E4809-436-016-D
Wake Industrial LLC is not an authorized distributor of this product.
No Tariffs On US Orders- Straightforward Pricing: No Rush Fees, No Credit Card Fees
-
Available
The E4809-436-016-D OPUS 5000 II SVP Board by Okuma integrates advanced microprocessors like SVPB3028U/L, custom ASICs, and FPGAs for efficient signal processing. It features toroidal inductors, electrolytic capacitors, and resistor arrays for power regulation and precise current control. Gold-plated edge connectors ensure reliable interfacing.
To contact sales for pricing and lead time:
Payment Methods
Shipping Methods
Our Credentials
Product Description:
The E4809-436-016-D OPUS 5000 II SVP Board is a multi layered printed circuit board (PCB) designed for industrial automation applications. It integrates various processing, power and interface components for seamless functionality. This board features gold plated edge connectors for reliable interfacing and is securely mounted using screws and metal brackets.
The E4809-436-016-D OPUS 5000 II SVP board incorporates advanced microprocessors and memory chips including SVPB3028U and SVPB3028L which handle processing and memory management. It includes custom ASICs and FPGAs for efficient signal processing. Various logic chips such as Octal D-type Flip-Flops, Binary Counters, 4 bit Counters, Serial in Parallel out Shift Registers and Logic Gates support digital operations. This board is equipped with toroidal inductors for power regulation along with electrolytic and ceramic capacitors for voltage stabilization. Resistor arrays are integrated in this board for precise current control. The interface section includes DIP packaged ICs that manage digital signal processing and data communication that ensures accurate signal transmission and compatibility with other system components. This board is engineered to provide reliable operation under various conditions for critical automation and processing applications.
This Okuma E4809-436-016-D OPUS 5000 II SVP board features multiple connector types including dual row connectors, a box type connector with ribbon cable attachments and edge based interfacing ports. These connectors facilitate secure and efficient communication with external modules. The combination of high quality power components, logic chips and processing units ensures optimal performance in industrial control systems. Wake Industrial provides this product with a comprehensive replacement warranty to ensure peace of mind for customers. This warranty covers any manufacturing defects or malfunctions and is valid for a period of one year from the date of purchase.
Frequently Asked Questions about E4809-436-016-D:
Q: What are the key components of the E4809-436-016-D OPUS 5000 II SVP Board?
A: The E4809-436-016-D OPUS 5000 II SVP Board integrates microprocessors, memory chips, custom ASICs, FPGAs, and various logic chips. It also includes capacitors and resistor arrays for voltage stabilization and current control.
Q: How does the E4809-436-016-D OPUS 5000 II SVP Board handle power regulation?
A: The board utilizes toroidal inductors for efficient power regulation. Electrolytic and ceramic capacitors are also incorporated to stabilize voltage, ensuring reliable operation in industrial control systems.
Q: What type of connectors does the E4809-436-016-D OPUS 5000 II SVP Board use for external communication?
A: The board features multiple connectors, including dual row connectors, a box-type connector with ribbon cable attachments, and edge-based interfacing ports. These connectors ensure secure communication with external modules.
Q: How is the E4809-436-016-D OPUS 5000 II SVP Board mounted and interfaced in industrial applications?
A: The board is securely mounted using screws and metal brackets. It has gold-plated edge connectors for reliable interfacing, ensuring a stable connection in industrial automation setups.
Q: What logic components are integrated into the E4809-436-016-D OPUS 5000 II SVP Board for digital operations?
A: The board includes Octal D-type Flip-Flops, Binary Counters, 4-bit Counters, Serial-in Parallel-out Shift Registers, and Logic Gates. These components support efficient digital signal processing and data communication.