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Hello, Please ask a question about AD9518-3A-PCBZ Datasheet
# Example questions:
➢ What is the maximum output frequency for the lvpecl clock outputs (out0-out5)?
➢ What is the recommended termination impedance for the lvpecl clock outputs, and what voltage should it be referenced to?
➢ What are the typical and maximum values for the output skew between lvpecl outputs that share the same divider?
1. General Information & Context
️· Device: AD9518-3
️· Type: A mixed-signal device (likely a clock distribution/generation IC).
️· Key Focus: High-performance clock distribution, especially for LVPECL signals.
️· Voltage Supplies: The specific supply voltages (VS, VS_LVPECL) are used throughout the specifications.
️· Important Note: The specifications are heavily reliant on proper termination and supply voltage conditions for optimal performance.
2. Clock Inputs
️· Frequency Range: Supports frequencies up to several GHz (details in Tables 3 & 1).
️· Input Sensitivity: mV p-p (millivolts peak-to-peak) are required, both differential and single-ended.
️· DC Coupling vs. AC Coupling: Input should ideally be DC-coupled below 1 MHz.
️· Input Resistance/Capacitance: Key values for circuit design and impedance matching.
️· Common Mode Range (CMR): Important for signal integrity and noise rejection.
3. Clock Outputs (LVPECL)
️· LVPECL Output Levels: Specifies output high (VOH), output low (VOL), and differential voltage (VOD) levels. These depend on the supply voltage (VS_LVPECL).
️· Output Amplitude: The default output amplitude can be adjusted. Typical termination is 50 ohms to VS - 2V.
️· Rise/Fall Times: Fast rise and fall times (in the picosecond range) for high-speed applications.
️· Propagation Delay: The time it takes for a clock signal to propagate through the device and appear at the output. This is temperature-dependent.
️· Output Skew: The difference in arrival times between different clock output paths. Minimizing output skew is critical for many applications.
4. Timing Characteristics
️· Table 3 includes the frequency range for clock inputs.
️· Table 2 relates to the clock outputs.
️· Table 5 describes propagation delay and output skew.
5. Key Tables Summary
️· Table 3 (Clock Inputs):
- Input Frequency: Up to several GHz
- Input Sensitivity (Differential): mV p-p
- Input Resistance: kΩ
- Input Capacitance: pF
️· Table 4 (LVPECL Outputs):
- Max Output Frequency: 2950 MHz
- VOH: VS_LVPECL - 1.12 V
- VOL: VS_LVPECL - 0.98 V
- Rise/Fall Time: ~70-180 ps
️· Table 5 (Timing):
- Propagation Delay: ~835-1180 ps
- Output Skew: up to 40 ps (for similar dividers).
6. Important Considerations
️· LVPECL: This device is designed specifically for LVPECL signaling. LVPECL requires specific termination resistors and voltages for proper function.
️· Termination: Proper termination is *essential* for signal integrity and minimizing reflections.
️· Output Amplitude: The output amplitude can be adjusted.
️· Skew: Minimizing output skew is vital for many applications.
1. General Information & Context
️· Device: AD9518-3
️· Type: A mixed-signal device (likely a clock distribution/generation IC).
️· Key Focus: High-performance clock distribution, especially for LVPECL signals.
️· Voltage Supplies: The specific supply voltages (VS, VS_LVPECL) are used throughout the specifications.
️· Important Note: The specifications are heavily reliant on proper termination and supply voltage conditions for optimal performance.
2. Clock Inputs
️· Frequency Range: Supports frequencies up to several GHz (details in Tables 3 & 1).
️· Input Sensitivity: mV p-p (millivolts peak-to-peak) are required, both differential and single-ended.
️· DC Coupling vs. AC Coupling: Input should ideally be DC-coupled below 1 MHz.
️· Input Resistance/Capacitance: Key values for circuit design and impedance matching.
️· Common Mode Range (CMR): Important for signal integrity and noise rejection.
3. Clock Outputs (LVPECL)
️· LVPECL Output Levels: Specifies output high (VOH), output low (VOL), and differential voltage (VOD) levels. These depend on the supply voltage (VS_LVPECL).
️· Output Amplitude: The default output amplitude can be adjusted. Typical termination is 50 ohms to VS - 2V.
️· Rise/Fall Times: Fast rise and fall times (in the picosecond range) for high-speed applications.
️· Propagation Delay: The time it takes for a clock signal to propagate through the device and appear at the output. This is temperature-dependent.
️· Output Skew: The difference in arrival times between different clock output paths. Minimizing output skew is critical for many applications.
4. Timing Characteristics
️· Table 3 includes the frequency range for clock inputs.
️· Table 2 relates to the clock outputs.
️· Table 5 describes propagation delay and output skew.
5. Key Tables Summary
️· Table 3 (Clock Inputs):
- Input Frequency: Up to several GHz
- Input Sensitivity (Differential): mV p-p
- Input Resistance: kΩ
- Input Capacitance: pF
️· Table 4 (LVPECL Outputs):
- Max Output Frequency: 2950 MHz
- VOH: VS_LVPECL - 1.12 V
- VOL: VS_LVPECL - 0.98 V
- Rise/Fall Time: ~70-180 ps
️· Table 5 (Timing):
- Propagation Delay: ~835-1180 ps
- Output Skew: up to 40 ps (for similar dividers).
6. Important Considerations
️· LVPECL: This device is designed specifically for LVPECL signaling. LVPECL requires specific termination resistors and voltages for proper function.
️· Termination: Proper termination is *essential* for signal integrity and minimizing reflections.
️· Output Amplitude: The output amplitude can be adjusted.
️· Skew: Minimizing output skew is vital for many applications.
| Part No. | AD9518-3A-PCBZ |
| Manufacturer | AD |
| Size | 1,002 Kbytes |
| Pages | 64 pages |
| Description | 6-Output Clock Generator with 6-Output Clock Generator with |
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