HMC-C061
HMC-C061 is Double Edge Triggered D-Type Flip-Flop Module manufactured by Hittite Microwave Corporation.
HMC-C061 v01.0109
50 Gbps, DOUBLE-EDGE TRIGGERED D-TYPE FLIP-FLOP MODULE
Features
Supports data rates 50 Gbps Half Rate Clock Input (1 MHz
- 25 GHz) Inputs Terminated Internally in 50 ohms Supports Single-Ended or Differential Operation Very Low Power Consumption: 690 m W Less than 200 fs Additive RMS Jitter
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Typical Applications
The HMC-C061 is ideal for:
- OC-768 and SDH STM-256 Equipment
Fast Rise and Fall Times: <10ps Single -3.3 V Power Supply Hermetically Sealed Module: 1.85mm connectors -40°C to +70°C Operating Temperature
HIGH SPEED LOGIC
- Serial Data Transmission up to 50 Gbps
- Short, intermediate, and long haul fiber optic applications
- Broadband Test and Measurement
General Description
The HMC-C061 is a double edge triggered D-type Flip Flop (DETDFF) designed to support data transmission rates of up to 50 Gbps. The device operates at half the sampling frequency of the applied data rate. The maximum clock rate is 25 GHz for 50 Gbps input data. The clock input is broadband from DC to 25 GHz. During normal operation, data is transferred to the outputs on both the positive edge and the negative edge of the clock. All input signals to the HMC-C061 are terminated with 50 Ohms to ground on-chip, and may be either AC or DC coupled. The differential outputs of the HMC-C061 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 HMC-C061 operates from a single -3.3V DC supply, and is housed in a hermetically sealed module with 1.85mm connectors.
Functional Diagram
Electrical Specifi cations, TA = +25ºC, -Vdc = Vee = -3.3V
Parameter Power Supply Voltage Power Supply Current Maximum Data Rate Maximum Clock Frequency Minimum Clock Frequency Clock Input Duty Cycle Data Output Duty Cycle [1] @ 25 GHz @ 50 Gbps 45 45 1.5
[3]
Conditions ±5% Tolerance
Min. -3.46
Typ. -3.3...