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QMV TDR12V2 12 VDC SPDT 1 - 60 Seconds Adjustable Off Time Delay Relay

Rating:
99 % of 100
$8.99
In stock
SKU
TDR12V2

Key Features

  • 1 - 60 Second delay turn off mini relay
  • Relay latches with the application of power with NC and NO contacts
  • Requires a minimum of 9 volts to function
  • 10 amp / 15 amp rated contacts
  • SPST - Single pole Single throw
Unit includes: 12 volt time delay relay
QMV TDR12V2 12 VDC SPDT 1 - 60 Seconds Adjustable Off Time Delay Relay

The TDR12V2 is a compact 12-volt adjustable time delay-off relay designed for automotive and mobile electronics applications. With an adjustable delay from 0 to 60 seconds, it keeps an output active for a preset time after the trigger is removed. Ideal for amplifier turn-off delay, cooling fans, lighting, security systems, and custom electronic projects, the TDR12V2 features low-voltage triggering, durable relay contacts, and an easy-to-adjust internal potentiometer for reliable operation.

Features:

  • 1 - 60 Second delay turn off mini relay
  • Latches immediately with power application and remains latched for 0 - 60 seconds with NC and NO contacts
  • Circuit board design with dual LED's
  • Requires a minimum of 9 volts to function
  • Adjustable time delay turn off from 1 seconds to 60 seconds with internal potentiometer
  • Relay resets once power is removed
  • Internal Red LED to indicate power
  • Internal Green LED to indicate relay in cycle
  • 10 amp / 15 amp rated contacts
  • SPST - Single pole Single throw
  • 12 Vdc rated coil with minimum 8 volt to trigger
  • Power consumption @ 12Vdc 40 mA
  • Screw terminals for easy connections up to 14 gauge wire
  • Dimensions 1-1/8" (W) x 2-1/4" (L) x 3/4" (H) with terminals

Contact configuration:

QMV TDR12V2 Wiring diagram
Terminal Wire Color Function Description
GND Black Ground All-Time Connect to a clean chassis ground or battery negative. This connection grounds the relay’s operating circuit.
VCC Red 12V Positive Connect to a fused +12V DC power source. This terminal powers and triggers the relay circuit.
COM White Common Latching Relay Connection Common terminal for the relay contacts. It can be connected to positive (+) or negative (-), depending on the application.
CK Green Normally Open Contact This contact is open and disconnected from COM while the relay is at rest. It connects to COM when the relay latches.
CB Blue Normally Closed Contact This contact is connected to COM while the relay is unenergized or at rest. It disconnects from COM when the relay latches.

Contact Rating: 10A continuous / 15A peak

Wire colors are recommended for Quality Mobile Video wiring connections. Actual relay terminals are not color coded.

Uses:

  • Prevent high current components from switching on during vehicle start (up to 60 second delay, NC contacts)
  • Switch a device on for a short duration with the application of power. Power a fuel pump for up to 60 seconds with the turn of the key. (Up to 60 second delay, NO contacts)
  • Delayed Voltage inverter: Reverse the polarity to an component for a short duration
  • Flip-Flop: by using two of these you can create a flip-flop circuit of equal duration on alternating duration
More Information
Manufacturer Quality Mobile Video
Part Number TDR12V2
Operation Voltage 8-15 Volt DC
Relay type PCB relay
Current capacity 15 Amp
Pole switching type SPDT (Single pole Dual throw)
Tab type No Tab
Waterproof ingress protection None
Warranty 1 Year
California Proposition 65
Return period 30 days
Exchange period 30 days
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Relay Pinout Diagrams Explained

A relay pinout diagram shows the function of each terminal (pin) on a relay and how the internal connections work. It helps you wire the relay correctly for your project.

1. Basic Relay Anatomy

Most automotive relays have two main parts:

  • Coil – An electromagnet that switches the relay on/off (low current side)
  • Switch Contacts – The high-current switch that turns your accessory on/off

2. Most Common Automotive Relay: 5-Pin SPDT

This is the standard relay type used with sockets like BRSCN, BRSPC, BRSS, etc.

Pin Name Function
30 Common Power input (goes to the load)
87 Normally Open (NO) Closed when relay is energized (ON)
87a Normally Closed (NC) Closed when relay is de-energized (OFF)
85 Coil Ground Negative side of coil
86 Coil Positive Positive side of coil (+12V trigger)

Visual Pinout Diagram

          87
          │
   87a ───┼─── 30
          │
         [Relay]

   85 ───────── 86
    

How It Works:

  • No power to 85/86 → Current flows between 30 and 87a
  • +12V applied to 85/86 → Coil energizes → Current flows between 30 and 87

4. How to Read a Relay Pinout Diagram

Most relay pinout diagrams include the following elements:

  • A box or outline representing the relay body
  • Pin numbers clearly labeled next to each terminal
  • Internal connections shown with lines or dotted lines
  • Coil symbol (usually a rectangle or spring-like coil)
  • Switch contacts shown with an arrow indicating movement when the relay is energized

Example Relay Pinout Diagram:

       87          30
        │           │
        └──────┬────┘
               │
             ┌──┐     ← Moving Contact
             └──┘
            /     \
          87a      (Switches when coil is energized)

    85 ───────────── 86
          Coil
    

Understanding the Symbols:

  • 30 — Common terminal (input power)
  • 87 — Normally Open (NO) contact
  • 87a — Normally Closed (NC) contact
  • 85 & 86 — Coil terminals (control side)

When the relay coil is energized (pins 85/86 powered), the internal switch moves from 87a to 87.

Quick Wiring Examples (5-Pin Relay)

1. Basic On/Off Circuit (Most Common)

Used for lights, fans, fuel pumps, horns, etc.

  • 86 → Switched +12V (from switch, toggle, or ECU output)
  • 85 → Ground (or switched ground)
  • 30 → Constant +12V Power (from battery or fuse box)
  • 87 → Output to Accessory (lights, fan, etc.)
  • 87a → Not used (leave disconnected)

2. Changeover / Dual Circuit Setup

Use both 87 and 87a when you need to switch between two different circuits.

  • 30 → Input Power
  • 87 → Circuit A (ON when relay is energized)
  • 87a → Circuit B (ON when relay is OFF)
  • 85 & 86 → Coil control

3. Typical Pin Connections Summary

Pin Connection Typical Wire Color Purpose
30 Constant +12V Black (BRS14E & BRS12E) Power Input
87 To Accessory Green (BRS14E & BRS12E) Power Output (ON)
87a Optional 2nd Circuit Blue (BRS14E & BRS12E) Power Output (OFF)
85 Ground White (BRS14E & BRS12E) Coil Negative
86 Switched +12V Red (BRS14E & BRS12E) Coil Positive

Tip: Always use a fused power source on pin 30 for safety.

Basic 5-Pin Relay Wiring Harness

Battery +12V ──► [Fuse] ──► Pin 30 (Common)

Pin 87 ──► Accessory (Lights / Fan / Pump / Amp etc.)

Pin 86 ──► Switched +12V Trigger
               (from switch, headlight wire, remote turn-on, etc.)

Pin 85 ──► Ground

Pin 87a ──► (Optional - Not used in basic setup)
    

Recommended Wiring (Empty relay socket or spade connectors (Not BRS14E & BRS12E):

  • Pin 30 — Red wire with inline fuse (closest to battery)
  • Pin 87 — Red or Blue wire to device
  • Pin 86 — White or Pink trigger wire
  • Pin 85 — Black ground wire

Dual Output (Changeover) Relay Harness

Pin 30   → Constant +12V (Fused)

Pin 87   → Circuit A (ON when relay activated)
Pin 87a  → Circuit B (ON when relay is off)

Pin 86   → Trigger +12V
Pin 85   → Ground
    
Customer Questions
Is there a way to increase the delay time by changing a component on the board . I need about 2 minutes of delay . Thank you
Yes, you will need a larger capacitor.
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