myMectronic
myMectronic

A Premier B2B Part Search

ABRACON ACAG1204433T 433 MHz Ceramic Chip Antenna

The ABRACON ACAG1204-433-T is a compact ceramic chip antenna operating at 433 MHz. Designed for a wide range of wireless applications, including IoT devices, smart meters, remote monitoring systems, and RFID readers, this antenna offers a low-profile solution with an omni-directional radiation pattern. It is RoHS compliant and features a compact size of 12.0 x 4.0 x 1.6mm, making it suitable for space-constrained designs. Proper handling and soldering techniques are crucial to maintain optimal performance and avoid damage.

Authorized Distributors
Source:Newark
Part No:ACAG1204-433-T
Stock:3000
Inv Date:06-11-2026
Price: Unit price: $3.71
Buy/RFQ:
Source:DigiKey
Part No:ACAG1204-433-T
Stock:3978
Inv Date:06-11-2026
Price: Unit price: $1.90985
Buy/RFQ:
Part No:ACAG1204-433-T
Stock:627
Inv Date:06-12-2026
Price: Unit price: $3.58
Buy/RFQ:
Part No:ACAG1204-433-T
Stock:1400
Inv Date:06-11-2026
Price: Unit price: $1.95
Buy/RFQ:
Part No:ACAG1204-433-T
Stock:1400
Inv Date:06-11-2026
Price: Unit price: $1.95
Buy/RFQ:

ABRACON ACAG1204433T 433 MHz Ceramic Chip Antenna Specifications:

  • Frequency: 433 MHz
  • Bandwidth: 10 MHz typ
  • Return Loss: -6.5 dB
  • Azimuth: Omni-directional
  • Polarization: Linear
  • Operating Temperature Range: -40°C ~+ 85°C
  • Dimensions: 12.0 x 4.0 x 1.6mm
  • MSL: 1
  • Package Quantity: 3000 pcs/reel

Buy the ACAG1204-433-T ABRACON 433 MHz Ceramic Chip Antenna | myMectronic

Securely purchase the ABRACON ACAG1204-433-T online and ensure reliable performance for your wireless projects.

Buy Now

Frequently Asked Questions

Where can I buy ABRACON ACAG1204433T?

You can click on the BUY or RFQ button to purchase ACAG1204433T from an authorized ABRACON distributor.

How do I troubleshoot issues or seek technical support for part ACAG1204433T?

You can download the ACAG1204433T datasheet or visit the ABRACON website for support.

Who is the manufacturer of ACAG1204433T?

ABRACON

Sponsored by