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PVZ3G103C01R02 Datasheet with Chat AI
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  • # Example questions: ➢ What is the pre-heating temperature specified in 'table 3' within the document?
    ➢ What is the difference between the part numbers ending in 'b00' and 'r00'?
    ➢ If a customer provides a part number 'pvz3g472c01b00', what is the corresponding murata part number?

  • Part No.PVZ3G103C01R02
    ManufacturerMURATA
    Size191 Kbytes
    Pages12 pages
    DescriptionTRIMMER POTENTIOMETER
    Datasheet Summary with AI

    1. Part Number Cross-Reference & Equivalency

    ️· Customer Part Number: A list of part numbers used by the customer (VESSEL MFG).
    ️· Murata Part Number: Corresponding Murata part numbers. There are three different sets:
    - PVZ3GXXXXC01B00
    - PVZ3GXXXXC01R00
    - PVZ3GXXXXC01R02

    Where "X" represents a variable, denoting the resistance value (e.g., 22 for 22k ohms, 33 for 33k ohms).

    2. Resistance Values & Coding

    ️· The final two digits of the Murata part number (after the 'G' and before the 'C' or 'R') indicate the resistance value in ohms.
    - 22 = 22kΩ
    - 33 = 33kΩ
    - 47 = 47kΩ
    - 68 = 68kΩ
    - 102 = 102kΩ (100kΩ)
    - 15 = 15kΩ
    - 03 = 3kΩ
    - 23 = 23kΩ
    - 53 = 53kΩ
    - 63 = 63kΩ
    - 14 = 14kΩ
    - 04 = 4kΩ
    - 24 = 24kΩ
    - 54 = 54kΩ
    - 64 = 64kΩ

    3. Technical Specifications (Based on Scattered References)

    ️· Pre-heating & Soldering Profiles: Multiple tables describe pre-heating, soldering, and reflow temperature profiles. These are crucial for proper manufacturing and avoiding damage to the potentiometer.
    - Pre-heating temperatures typically range from 130-180°C.
    - Soldering temperatures generally around 200-220°C.
    - Reflow peak temperatures up to 260°C.
    ️· Mechanical Dimensions: A few references exist to dimensions (e.g., 3.3±0.1), but specific dimensions are not consistently defined across the document.
    ️· Material: The data does not specify the materials used in the potentiometers.
    ️· Other Customers: VESSEL MFG is listed. Possibly other customers parts.

    4. Tables and Lists
    ️· Table 3: Contains preheating, soldering, and reflow parameters
    ️· Table 4: Alternative reflow profiles
    ️· List of Murata Part Numbers: A very long list of Murata part numbers mapped to VESSEL MFG part numbers.

    Important Notes and Caveats:

    ️· Incomplete Data: This is likely an excerpt from a larger datasheet. It lacks critical information such as:
    - Mechanical dimensions (overall size, shaft length, etc.).
    - Electrical characteristics (power rating, voltage rating, tapability, linearity).
    - Operating temperature range.
    - Lifetime / reliability data.
    ️· Context is Key: Without knowing the purpose of this document, it's difficult to interpret all of it.
    ️· Resistance Value Interpretation: The resistance values decoded from the part number are based on a pattern detected within the data. Double-check against an official datasheet to verify.
    ️· Manufacturing Process: The provided profiles are *critical* for the customer using these potentiometers. Deviating from these profiles can lead to failures.
    ️· Three Variants (B00, R00, R02): The differences between the three suffixes (B00, R00, and R02) is *not* explained in the document. They likely represent slightly different constructions or revisions of the same basic potentiometer, but the specifics are unavailable here.
    ️· Layout and Table Confusion: The document is not consistently formatted, making it challenging to extract all information in a precise, organized fashion.

    1. Part Number Cross-Reference & Equivalency

    ️· Customer Part Number: A list of part numbers used by the customer (VESSEL MFG).
    ️· Murata Part Number: Corresponding Murata part numbers. There are three different sets:
    - PVZ3GXXXXC01B00
    - PVZ3GXXXXC01R00
    - PVZ3GXXXXC01R02

    Where "X" represents a variable, denoting the resistance value (e.g., 22 for 22k ohms, 33 for 33k ohms).

    2. Resistance Values & Coding

    ️· The final two digits of the Murata part number (after the 'G' and before the 'C' or 'R') indicate the resistance value in ohms.
    - 22 = 22kΩ
    - 33 = 33kΩ
    - 47 = 47kΩ
    - 68 = 68kΩ
    - 102 = 102kΩ (100kΩ)
    - 15 = 15kΩ
    - 03 = 3kΩ
    - 23 = 23kΩ
    - 53 = 53kΩ
    - 63 = 63kΩ
    - 14 = 14kΩ
    - 04 = 4kΩ
    - 24 = 24kΩ
    - 54 = 54kΩ
    - 64 = 64kΩ

    3. Technical Specifications (Based on Scattered References)

    ️· Pre-heating & Soldering Profiles: Multiple tables describe pre-heating, soldering, and reflow temperature profiles. These are crucial for proper manufacturing and avoiding damage to the potentiometer.
    - Pre-heating temperatures typically range from 130-180°C.
    - Soldering temperatures generally around 200-220°C.
    - Reflow peak temperatures up to 260°C.
    ️· Mechanical Dimensions: A few references exist to dimensions (e.g., 3.3±0.1), but specific dimensions are not consistently defined across the document.
    ️· Material: The data does not specify the materials used in the potentiometers.
    ️· Other Customers: VESSEL MFG is listed. Possibly other customers parts.

    4. Tables and Lists
    ️· Table 3: Contains preheating, soldering, and reflow parameters
    ️· Table 4: Alternative reflow profiles
    ️· List of Murata Part Numbers: A very long list of Murata part numbers mapped to VESSEL MFG part numbers.

    Important Notes and Caveats:

    ️· Incomplete Data: This is likely an excerpt from a larger datasheet. It lacks critical information such as:
    - Mechanical dimensions (overall size, shaft length, etc.).
    - Electrical characteristics (power rating, voltage rating, tapability, linearity).
    - Operating temperature range.
    - Lifetime / reliability data.
    ️· Context is Key: Without knowing the purpose of this document, it's difficult to interpret all of it.
    ️· Resistance Value Interpretation: The resistance values decoded from the part number are based on a pattern detected within the data. Double-check against an official datasheet to verify.
    ️· Manufacturing Process: The provided profiles are *critical* for the customer using these potentiometers. Deviating from these profiles can lead to failures.
    ️· Three Variants (B00, R00, R02): The differences between the three suffixes (B00, R00, and R02) is *not* explained in the document. They likely represent slightly different constructions or revisions of the same basic potentiometer, but the specifics are unavailable here.
    ️· Layout and Table Confusion: The document is not consistently formatted, making it challenging to extract all information in a precise, organized fashion.

    Part No.PVZ3G103C01R02
    ManufacturerMURATA
    Size191 Kbytes
    Pages12 pages
    DescriptionTRIMMER POTENTIOMETER
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