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Product Detailed Parameters
- Description:XTAL OSC PROG XO CMOS DWN SPRD
- Series:SG-9101
- Mfr:EPSON
- Package:Tube
- Base Resonator:Crystal
- Type:XO (Standard)
- Programmable Type:Programmed by Digi-Key (Enter your frequency in Web Order Notes)
- Available Frequency Range:670 kHz ~ 20 MHz
- Function:Standby
- Output:CMOS
- Voltage - Supply:1.62V ~ 3.63V
- Frequency Stability:-
- Frequency Stability (Total):-
- Operating Temperature:-40°C ~ 105°C
- Spread Spectrum Bandwidth:-0.50%, Down Spread
- Current - Supply (Max):-
- Ratings:-
- Mounting Type:Surface Mount
- Package / Case:4-SMD, No Lead
- Size / Dimension:0.197" L x 0.126" W (5.00mm x 3.20mm)
- Height - Seated (Max):0.051" (1.30mm)
- Supplier Device Package:4-SMD (5x3.2)
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Buying Guide
EPSON SG-9101CB-D05SHAAC is selected in Programmable Oscillators category when storage behavior must remain predictable across temperature and production variance. Key specs include Description (XTAL OSC PROG XO CMOS DWN SPRD), Type (XO (Standard)), Temperature (-40°C ~ 105°C), Package/case (4-SMD, No Lead), and Mounting (Surface Mount).
- For SG-9101CB-D05SHAAC, verify the package/case (4-SMD, No Lead) fits your mechanical constraints and assembly process.
- Confirm the supply voltage requirement (1.62V ~ 3.63V) and any rail tolerance constraints.
- Make sure the output type (CMOS) matches your interface requirements and levels.
- For SG-9101CB-D05SHAAC, candidates that preserve frequency 670 kHz ~ 20 MHz and type/output XO (Standard) are usually the best fit for the same synchronization job.
- For SG-9101CB-D05SHAAC, candidates that preserve frequency 670 kHz ~ 20 MHz and type/output XO (Standard) together are usually closer to the original part than options that match only one visible specification (key constraints: package 4-SMD, No Lead, supply 1.62V ~ 3.63V).
- For Programmable Oscillators, treat near-equivalent parts as good candidates only when they preserve the same function at the product level.
- A practical substitute usually keeps package/case 4-SMD, No Lead, supplier package 4-SMD (5x3.2), mounting Surface Mount stable before any secondary electrical trade-off is considered.
Any tips for reliable operation with SG-9101CB-D05SHAAC?
Ensure robust power sequencing, adequate decoupling capacitors, and verify signal integrity on high-speed data buses.
Can you confirm the Output for SG-9101CB-D05SHAAC?
CMOS
Which Spread Spectrum Bandwidth is specified for SG-9101CB-D05SHAAC?
-0.50%, Down Spread
Can you confirm the Programmable Type for SG-9101CB-D05SHAAC?
Programmed by Digi-Key (Enter your frequency in Web Order Notes)
Application Scenarios
For EPSON SG-9101CB-D05SHAAC used in Programmable Oscillators designs, engineers usually narrow the choice by checking the failure modes, measurement access, and constraints that still matter after layout. Timing devices are often chosen for predictable startup, stable jitter performance, and clean distribution across noisy boards. In real products, clock behavior is validated against EMI sources, power integrity, and enclosure coupling paths. Once those conditions are defined, the remaining application scenarios become much easier to rank and qualify. In telecom and networking, timing components keep Ethernet switches and line cards synchronized in 24/7 racks with limited airflow and strict jitter budgets. In high-speed digital designs, well-distributed clocks simplify timing closure and reduce re-spin risk caused by marginal setup/hold windows. When margins are designed in, performance tends to stay stable even when operating conditions are not ideal.
Compatibility Advice
- In EPSON SG-9101CB-D05SHAAC integration, in practice, check fan-out loading and termination so clock edges remain clean across the full distribution tree on the assembled PCB.
Project Fit
- Avoid relying on EPSON SG-9101CB-D05SHAAC in Programmable Oscillators designs when routing constraints prevent controlled impedance and clean return paths because the key behaviors cannot be confirmed on the assembled system.
- EPSON SG-9101CB-D05SHAAC tends to suit Programmable Oscillators builds when the team can measure and verify jitter and spurs during validation.
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