Terminal Blocks - Accessories - Marker Strips

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1SNK156041R0000

1SNK156041R0000

TE Connectivity's Sigma Inductors

SNK PRE-PRINTED

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1SNK146142R0000

1SNK146142R0000

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1SNK168011R0000

1SNK168011R0000

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1SNK158051R0000

1SNK158051R0000

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4

1SNK158111R0000

1SNK158111R0000

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1SNK166081R0000

1SNK166081R0000

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20

1SNK146032R0000

1SNK146032R0000

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1SNK150032R0000

1SNK150032R0000

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1SNK149001R0000

1SNK149001R0000

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1SNK168202R0000

1SNK168202R0000

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20

1SNK167092R0000

1SNK167092R0000

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20

1SNK165092R0000

1SNK165092R0000

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1SNK146251R0000

1SNK146251R0000

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1SNK160172R0000

1SNK160172R0000

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SNK PRE-PRINTED

20

1SNK166011R0000

1SNK166011R0000

TE Connectivity's Sigma Inductors

SNK PRE-PRINTED

20

1SNK160142R0000

1SNK160142R0000

TE Connectivity's Sigma Inductors

SNK PRE-PRINTED

20

1SNK148011R0000

1SNK148011R0000

TE Connectivity's Sigma Inductors

SNK PRE-PRINTED

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1SNK150162R0000

1SNK150162R0000

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25

1SNK150202R0000

1SNK150202R0000

TE Connectivity's Sigma Inductors

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1SNK147051R0000

1SNK147051R0000

TE Connectivity's Sigma Inductors

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Terminal Blocks - Accessories - Marker Strips

1. Overview

Marker strips (also known as terminal markers or identification strips) are essential components in electrical systems for labeling and organizing terminal blocks. These accessories provide visual identification of connections through alphanumeric codes, color codes, or graphic symbols. Their importance in modern technology lies in enhancing system maintainability, reducing wiring errors, and improving safety in complex electrical installations.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Printed Marker StripsLaser-printable materials with high-resolution textCustom labeling in PLC control cabinets
Pre-printed Number StripsSequential numbering (01-99) with UV resistanceStandardized industrial control panels
Color-coded StripsMulti-color bands for circuit group identificationPower distribution systems
Rotary Marker DiscsAdjustable 360 rotating labeling systemHigh-density terminal blocks in automation
Thermal Transfer StripsHeat-resistant marking for harsh environmentsAutomotive manufacturing lines

3. Structure and Composition

Typical marker strips consist of three primary components: 1. Base material (usually flame-retardant polypropylene or polycarbonate) 2. Marking layer (ink-receptive coating for printing) 3. Fixing mechanism (snap-on clips or adhesive backing) Standard dimensions range from 4.8mm to 15mm width with thickness of 0.8-1.2mm. The surface features anti-glare texture for improved readability.

4. Key Technical Specifications

ParameterTypical ValueImportance
Operating Temperature-40 C to +120 CDetermines environmental suitability
Voltage Resistance500V AC/DCSafety insulation level
Material Flame ClassUL94 V-0Fire safety compliance
Marking Durability10+ years legibilitySystem maintenance reliability
Mechanical Lifespan5000+ insertion cyclesCost-effectiveness in dynamic systems

5. Application Fields

Major application areas include: - Industrial automation systems - Power distribution equipment - Telecommunication infrastructure - Transportation control systems - Building management installations

Typical equipment examples: PLC control cabinets, switchgear panels, railway signaling systems, HVAC controllers, and renewable energy inverters.

6. Leading Manufacturers and Products

ManufacturerKey Product SeriesTechnical Highlights
Phoenix ContactMKDS seriesModular design with tool-less marking
Weidm llerID-SL seriesColor-coded strips with tactile feedback
TE ConnectivityAMPTRAC seriesHigh-temperature resistant (150 C)
WAGO234 seriesVibration-proof locking mechanism
OMRONV6-TB seriesAnti-reflective surface coating

7. Selection Guidelines

Key selection factors: 1. Environmental conditions (temperature, humidity, UV exposure) 2. Terminal block pitch compatibility (5.08mm, 7.62mm, etc.) 3. Marking method requirements (pre-printed vs. on-site printing) 4. Flame retardancy level (UL, IEC standards) 5. Color coding system (standardized industry schemes) 6. Mechanical durability requirements

8. Industry Trends Analysis

Current development trends include: - Miniaturization for compact electronics packaging - Integration of RFID chips for smart identification - Adoption of eco-friendly materials (halogen-free polymers) - Development of anti-counterfeit marking technologies - Standardization of global marking systems (IEC 60445) - Enhanced resistance to chemical corrosion in industrial environments

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