

- Manufacturer Part Number : HMC724LC3
- Manufacturer : AD
- Description : 14 Gbps Fast Rise Time 1:2 Fanout Buffer IC
- Series : HMC724
- Reference Price : USD 0
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- Product Type : Logic Devices
- Function : Fanout Buffers
- Current Suggest : Recommended for New Designs
- Status : Production
- ROHS Status : ROHS Compliant (Lead Free)
- Package Type : 16-Lead LCC (3mm x 3mm w/ EP)
- Pins : 16
- MFG Package Case : E-16-1
- Part Type : OTH
- Standard Packing Type : Cut Tape
- Standard Packing Quantity : 50
- Working Temperature : -40 to 85C
- Other Part Number : HMC724LC3
- Shipping methods : DHL FEDEX UPS TNT
- Delivery Time : Ship within 1 day.
- Manufacturer Production time : 6-8 weeks (Normally have stocks)
- Weight : 0.001KG
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- Inputs Terminated
Internally in 50 Ohms - Differential Inputs are DC Coupled
- Propagation Delay: 110 ps
- Fast Rise and Fall Times: 19 / 18 ps
- Power Dissipation: 300 mW
- 16 Lead Ceramic 3x3 mm
SMT Package: 9 mm²
The HMC724 is a 1:2 Fanout Buffer designed to support data transmission rates up to 14 Gbps, and clock frequencies as high as 14 GHz. All differential inputs and outputs are DC coupled and terminated on chip with 50 Ohm resistors to ground. The outputs may be used in either single ended or differential modes, and should be AC or DC coupled into 50 Ohm resistors connected to ground.
All differential inputs to the HMC724 are CML and terminated on-chip with 50 Ohms to the positive supply, GND, and may be DC or AC coupled. The differential CMl outputs are source terminated to to 50 Ohms and may also be AC or DC coupled. Outputs can be connected directly to a 50 Ohm ground-terminated system or drive devices with CML logic input. The HMC724 operates from a single -3.3 V supply and is available in ROHS-compliant 3x3 mm SMT package.
Applications
- 16 G Fiber Channel
- RF ATE Applications
- Broadband Test & Measurement
- Serial Data Transmission up to 14 Gbps
- Clock Buffering up to 14 GHz
This product has been released to the market. The data sheet contains all final specifications and operating conditions. For new designs, ADI recommends utilization of these products.
