Product Overview
SIMOTICS S 1FK7 synchronous servo motor and DELTA aluminum-metallic switching components engineered for industrial automation architectures, precision actuation systems, and modular electrical installations. The configuration integrates compact servo-drive mechanics with metallic-framed control interfaces optimized for structured mounting geometries and operational durability.
1. Servo Motor Configuration
- SIMOTICS S 1FK7 Servo Motor: Compact synchronous servo motor with DC link 300 V architecture, nominal torque 0.85 Nm, and rotational velocity up to 6000 rpm. The 0.38 kW output profile supports dynamic positioning sequences and high-frequency motion control applications.
- Thermal Characteristics: Naturally cooled construction eliminates auxiliary ventilation dependencies and reduces mechanical complexity. The 100K thermal specification supports controlled operational stability within precision-driven electromechanical assemblies.
- Operational Parameters: ETIM-linked values for poles, frequency, voltage, efficiency, and torque ratios are unspecified or set to 0. Frequency-control suitability and overload capability are not indicated within the provided dataset.
2. Switching and Control Components
- NH3 Fuse 630A: High-current protective switching element designed for industrial distribution systems and elevated load interruption requirements. Suitable for integration into heavy-duty electrical protection circuits.
- DELTA LED Lamp Insert: LED-based signaling insert for control and indication functionality within modular switch assemblies. Engineered for consistent visual status indication in control environments.
- DELTA Aluminum-Metallic Frames: Available in 1-fold, 2-fold, 4-fold, and 5-fold configurations with dimensions from 80x80 mm to 364x80 mm. Metallic construction improves structural rigidity and dimensional precision during installation.
- DELTA i-system Components: Includes broadband antenna cover plate and universal rocker switch assemblies for integrated communication and switching infrastructures. Aluminum-metallic surfaces provide enhanced mechanical resilience and architectural uniformity.
Technical disclaimer: Several electrical and performance parameters are unspecified in the supplied dataset and therefore cannot be technically interpreted beyond the stated values.