- Manufacturer Part Number : HMC583
- Manufacturer : AD
- Description : VCO SMT with Fo/2 & Divide-by-4, 11.5 - 12.8 GHz
- Series : HMC583
- Reference Price : USD 0
- Our Price : We have a better price, contact us by email
- Product Type : Voltage Controlled Oscillators (VCO) & Phase Locked Oscillators (PLO)
- Function : VCOs with Output Dividers
- Current Suggest : Production
- Status : Production
- RoHS Status: -
- Voltage: -
- Feature: -
- Package Case: -
- Temperature Range: -
- Packing: Reel/Tray/Tube
- Standard Packing Quantity: -
- Country of Origin: -
- Other Part Number : HMC583
- Shipping methods : DHL FEDEX UPS TNT
- Delivery Time : Ship within 1 day.
- Manufacturer Production time : 6-8 weeks (Normally have stocks)
- Weight : 0.001KG
Contact us to check the best price and real time inventory quantity for HMC583. If you need any more information about HMC583, you can also send us by email. Our email is [email protected], we will reply you in 12 hours.
- Dual Output: Fo = 11.5 - 12.8 GHz
Fo/2 = 5.75 - 6.4 GHz - Pout: +11 dBm
- Phase Noise: -110 dBc/Hz @100 kHz Typ.
- No External Resonator Needed
- QFN Leadless SMT Package, 25 mm²
The HMC583LP5(E) is a GaAs InGaP Heterojunction Bipolar Transistor (HBT) MMIC VCO. The HMC583LP5(E) integrates resonators, negative resistance devices, varactor diodes and feature half frequency and divide-by-4 outputs. The VCO’s phase noise performance is excellent over temperature, shock, and process due to the oscillator’s monolithic structure. Power output is +11 dBm typical from a +5V supply voltage. The prescaler and RF/2 functions can be disabled to conserve current if not required. The voltage controlled oscillator is packaged in a leadless QFN 5x5 mm surface mount package, and requires no external matching components.
Applications
- Point to Point/Multipoint Radio
- Test Equipment & Industrial Controls
- SATCOM
- Military End-Use
At least one model within this product family is in production and available for purchase. The product is appropriate for new designs but newer alternatives may exist.