Datasheets
ADTL1-12 by:

RF Transformer, 20MHz Min, 1200MHz Max, 1:1,

Part Details for ADTL1-12 by Mini-Circuits

Results Overview of ADTL1-12 by Mini-Circuits

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Applications Education and Research Environmental Monitoring Industrial Automation Agriculture Technology Medical Imaging

ADTL1-12 Information

ADTL1-12 by Mini-Circuits is an RF Transformer.
RF Transformers are under the broader part category of Transformers.

Transformers are passive components that transfer electrical energy between circuits and adjust voltage levels through electromagnetic induction. They are crucial for applications like power transmission and reducing voltage for low-voltage devices. Read more about Transformers on our Transformers part category page.

Price & Stock for ADTL1-12

Part # Distributor Description Stock Price Buy
Bristol Electronics   3
RFQ

Part Details for ADTL1-12

ADTL1-12 CAD Models

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ADTL1-12 Part Data Attributes

ADTL1-12 Mini-Circuits
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ADTL1-12 Mini-Circuits RF Transformer, 20MHz Min, 1200MHz Max, 1:1,
Pbfree Code No
Rohs Code No
Part Life Cycle Code Active
Ihs Manufacturer MINI-CIRCUITS
Reach Compliance Code compliant
ECCN Code EAR99
Application MATCHING
Cut-off Frequency-Max 1200 MHz
Cut-off Frequency-Min 20 MHz
DC Unbalance Current-Max 30 mA
Height 2.84 mm
Insertion Loss 2 dB
JESD-609 Code e0
Length 7.87 mm
Mounting Feature SURFACE MOUNT
Operating Frequency-Max 1200000 kHz
Operating Frequency-Min 20000 kHz
Operating Temperature-Max 85 °C
Operating Temperature-Min -20 °C
Power Rating 2 W
Surface Mount YES
Terminal Finish TIN LEAD
Transformer Type RF TRANSFORMER
Width 5.59 mm

ADTL1-12 Related Parts

ADTL1-12 Frequently Asked Questions (FAQ)

  • A 4-layer PCB with a solid ground plane and a separate power plane is recommended. The device should be placed near the edge of the board to minimize signal reflections. A 50-ohm microstrip line should be used to connect the device to the antenna.

  • The ADTL1-12 requires a bias voltage of 5V and a bias current of 100mA. A voltage regulator and a current-limiting resistor should be used to ensure stable biasing. The bias voltage should be decoupled with a 10uF capacitor to reduce noise.

  • The ADTL1-12 can handle up to 1W of input power. Exceeding this limit may cause damage to the device. It is recommended to use an attenuator or a limiter to prevent over-powering the device.

  • Common issues with the ADTL1-12 include poor return loss, high insertion loss, and self-oscillation. These issues can be troubleshooted by checking the PCB layout, biasing, and input power levels. A network analyzer can be used to measure the device's S-parameters and identify the root cause of the issue.

  • Yes, the ADTL1-12 is designed for high-reliability applications. It is built with high-quality materials and undergoes rigorous testing to ensure its performance and reliability. However, it is recommended to follow proper handling and storage procedures to prevent damage to the device.

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