Infineon Technologies_PEB 3265 H V1.5
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Infineon Technologies
PEB 3265 H V1.5

702-PEB 3265 H V1.5
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IC TELECOM INTERFACE MQFP-64

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Tech Specifications

Operating Temperature
0°C ~ 70°C
ECCN
EAR99
Mounting Type
Surface Mount
Current - Supply
105mA
Product Status
Obsolete
Supplier Device Package
P-MQFP-64-1
Series
DuSLIC
Function
Dual Channel Subscriber Line Interface Circuit (DuSLIC)
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PEB 3265 H V1.5 Description

PEB 3265 H V1.5 Description

The PEB 3265 H V1.5 is a Dual Channel Subscriber Line Interface Circuit (DuSLIC) designed by Infineon Technologies, a leading manufacturer in the electronics industry. This interface IC chip is part of the DuSLIC series and is housed in a MQFP-64 package. It is designed for surface mount applications and operates within a temperature range of 0°C to 70°C. The PEB 3265 H V1.5 is powered by a 3.3V supply voltage and draws a supply current of 105mA. Although it is now considered obsolete, this IC remains a significant component in the realm of telecommunications interface solutions.

PEB 3265 H V1.5 Features

The PEB 3265 H V1.5 boasts several key features that set it apart from other interface IC chips in the market:

  • Dual Channel Capability: This IC provides dual channel functionality, allowing for efficient handling of two separate subscriber lines. This dual-channel design enhances the capacity and efficiency of telecommunications systems.
  • Surface Mount Technology: The surface mount mounting type ensures ease of integration into modern printed circuit boards (PCBs), facilitating compact and reliable designs.
  • Low Operating Temperature Range: With an operating temperature range of 0°C to 70°C, the PEB 3265 H V1.5 is suitable for a wide range of environmental conditions, making it versatile for various applications.
  • Low Supply Current: Drawing only 105mA of supply current, this IC is energy-efficient, which is crucial for applications where power consumption is a concern.
  • 3.3V Supply Voltage: The 3.3V supply voltage ensures compatibility with modern low-power systems, further enhancing its suitability for contemporary electronic designs.
  • Moisture Sensitivity Level (MSL) 3: With an MSL of 3 (168 hours), the PEB 3265 H V1.5 is designed to withstand moderate levels of moisture, ensuring reliability in humid environments.
  • Compliance with REACH: The PEB 3265 H V1.5 is REACH unaffected, ensuring compliance with environmental and health regulations, which is essential for global market acceptance.

PEB 3265 H V1.5 Applications

The PEB 3265 H V1.5 is ideal for a variety of telecommunications applications due to its dual-channel capability and efficient design. Specific use cases include:

  • Telecommunication Equipment: Ideal for use in telephone exchanges, PBX systems, and other telecommunication infrastructure where dual-channel subscriber line interface circuits are required.
  • VoIP Systems: The PEB 3265 H V1.5 can be integrated into Voice over Internet Protocol (VoIP) systems to provide reliable and efficient voice transmission.
  • Modem Design: Suitable for use in modem designs where dual-channel functionality is necessary for handling multiple voice or data lines.
  • Industrial Communication Systems: Given its robustness and compliance with environmental regulations, this IC is well-suited for industrial communication systems that require reliable and efficient interface solutions.

Conclusion of PEB 3265 H V1.5

The PEB 3265 H V1.5, despite being obsolete, remains a notable product in the field of telecommunications interface IC chips. Its dual-channel functionality, surface mount design, and low operating temperature range make it a versatile and efficient solution for various applications. The low supply current and 3.3V supply voltage ensure compatibility with modern low-power systems, while its compliance with REACH regulations ensures its suitability for global markets. Although newer models may have replaced it in many applications, the PEB 3265 H V1.5 continues to offer reliable performance and remains a valuable component in legacy systems and specific use cases where its unique features are still highly beneficial.

FAQ

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