HMC722LC3C 13 Gbps, Fast Rise Time AND/NAND/OR/NOR Gate, with Programmable Output Voltage
The HMC722LC3C is an AND/NAND/OR/NOR function designed to support data transmission rates of up to 13 Gbps, and clock frequencies as high as 13 GHz. The HMC772LC3C may be easily configured to provide any of the following logic functions: AND, NAND, OR and NOR. The HMC722LC3C also features an output level control pin, VR, which allows for loss compensation or for signal level optimization.
All input signals to the HMC722LC3C are terminated with 50 Ohms to ground on-chip, and may be either AC or DC coupled. The differential outputs of the HMC722LC3C may be either AC or DC coupled. Outputs can be connected directly to a 50 Ohm to ground terminated system, while DC blocking capacitors may be used if the terminating system is 50 Ohms to a non-ground DC voltage. The HMC722LC3C operates from a single -3.3V DC supply, and is available in a ceramic RoHS compliant 3x3 mm SMT package.
Applications
- RF ATE Applications
- Broadband Test & Measurement
- Serial Data Transmission up to 13 Gbps
- Digital Logic Systems up to 13 GHz
- NRZ-to-RZ Conversion
Features and Benefits- Supports High Data Rates: up to 13 Gbps
- Differential & Single-Ended Ouputs
- Fast Rise & Fall Times: 19 / 18 ps
- Low Power Consumption: 230 mW typ.
- Programmable Differential Output Voltage Swing: 600 - 1100 mV
- Propagation Delay: 95 ps
- Single Supply: -3.3V
- 16 Lead Ceramic 3x3mm
SMT Package: 9mm²
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Data Sheets
Order Information
Part Number | Package | Packing Qty | Temp Range | Price 100-499 | Price 1000+ | RoHS |
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HMC722LC3C Production | 16 ld LCC (3x3mm w/1.5mm EP) | OTH 50 | -40 to 85C | 110.72 | 89.68 | Y |
HMC722LC3CTR Production | 16 ld LCC (3x3mm w/1.5mm EP) | REEL 100 | -40 to 85C | 110.72 | 89.68 | Y |
HMC722LC3CTR-R5 Production | 16 ld LCC (3x3mm w/1.5mm EP) | REEL 500 | -40 to 85C | 110.72 | 89.68 | Y |
Evaluation Boards
Part Number | Description | Price | RoHS |
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118777-HMC722LC3C | Evaluation Board - HMC722LC3C Evaluation PCB | 704.2 | Y |
Reference Materials