Skip to content

QIACHIP RX500-4 Instruction Manual DC 2V-5.5V 433MHz RF Superheterodyne Wireless Receiver Module

QIACHIP RX500-4 Product Diagram.webp

Version: V1.0

Last Updated: 2026-2-28

Model: RX500-4

Product Size

QIACHIP RX500 Size Figure.webp

  • Receiver Length (L) x Width (W) x Height (H): 23.5mm x 9mm x 1mm
  • Receiver Pin header pitch: 2.5 mm

Component Description

QIACHIP RX500-4 Component Description Figure.webp

  • 1: Antenna
  • 2: VIN+ (Power Input Pin)
  • 3: DO (Data Output Pin)
  • 4: DO (Data Output Pin)
  • 5: GND- (Power Ground Pin)

Antenna Size

General Application Type

For general applications, you can directly use the market-standard specifications for the antenna. Details of the 433MHz antenna are as follows:

QIACHIP RX500-4 Antenna Size Figure 1.webp

  • Wire length at the soldering end: 10mm
  • Total straight length of the antenna wire: 170mm
  • Number of winding turns: 9 turns

Special Enhanced Type

If a longer communication distance is required and the general application type antenna cannot meet the demand, an enhanced type antenna can be used to improve the receiving distance. Details of the 433MHz antenna are as follows:

QIACHIP RX500-4 Antenna Size Figure 2.webp

  • Antenna core diameter (including outer sheath): 1.0 mm
  • Antenna core diameter (excluding outer sheath): 0.35 mm
  • Wire length at the soldering end: 12 mm
  • Antenna winding diameter (excluding outer sheath): 3.0 mm
  • Number of winding turns: 26 turns
  • Winding length: 36 mm

Electrical characteristics

Parameter Value
Input voltage DC 2.0V-5.5V
RF frequency 433.92MHz
Power Consumption 4mA
Receiving Bandwidth 300KHz
Maximum bit rate ≤10kbps
Receiver sensitivity -115dBm
Working temperature -40~85℃
Size 23.5x9x1mm

NOTE

  1. This product is a CMOS device. Please take anti-static precautions during storage, transportation and operation.
  2. Ensure proper grounding when using the device.
  3. RF devices are voltage-sensitive. If the power supply is unstable or has significant ripple, add filtering at the power input terminal to ensure the supply voltage does not exceed the product's maximum operating voltage.