically supporting up to 500mA per channel.
3. Serial Input Control: Features an 8-bit serial input controlled shift register, allowing for efficient and precise control of outputs.
4. Latch Functionality: Includes an output latch for each of the outputs, which helps in maintaining the output state.
5. Output Clamp Diodes: Built-in output clamp diodes are provided for switching inductive loads, enhancing reliability.
6. Daisy-Chaining Capability: Supports daisy-chaining of multiple devices, which is useful for expanding the number of controlled outputs in larger systems.
7. Wide Range of Applications: Suitable for driving displays, relays, solenoids, and other high-power devices in industrial and automotive applications.
8. Compact Packaging: Available in a 18-pin SOIC-W package, facilitating easy integration into space-constrained designs.
This combination of features makes the MIC5841YWM a robust choice for interface solutions in high-power electronic systems.
1. High Voltage Tolerance: Capable of handling output voltages up to 50V, making it suitable for various demanding applications.
2. High Current Output: Can deliver continuous output currents, typically supporting up to 500mA per channel.
3. Serial Input Control: Features an 8-bit serial input controlled shift register, allowing for efficient and precise control of outputs.
4. Latch Functionality: Includes an output latch for each of the outputs, which helps in maintaining the output state.
5. Output Clamp Diodes: Built-in output clamp diodes are provided for switching inductive loads, enhancing reliability.
6. Daisy-Chaining Capability: Supports daisy-chaining of multiple devices, which is useful for expanding the number of controlled outputs in larger systems.
7. Wide Range of Applications: Suitable for driving displays, relays, solenoids, and other high-power devices in industrial and automotive applications.
8. Compact Packaging: Available in a 18-pin SOIC-W package, facilitating easy integration into space-constrained designs.
This combination of features makes the MIC5841YWM a robust choice for interface solutions in high-power electronic systems.
Package
The MIC5841YWM is typically available in a 20-lead SOIC (Small Outline Integrated Circuit) package. This type of package is surface-mountable, making it suitable for modern printed circuit board (PCB) designs.
Pinout
The MIC5841YWM is an integrated circuit used for driving high-current loads. It is an 8-bit serial-input latched driver with high-voltage outputs, typically used for driving LEDs, relays, or other inductive loads. The device comes in a 16-pin SOIC (Small Outline Integrated Circuit) package.
The pin functions are as follows:
1. GND: Ground.
2. SERIAL IN: Serial data input.
3. CLOCK: Clock input for shifting data.
4. LATCH ENABLE: Latch enable input.
5. OUT1: Output 1.
6. OUT2: Output 2.
7. OUT3: Output 3.
8. OUT4: Output 4.
9. OUT5: Output 5.
10. OUT6: Output 6.
11. OUT7: Output 7.
12. OUT8: Output 8.
13. VBB: Supply voltage for outputs.
14. BLANKING: Blanking input (disables all outputs when active).
15. STROBE: Strobe input.
16. SERIAL OUT: Serial data output.
Each output can sink up to 500 mA, making the MIC5841YWM suitable for a variety of high-current applications.
The pin functions are as follows:
1. GND: Ground.
2. SERIAL IN: Serial data input.
3. CLOCK: Clock input for shifting data.
4. LATCH ENABLE: Latch enable input.
5. OUT1: Output 1.
6. OUT2: Output 2.
7. OUT3: Output 3.
8. OUT4: Output 4.
9. OUT5: Output 5.
10. OUT6: Output 6.
11. OUT7: Output 7.
12. OUT8: Output 8.
13. VBB: Supply voltage for outputs.
14. BLANKING: Blanking input (disables all outputs when active).
15. STROBE: Strobe input.
16. SERIAL OUT: Serial data output.
Each output can sink up to 500 mA, making the MIC5841YWM suitable for a variety of high-current applications.
Manufacturer
The MIC5841YWM is manufactured by Microchip Technology Inc. Microchip Technology is a publicly traded American company that specializes in the production of microcontroller, mixed-signal, analog, and Flash-IP integrated circuits. The company offers a wide range of products used in various applications, including automotive, industrial, consumer electronics, and communications. Microchip is known for its focus on providing solutions that enable embedded control applications.
Application
The MIC5841YWM is a high-voltage, high-current Darlington transistor array with integrated flyback diodes, commonly used for driving a variety of loads. Its application areas include driving LED displays, relays, solenoids, and small DC motors. It is often utilized in industrial and consumer electronics for automation and control systems, thanks to its ability to interface with TTL and CMOS logic levels. Its robust design makes it suitable for use in environments requiring reliable operation of inductive loads.
Equivalent
The MIC5841YWM is an eight-channel latched driver, similar to the Texas Instruments TPIC6B595 and Allegro Microsystems A6821. These chips serve similar functions, driving high-current devices from low-current control signals. However, while they share similar functionalities, differences in specific electrical characteristics and package types may necessitate detailed comparisons to ensure compatibility in a given application.
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