Seeed

Seeed

Seeed is a renowned open hardware innovation platform that provides accessible and flexible development resources for creators, makers, and startups. Established in 2008, the company offers a wide range of products and services, including development boards, sensors, IoT solutions, and manufacturing services. Seeed's Seeed Fusion service provides comprehensive PCB fabrication and assembly solutions, catering to diverse prototyping and production needs. The company also operates the Seeed Studio platform, which serves as a hub for sharing hardware projects, tutorials, and resources, fostering collaboration and knowledge exchange within the maker community. Seeed is committed to enabling innovation by simplifying the process of turning ideas into reality, empowering individuals and businesses to bring their creations to life. With a strong focus on open-source values and community engagement, Seeed continues to be a driving force in the advancement of open hardware and IoT technologies.

Time Delay Relays

Results:
1
Series
Timing Initiate Method
Function
Voltage - Supply
Termination Style
Delay Time
Circuit
Timing Adjustment Method
Contact Rating @ Voltage
Mounting Type
Relay Type
Results remaining1
Applied Filters:
Seeed
Select
ImageProduct DetailPriceAvailabilityECAD ModelSeriesMounting TypeTermination StyleFunctionDelay TimeCircuitContact Rating @ VoltageRelay TypeTiming Adjustment MethodTiming Initiate MethodVoltage - Supply
311990000
RELAY TIME DELAY MECH TIMER
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
*
-
-
-
-
-
-
-
-
-
-

About  Time Delay Relays

Time Delay Relays (TDRs) are electromechanical devices utilized in various applications to enable the control of large loads using a smaller control signal. These relays incorporate a built-in time delay mechanism, allowing for precise timing in triggering the relay's operation. TDRs offer a wide range of functions to accommodate different timing requirements and operational scenarios. Some of the common functions provided by TDRs include: Interval Function: In this mode, the relay operates for a specified duration of time after receiving a control signal, and then deactivates until the next signal is received. It is often used for cyclic operations or periodic tasks. Off-Delay Function: With the off-delay function, the relay remains energized for a predetermined period after the control signal is removed. This delay ensures that the load remains powered for a specific duration before being turned off. On-Delay Function: The on-delay function introduces a time delay between the reception of the control signal and the activation of the relay. This delay allows for a temporary pause before the load is energized. One-Shot Function: In one-shot mode, the relay triggers a single output pulse of a defined duration when the control signal is received. This function is commonly used for momentary operations or as a pulse generator. Programmable (Multi-function) TDRs: These TDRs provide flexibility by offering multiple programmable timing functions in a single device. Users can configure the desired timing parameters according to their application requirements. Repeat Cycle Function: With the repeat cycle function, the relay alternates between on and off states at regular intervals, allowing for repetitive operation. Twin Timer Function: Twin timer TDRs feature two separate adjustable timers that operate independently, enabling more complex timing sequences or dual-output operations. Signal On-Off-Delay Function: This function combines both on-delay and off-delay functions, allowing for control of the load based on specific time periods for activation and deactivation. Star/Delta Controller: The star/delta controller function is commonly used in motor control applications. It provides a specific starting sequence for motors, optimizing their performance and reducing the initial high-current demand during startup. Time Delay Relays are versatile devices that find applications in various industries, including automation, control systems, HVAC, lighting, and motor control. They offer precise timing control and serve as reliable tools for coordinating the operation of large loads with smaller control signals.