Datasheets
CY2309CSXC-1 by:
Cypress Semiconductor
Cypress Semiconductor
Infineon Technologies AG
Rochester Electronics LLC
Not Found

PLL Based Clock Driver, 2309 Series, 8 True Output(s), 0 Inverted Output(s), PDSO16, SOIC-16

Part Details for CY2309CSXC-1 by Cypress Semiconductor

Results Overview of CY2309CSXC-1 by Cypress Semiconductor

Tip: Data for a part may vary between manufacturers. You can filter for manufacturers on the top of the page next to the part image and part number.

Applications Aerospace and Defense

CY2309CSXC-1 Information

CY2309CSXC-1 by Cypress Semiconductor is a Clock Driver.
Clock Drivers are under the broader part category of Logic Components.

Digital logic governs the behavior of signals in electronic circuits, enabling complex decisions based on simple binary inputs (yes/no). Logic components perform operations from these signals. Read more about Logic Components on our Logic part category page.

Price & Stock for CY2309CSXC-1

Part # Distributor Description Stock Price Buy
Bristol Electronics   230
RFQ
Quest Components   184
  • 1 $7.2000
  • 15 $4.8000
  • 53 $4.4400
$4.4400 / $7.2000 Buy Now
Rochester Electronics CY2309 - Low Cost 3.3 V Zero Delay Buffer RoHS: Compliant Status: Obsolete Min Qty: 1 10158
  • 1 $3.3600
  • 25 $3.2900
  • 100 $3.1600
  • 500 $3.0200
  • 1,000 $2.8600
$2.8600 / $3.3600 Buy Now

Part Details for CY2309CSXC-1

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CY2309CSXC-1 Part Data Attributes

CY2309CSXC-1 Cypress Semiconductor
Buy Now Datasheet
Compare Parts:
CY2309CSXC-1 Cypress Semiconductor PLL Based Clock Driver, 2309 Series, 8 True Output(s), 0 Inverted Output(s), PDSO16, SOIC-16
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Pbfree Code Yes
Rohs Code Yes
Part Life Cycle Code Obsolete
Ihs Manufacturer CYPRESS SEMICONDUCTOR CORP
Part Package Code SOIC
Package Description SOIC-16
Pin Count 16
Reach Compliance Code compliant
HTS Code 8542.39.00.01
Family 2309
Input Conditioning STANDARD
JESD-30 Code R-PDSO-G16
JESD-609 Code e4
Length 9.893 mm
Logic IC Type PLL BASED CLOCK DRIVER
Max I(ol) 0.008 A
Moisture Sensitivity Level 3
Number of Functions 1
Number of Inverted Outputs
Number of Terminals 16
Number of True Outputs 8
Operating Temperature-Max 70 °C
Operating Temperature-Min
Output Characteristics 3-STATE
Package Body Material PLASTIC/EPOXY
Package Code SOP
Package Equivalence Code SOP16,.25
Package Shape RECTANGULAR
Package Style SMALL OUTLINE
Peak Reflow Temperature (Cel) 260
Propagation Delay (tpd) 8.7 ns
Qualification Status Not Qualified
Same Edge Skew-Max (tskwd) 0.2 ns
Seated Height-Max 1.727 mm
Supply Voltage-Max (Vsup) 3.6 V
Supply Voltage-Min (Vsup) 3 V
Supply Voltage-Nom (Vsup) 3.3 V
Surface Mount YES
Temperature Grade COMMERCIAL
Terminal Finish NICKEL PALLADIUM GOLD
Terminal Form GULL WING
Terminal Pitch 1.27 mm
Terminal Position DUAL
Time@Peak Reflow Temperature-Max (s) 40
Width 3.8985 mm
fmax-Min 133.33 MHz

Alternate Parts for CY2309CSXC-1

This table gives cross-reference parts and alternative options found for CY2309CSXC-1. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of CY2309CSXC-1, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
MC10EL11DTG onsemi Check for Price Clock / Data Fanout Buffer, 1:2 Differential, ECL, 5.0 V, TSSOP 8 3.0x3.0x0.95 mm, 100-TUBE CY2309CSXC-1 vs MC10EL11DTG
PI49FCT20803L Pericom Semiconductor Corporation Check for Price Low Skew Clock Driver, FCT Series, 7 True Output(s), 0 Inverted Output(s), CMOS, PDSO16, 0.173 INCH, TSSOP-16 CY2309CSXC-1 vs PI49FCT20803L
PI6C2405-1HWI Pericom Semiconductor Corporation Check for Price PLL Based Clock Driver, 6C Series, 5 True Output(s), 0 Inverted Output(s), PDSO8, 0.150 INCH, SOIC-8 CY2309CSXC-1 vs PI6C2405-1HWI
LMK00304SQE Texas Instruments Check for Price IC LOW SKEW CLOCK DRIVER, Clock Driver CY2309CSXC-1 vs LMK00304SQE
ICS842AFLF-T Renesas Electronics Corporation Check for Price PLL Based Clock Driver, 95V Series, 1 True Output(s), 0 Inverted Output(s), PDSO16 CY2309CSXC-1 vs ICS842AFLF-T
ICS2309M-1HLF Integrated Device Technology Inc Check for Price PLL Based Clock Driver, 2309 Series, 8 True Output(s), 0 Inverted Output(s), CMOS, PDSO16, 0.150 INCH, ROHS COMPLIANT, SOIC-16 CY2309CSXC-1 vs ICS2309M-1HLF
IDT74FCT807CTQ Integrated Device Technology Inc Check for Price Low Skew Clock Driver, FCT Series, 10 True Output(s), 0 Inverted Output(s), CMOS, PDSO20, QSOP-20 CY2309CSXC-1 vs IDT74FCT807CTQ
PI6C2309-1LIX Pericom Semiconductor Corporation Check for Price PLL Based Clock Driver, 6C Series, 9 True Output(s), 0 Inverted Output(s), PDSO16, 0.173 INCH, TSSOP-16 CY2309CSXC-1 vs PI6C2309-1LIX
PI6C2308A-1LIX Pericom Semiconductor Corporation Check for Price PLL Based Clock Driver, 6C Series, 8 True Output(s), 0 Inverted Output(s), PDSO16, TSSOP-16 CY2309CSXC-1 vs PI6C2308A-1LIX
PI6C2408-1WX Pericom Semiconductor Corporation Check for Price PLL Based Clock Driver, 6C Series, 8 True Output(s), 0 Inverted Output(s), PDSO16, 0.150 INCH, SOIC-16 CY2309CSXC-1 vs PI6C2408-1WX

CY2309CSXC-1 Related Parts

CY2309CSXC-1 Frequently Asked Questions (FAQ)

  • The recommended operating temperature range for the CY2309CSXC-1 is -40°C to +85°C.

  • The clock output frequency of the CY2309CSXC-1 can be configured by setting the appropriate values for the M, N, and R registers. Refer to the datasheet for the calculation formula and register settings.

  • The maximum clock frequency that the CY2309CSXC-1 can support is 200 MHz.

  • Yes, the CY2309CSXC-1 can be used as a clock generator for PCIe applications. It meets the PCIe specification for clock jitter and frequency accuracy.

  • To ensure proper power-up and initialization, follow the power-up sequence and initialization procedure outlined in the datasheet. This includes setting the appropriate voltage levels, waiting for the power-on reset (POR) signal to settle, and then configuring the device registers.