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Product Detailed Parameters
- Description:IC DB1200ZL OEM MUX DERIV 72QFN
- Series:-
- Package:Tray
- Mfr:Renesas Electronics Corporation
- PLL:Yes with Bypass
- Input:HCSL
- Output:HCSL
- Number of Circuits:1
- Ratio - Input:Output:2:12
- Differential - Input:Output:Yes/Yes
- Frequency - Max:400MHz
- Divider/Multiplier:No/No
- Voltage - Supply:3.135V ~ 3.465V
- Operating Temperature:-40°C ~ 85°C
- Mounting Type:Surface Mount
- Package / Case:72-VFQFN Exposed Pad
- Supplier Device Package:72-VFQFPN (10x10)
- Type:-
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Overview
The Renesas 9ZML1232EKILF is a clock buffer from the 9ZML1232E series, designed for low-power applications. It features 12 LP-HCSL outputs and accepts HCSL inputs with a maximum frequency of 150 MHz. The device operates within a supply voltage range of 3.135 V to 3.465 V and consumes approximately 13 mA. Packaged in a VFQFPN-72 format, it supports an operating temperature range from -40°C to +85°C.
Feature Summary
- 12 Output LP-HCSL Clock Buffer
- HCSL Input Interface
- Maximum Frequency of 150 MHz
- VFQFPN-72 Package
Applications
- Server Topologies
- DB1200ZL MUX Derivative Systems
- Low Power Clock Distribution
Procurement Notes
Verify the specific suffix 'KILF' against official Renesas documentation to confirm package dimensions and tape/reel specifications. Ensure compatibility with the 9ZML1232E family requirements before integration into designs.
Selection Notes
Select this component when a low-power solution with LP-HCSL outputs is required for systems utilizing HCSL sources up to 150 MHz. Confirm that the 12-channel output count meets the system's clock distribution needs.
Part Context
This part belongs to the 9ZML1232E series, which serves as a pin-compatible upgrade path for previous generations like the 9ZML1232B. It is categorized under Renesas' clock and timer ICs, specifically targeting low-power clock buffering applications.
Replacement Considerations
The 9ZML1232EKILFT is a verified substitute variant within the same series, differing primarily in packaging quantity or reel configuration rather than electrical function.
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