E0241-653-078C

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The E0241-653-078C hex bolt is crafted from stainless steel, features a thread size of M6, has a length of 30 mm, and offers a tensile strength of 700 MPa. Part of the E0241 MSM Boards series by Okuma, it comes with a plain finish and adheres to the DIN 933 / ISO 4017 standards for quality and reliability.

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Product Description:

The E0241-653-078C IJP Card is a vertical slot in industrial PCB. It processes analog inputs, manages power, and handles logic control using various ICs, passive components and an ADC. It connects via gold-plated edge connectors.

The Okuma E0241-653-078C IJP card is equipped with an ADC80H-AH-12 analog to digital converter from Texas Instruments for data handling. This monolithic 12 bit ADC converts analog sensor outputs into digital data. It enables precise monitoring and control of machine parameters. The board uses a TDK CP-4606 power module. This Japanese made module regulates and delivers power to all onboard components. The card includes multiple 74LS series integrated circuits such as the 74LS244, 74LS373, 74LS32 and 74LS00. These ICs perform digital logic functions including buffering, latching, logic gates and signal routing. Their functions ensure reliable processing of digital signals across various parts of the card. Several passive components including high value resistors like 3.9 MΩ and electrolytic capacitors are used for voltage control and filtering. Variable resistors (VR10K trimpots) are included in the card for fine calibration during setup or maintenance. These allow precise tuning of circuit parameters depending on application needs.

The E0241-653-078C IJP card features a robust vertical form factor for backplane installation. It has a gold plated edge connector for stable and corrosion resistant electrical contact. This allows easy interfacing with a host system. The card also includes multiple mounting holes for secure enclosure installation. These holes help with vibration resistance in industrial environments. Its PCB layout supports clear signal path separation that aids in noise reduction and thermal management. The card’s build and component placement support high reliability and long operational life. Every component is arranged to facilitate heat dissipation and quick diagnostics.

Drive Type
Hex
Finish
Plain
Grade
A2-70
Head Type
Hex
Length
30 mm
Material
Stainless Steel
Standard
DIN 933 / ISO 4017
Tensile Strength
700 MPa
Thread Pitch
1.0 mm
Thread Size
M6
Type
Hex Bolt

Frequently Asked Questions about E0241-653-078C:

Q: How does the E0241-653-078C IJP card allow adjustments for changing application requirements?

A: It includes VR10K trimpots for fine parameter calibration in varying setups. These allow tuning without external tools or rewiring.

Q: Does the E0241-653-078C IJP card maintain accuracy in analog to digital conversion during continuous operations?

A: Yes, it uses the ADC80H-AH-12 from Texas Instruments which is a monolithic 12 bit ADC. It ensures stable digital conversion from analog signals even in high-demand environments.

Q: How does the Okuma E0241-653-078C IJP card manage logic signals in complex control systems?

A: It uses 74LS series ICs including 74LS244 74LS373 74LS32 and 74LS00 for core logic tasks. These handle signal routing buffering and latching without instability.

Q: Will the E0241-653-078C IJP card maintain power stability in fluctuating input conditions?

A: The card uses the Japanese built TDK CP-4606 power module for precise power regulation. It delivers constant voltage to all components during runtime.

Q: Can the Okuma E0241-653-078C IJP card resist industrial vibration and thermal stress?

A: Yes, it has a vertical slot build with multiple mounting holes for strong enclosure fit. Its component layout supports noise isolation and heat dissipation.


Internal Product Review

  • ‘‘The Okuma E0241-653-078C IJP card features a 12 bit ADC80H-AH-12 for precision conversion, 74LS series ICs for stable logic control and 3.9 MΩ resistors for voltage management. Its gold plated connector enhances conductivity. The vertical PCB layout of the card aids thermal efficiency.’’

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