전자부품 데이터시트 검색엔진
  Korean  ▼
ALLDATASHEET.CO.KR

X  

  • SVB-5Z-R

  • AI
    The **SVB-5Z-R** is a specific model of a **Miniature Intermediate Power Relay**, typically manufactured by companies like **Sanyou** or similar specialized relay producers. It is designed for PCB mounting and is used to control high-power loads using a low-power DC input. --- ### 1. Technical Specifications The following table outlines the primary electronic characteristics of the SVB-5Z-R: | Feature | Specification | | :--- | :--- | | **Coil Voltage** | 5V DC | | **Contact Form** | 1 Form C (SPDT - Single Pole Double Throw) | | **Max Switching Current** | 5A to 10A (Depending on load type) | | **Max Switching Voltage** | 250V AC / 30V DC | | **Termination Style** | PCB Through-hole pins | | **Enclosure Type** | Sealed / Flux-proof | --- ### 2. Breakdown of the Model Code The alphanumeric string "SVB-5Z-R" conveys specific engineering data: * **SVB**: The Series name (Miniature Power Relay). * **5**: The Nominal Coil Voltage (5 Volts DC). * **Z**: The Contact Arrangement (Z usually denotes a Change-over/SPDT contact). * **R**: Special feature suffix (often denotes RoHS compliance or specific sealing/packaging). --- ### 3. Internal Components and Function The SVB-5Z-R consists of several critical electronic and mechanical parts: 1. **Electromagnetic Coil:** When 5V DC is applied, it creates a magnetic field. 2. **Armature:** A moving piece of metal attracted by the magnetic field. 3. **Spring:** Returns the armature to its original position once power is removed. 4. **Contacts:** Usually made of **Silver Alloy** (AgSnO2 or AgCdO) to resist "arcing" and welding during high-current switching. 5. **Dampener/Insulator:** Prevents electrical interference between the low-voltage coil side and the high-voltage load side. --- ### 4. Application Circuit Example To control this relay with a microcontroller (like an Arduino), a transistor driver circuit is required because the MCU cannot provide enough current to drive the coil directly. ```cpp // Logic flow for controlling SVB-5Z-R void setup() { pinMode(relayPin, OUTPUT); } void loop() { digitalWrite(relayPin, HIGH); // Activates Coil (Closes COM to NO) delay(1000); digitalWrite(relayPin, LOW); // Deactivates Coil (Closes COM to NC) delay(1000); } ``` --- ### 5. Common Use Cases * **Smart Home Devices:** Switching lights or small appliances. * **Industrial Controls:** Interfacing PLC outputs to motors or solenoids. * **Office Automation:** Power control in printers and copiers. * **HVAC:** Controlling small fans or dampers.
    ✨ Follow-up Questions
    • What is the power consumption of the 5V coil in the SVB-5Z-R?
    • Does this relay require a flyback diode for protection?
    • What are the physical dimensions for PCB footprint planning?