Attribute
Description
Manufacturer Part Number
EXB-F6E474G
Description
RES ARRAY 5 RES 470K OHM 6SIP
Manufacturer Lead Time
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Product Attributes

Type Description
Category
Import Duty Classification -
Product Series Line EXB
IC Encapsulation Type Bulk
Availability Status Obsolete
Circuit Configuration Style Bussed
Ohm Value Specification 470k
Accuracy Tolerance Percentage ±2%
Resistor Component Total 5
Resistor Pair Balance -
Ratio Stability Over Time -
IC Pin Total 6
Wattage per Component 125mW
Temp Drift Factor ±200ppm/°C
Ambient Temp Range -55°C ~ 125°C
Quality Grade Level -
Certification Qualification -
Intended Uses -
Attachment Mounting Style Through Hole
Component Housing Style 6-SIP
Vendor Package Type 6-SIP
Package Size Specs 0.586" L x 0.100" W (14.88mm x 2.54mm)
Maximum Mounted Height 0.195" (4.95mm)

Description

Employs a circuit variation identified as Bussed. Maximum installed height of 0.195" (4.95mm) for components affixed to the board. Mounting configuration Through Hole for structural stability. Overall number of pins 6 for connectors or integrated circuits. Overall total of resistors 5 for circuit design purposes. Temperature range -55°C ~ 125°C for environmental conditions impacting thermal efficiency. Type of housing Bulk for safeguarding or transporting components. Style of the enclosure/case 6-SIP that offers mechanical and thermal protection. Type of package 6-SIP that preserves the integrity of the device. Energy per unit 125mW for evaluating modular systems. Product status Obsolete concerning availability and lifecycle. Ohmic resistance value 470k for accurate electrical information. Classification series for the product or component EXB. Details on package size 0.586" L x 0.100" W (14.88mm x 2.54mm) for electrical or mechanical components. Measurement dimensions 0.586" L x 0.100" W (14.88mm x 2.54mm) for component specifications. Supplier package type 6-SIP for component selection. The temperature drift factor ±200ppm/°C that guarantees performance consistency. Precision tolerance level ±2% in manufacturing processes.