SiT9505AE-01A2-3310-625.000000
| Specs | Value |
|---|---|
| Device Type | Differential Oscillators |
| Frequency |
625 MHz
|
| Frequency Stability (ppm) |
±25
|
| Operating Temp. Range (°C) |
-40 to 105
|
| Output Type |
LVPECL
|
| Supply Voltage (V) |
3.3
|
| Package Size (mm x mm) |
2.5x2.0
|
| Output Drive Strength* |
Default
|
| Feature Pin |
OE active high
|
*See datasheet for details
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Image: 6-pin package, top & bottom
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SiT9505 pin assignments
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SiT9505 block diagram
Exceptional dynamic performance in real-life operating conditions
- 41 fs RMS phase jitter (typ.)
- ±20 ppm stability
- Excellent system performance under environmental stress
20x better vibration sensitivity
- Minimizes packet loss in high-vibration environments
0.01 ps/mV power supply induced jitter sensitivity
- Simplify power supply design
2.0 x 1.6 mm package
- Enables small form-factor system with stringent jitter requirement
Flexible programmable features
- 4 standard frequencies: 100 MHz, 156.25 MHz, 312.5 MHz, 625 MHz
- 1.8 to 3.63 V
- LVPECL, LVDS, HCSL, Low-power HCSL, FlexSwing: Flexible and low power, output drivers and terminations
Superior reliability
- 1 billion hours MTBF
- Lifetime warranty
- Reduces field failures due to clock components and associated repair costs
- Optical Modules
- 100G / 200G / 400G / 800G Ethernet
- Data Centers
- Coherent Optics
- Networking Switches & Gateways
- AI / Graphics Cards
- System Clocking
- Industrial Applications
- Ethernet Switches & Routers
- FPGA
- SiT9505 (FSPECL, GND 2.5 V) IBIS Model
- SiT9505 (FSPECL, VDD 2.5 V) IBIS Model
- SiT9505 (FSPECL, GND 3.3 V) IBIS Model
- SiT9505 (FSPECL, VDD 3.3 V) IBIS Model
- SiT9505 (HCSL, 1.8 V) IBIS Model
- SiT9505 (HCSL, 2.5 V) IBIS Model
- SiT9505 (HCSL, 3.3 V) IBIS Model
- SiT9505 (LPHCSL, 2.5 V) IBIS Model
- SiT9505 (LPHCSL, 3.3 V) IBIS Model
- SiT9505 (LVDS, 1.8 V) IBIS Model
- SiT9505 (LVDS, 2.5 V) IBIS Model
- SiT9505 (LVDS, 3.3 V) IBIS Model
- SiT9505 (LVPECL, 2.5 V) IBIS Model
- SiT9505 (LVPECL, 3.3 V) IBIS Model
Frequency Slope (dF/dT) Calculator – Calculate frequency slope over temperature
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