Overview
ISO 7399:1990 is an international standard developed by the International Organization for Standardization (ISO) that specifies the electrical characteristics and testing requirements for alternating current (a.c.) flasher units used in motorcycles. Applicable to 6 V and 12 V electrical systems, this standard ensures that a.c. flasher units meet consistent performance, safety, and reliability criteria when submitted for type-testing. The 1990 edition revises and replaces the original 1984 version with minor updates.
Key Topics
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Scope and Applicability
The standard applies specifically to a.c. flasher units intended for motorcycles as defined by ISO 3833, covering systems operating at nominal voltages of 6 V or 12 V. It includes both simultaneous and alternating operation types of flasher units.
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Identification and Marking
Each flasher unit must be clearly and indelibly marked with the manufacturer's trademark, nominal voltage, short-circuit current, and terminal identification for proper connection and traceability.
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Electrical Characteristics
The standard details:
- Voltage supply conditions for testing (4.5 V–5.5 V, 7.5 V for 6 V systems; 9 V–11 V, 15 V for 12 V systems),
- Lamp power considerations following IEC 810 requirements,
- Test circuit configuration for both simultaneous and alternating flashing modes,
- Measurement methods for frequency, duty cycle (form factor), startup time, and voltage drop across the units.
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Testing Procedures
Detailed requirements for type-testing include:
- Starting and stopping response times,
- Frequency and duty cycle of flashing (40%-60% duty cycle range),
- Operation with fault conditions such as lamp failure,
- Voltage drop limits (maximum 0.8 V effective drop),
- Dielectric rigidity to 1000 V at 50/60 Hz,
- Resistance to environmental stresses such as vibrations, shocks, temperature extremes (-40°C to +80°C), humidity exposure, and electrical surges,
- Endurance tests involving continuous and cyclic operation over extended durations for reliability.
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Sample Sizes and Test Sequencing
Testing is performed on batches of 20 samples with specific sequences assigned for the various environmental and electrical endurance tests to ensure compliance.
Applications
ISO 7399:1990 serves manufacturers and testing laboratories involved in the design, production, and certification of motorcycle alternating current flasher units. Key practical values include:
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Quality Assurance
Guarantees that motorcycle flasher units perform reliably within designated electrical environments, supporting rider safety through consistent indicator functionality.
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Regulatory Compliance
Facilitates harmonization of product requirements worldwide, easing market access and ensuring compatibility with vehicle electrical systems.
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Design Optimization
Provides manufacturers with a clear framework to design flasher units that meet robust operational and endurance criteria including electrical stability, mechanical durability, and environmental resistance.
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Fault Detection Features
Specifies conditions under which the flasher unit must recognize and respond to failures, such as cessation or altered flashing behavior of indicator lamps, improving real-time diagnostics on motorcycles.
Related Standards
ISO 7399 is part of a series of international standards related to motorcycle flasher units and lighting systems:
- ISO 7398: Motorcycles - Direct current flasher units
- ISO 7400: Mopeds - Alternating current flasher units
- ISO 8052: Mopeds - Direct current flasher units
- ISO 3833: Road vehicles - Types, definitions, and general vehicle classification
- IEC 810: Lamps for road vehicle lighting - Performance specifications
Together these standards establish comprehensive technical requirements for vehicle lighting and signaling devices to ensure safety, interoperability, and reliability in diverse traffic and environmental conditions.
Keywords: ISO 7399, motorcycle flasher units, alternating current flare units, electrical characteristics, type-testing, 6V system, 12V system, motorcycle electrical standards, flasher unit durability, signal lamp performance, vibration resistance, electrical endurance testing