Power Sequencing & Remote Control
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+Automated control for safer system startups.
Proper power sequencing is critical for protecting sensitive digital electronics from the high inrush currents that occur at startup. Our solutions range from simple, standalone rack-mount sequencers to sophisticated, network-controlled breaker panels and distributed relay modules. This allows integrators to design safe power-up and power-down routines for any application, from a single equipment rack to an entire campus.
With features like adjustable step-rates, brownout protection, and remote management via IP, DMX, or sACN, LynTec provides a robust framework for automated power control. Each system is engineered for simple setup and dependable operation, ensuring your AVL systems power on correctly, every time.
Engineered for reliable automation.
Scalable from a single rack to an entire facility.
Flexible control for any automation environment.
More than sequencing, it is complete system protection.
Your questions, answered.
Yes. In an RPC system, the master panel serves as the central brain for the entire power infrastructure. From its web interface, you can configure circuit-level sequencing with user-defined step-rates that apply across the master panel and all connected secondary panels. This ensures a coordinated and safe power-up sequence for all connected AVL equipment.
No, this series of rack power distribution units is designed for straightforward, manual power control. They feature a master front-panel switch for turning most outlets on or off. They do not include onboard intelligence for network control or automated power sequencing.
For applications requiring controlled startup and shutdown sequences or remote IP-based control, we recommend exploring our Power Sequencing & Remote Control product families.
Yes, our systems are designed with life safety integration in mind. The RPC Remote Control Breaker Panel is ETL listed to UL 924 for automatic circuit activation for emergency egress lighting.
Additionally, our RPC, NPAC, and XPC systems feature contact closure inputs that can be connected to a fire alarm control panel or other emergency triggers. This allows for an automated, immediate shutdown or a controlled sequence-down of all connected AVL equipment, enhancing facility safety. The RCDM3 accessory provides similar alarm input functionality for the CQ Series.
RC Series accessories are engineered for simple installation. They connect to a LynTec CQ Series sequencer using a single, standard RJ45 cable. This connection provides both control signaling and operating power, as the RC units are phantom powered directly by the CQ device. This design eliminates the need for a local power supply at the control location, simplifying wiring and reducing installation costs.
For systems requiring control from several points, such as a stage, a control booth, and a back office, we offer the RC-DM3 Remote Control Combiner. This module allows you to connect up to three remote control stations to a single CQ Series sequencing system.
The RC-DM3 automatically prioritizes the most recent command it receives, which prevents control conflicts and ensures smooth operation without any complex programming.
The XPC Xtend Power Control series is engineered specifically for this application. It is a modular system that uses remote relay modules connected over a standard IP network. This allows you to place control exactly where it is needed, such as near powered speaker arrays, digital signage, or motorized rigging, without running long electrical circuits back to a central panel.
XPC modules can be deployed with a standalone controller or integrated as an extension of an existing LynTec RPC or NPAC system, providing a scalable solution for facility-wide distributed power control.
CQ Series sequencers are designed for modular expansion. You can link multiple units together by daisy-chaining them with standard RJ-45 cables. Each unit operates independently, so there is no need for a central controller or complex programming. This allows you to create a synchronized power-up sequence that scales from a single rack to a multi-zone installation.
While a standard sub-panel only provides overcurrent protection, LynTec wall-mount panels integrate power distribution with intelligent control. They are purpose-built for AV and lighting systems, offering built-in power sequencing, remote on/off control via IP, DMX, or sACN, and system monitoring. This simplifies installation by combining multiple functions into a single, code-compliant enclosure, eliminating the need for separate relay boxes and control wiring.
Our network-enabled products are designed for straightforward integration with third-party automation systems. The RPC, NPAC, and XPC series all feature an onboard web server and support control via IP (Telnet/HTTP), DMX, and sACN protocols.
For direct integration, these systems can be controlled using simple command-line strings over Telnet or through contact closure inputs. This provides a universal and reliable method for triggering power sequences from nearly any professional control system, including those from Crestron, AMX, and Q-SYS.
The NPAC is designed for broad compatibility with professional AVL and lighting control systems. It natively supports control via IP (Telnet/HTTP), DMX512, and sACN. It also includes a contact closure interface for simple on/off control from basic switches or relays. This flexibility allows it to integrate directly into systems from Crestron, AMX, Q-SYS, and most lighting consoles without requiring extra hardware or protocol converters.
Our network-controlled systems are engineered for straightforward commissioning by the installer, with no on-site factory specialist required. Once the panel is physically installed and connected to the network, all configuration is done through a standard web browser.
The integrated web server provides an intuitive interface for setting IP addresses, configuring zones, establishing sequence timing, and assigning control protocols. This simplified process reduces installation time and complexity for systems like the RPC, LCP, and NPAC.
Our product ecosystem is designed for modular scalability. A small installation can start with a standalone CQ Series sequencer in a single rack. Multiple CQ units can be linked together using standard RJ-45 cables as more racks are added.
For network control, an NPAC rackmount panel can manage up to four circuits, and up to 10 NPACs can be linked and controlled as one system. For facility-wide control, the RPC breaker panel system provides a centralized infrastructure that can manage up to 168 circuits and can be extended with XPC remote relay modules for distributed assets.
The choice depends on the project’s scale and control requirements. Standalone sequencers, like our CQ Series, are ideal for single-rack applications where simple, localized, and reliable sequencing is the primary goal. They can be linked to other CQ units for basic system expansion.
Network-enabled systems like the RPC, NPAC, and XPC are specified when remote control, monitoring, scheduling, or integration into a larger building automation system is required. Their built-in web server and support for IP, DMX, and sACN protocols provide superior flexibility for managing complex or distributed power environments.
The XPC series is engineered for projects with geographically distributed equipment. Specify an XPC system when you need to control circuits for devices like powered speakers, digital signage, or motorized rigging that are far from a central electrical room. This modular approach eliminates long, costly home run conduit pulls, simplifying installation and providing greater design flexibility.
Integrated brownout (under-voltage) protection is a standard feature in our RPC Remote Control Breaker Panel and XPC Xtend Power Control systems. This protective feature constantly monitors incoming voltage.
If the voltage drops below a safe operating threshold, the system automatically turns off the protected circuits in a controlled sequence to prevent damage to sensitive downstream electronics. Once stable power is restored, the system can be programmed to automatically re-sequence and bring the equipment back online safely.
Powering on multiple high-current devices at once can create a large inrush current spike, which can trip breakers or damage sensitive electronics. A power sequencer like the PDS staggers the startup of each circuit in a controlled, step-by-step order.
This managed approach prevents electrical overload, protects your equipment investment, and ensures a stable, reliable system startup every time.