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| Part Number: | CL32F106ZLHNNNE |
|---|---|
| Manufacturer/Brand: | Samsung Electro-Mechanics |
| Part of Description: | CAP CER 10UF 35V Y5V 1210 |
| Datasheets: |
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| RoHs Status: | ROHS3 Compliant |
| Payment: | PayPal / Credit Card / T/T |
| Shipment Way: | DHL / Fedex / TNT / UPS / EMS |
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Ship From: Hong Kong
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| Product Attribute | Attribute Value |
|---|---|
| Voltage - Rated | 35V |
| Tolerance | -20%, +80% |
| Thickness (Max) | 0.071" (1.80mm) |
| Temperature Coefficient | Y5V (F) |
| Size / Dimension | 0.126" L x 0.098" W (3.20mm x 2.50mm) |
| Series | CL |
| Ratings | - |
| Package / Case | 1210 (3225 Metric) |
| Package | Tape & Reel (TR) |
| Product Attribute | Attribute Value |
|---|---|
| Operating Temperature | -30°C ~ 85°C |
| Mounting Type | Surface Mount, MLCC |
| Lead Style | - |
| Lead Spacing | - |
| Height - Seated (Max) | - |
| Features | - |
| Failure Rate | - |
| Capacitance | 10 µF |
| Applications | General Purpose |




Samsung Electro-Mechanics' CL32F106ZLHNNNE is a surface-mount multilayer ceramic capacitor (MLCC) designed for high-density electronic assemblies. This model features a 10μF nominal capacitance, a voltage rating of 35V, and utilizes a Y5V class dielectric in the 1210 (3225 metric) package. As part of Samsung's broader MLCC portfolio, the CL32F106ZLHNNNE is positioned for general-purpose filtering, energy storage, and noise suppression in digital, power, and communications hardware.
The CL32F106ZLHNNNE is built on multilayer ceramic technology, employing a ceramic body and metal terminations to achieve high capacitance in a compact form factor. The capacitor stack includes nickel inner electrodes, external tin-plated terminations for reliable solderability, and optional copper or epoxy layers depending on the variant. This model achieves a wide capacitance range within standard footprints, and its structural design supports high-speed PCB mounting, making it compatible with modern automated production lines.
A key attribute of Y5V dielectric capacitors is high volumetric efficiency—this enables higher capacitance values in the same package size compared to class I dielectrics. However, Y5V ceramics exhibit significant capacitance variation over temperature and voltage swings, factors that must be considered in application engineering. The 1210 case size balances volumetric efficiency with manufacturability, and the symmetric termination configuration is matched to standard solder pad layouts.
Samsung’s part identification for MLCCs, including the CL32F106ZLHNNNE, employs a structured alphanumeric code. This code reveals information about the series (CL for ceramic MLCCs), dimensions (32 refers to 1210 size), dielectric type (F for Y5V), and the capacitance value (106 indicates 10×10⁶ pF or 10μF). The sequence further captures the rated voltage (35V in this instance), packaging, and special characteristics such as inner electrode material or mounting form. Accurate decoding of the part number is essential for procurement professionals to ensure proper fit and function during the sourcing process.
The CL32F106ZLHNNNE is classified as a “Normal Capacitor_Standard” series model, suitable for most general-purpose electronic assemblies. It is RoHS compliant (ROHS3), has a Moisture Sensitivity Level (MSL) of 1 (unlimited floor life), and is unaffected by REACH regulations. The part carries the EAR99 ECCN export code, simplifying global logistics.
Capacitance stability is typical of Y5V dielectrics; users should anticipate -20% to +80% tolerance across the operating temperature range. The dissipation factor and insulation resistance are well-controlled for typical digital and power electronics, and the critical voltage and aging characteristics correspond to established EIA standards. With its 35V rating, it is suitable for bulk decoupling and secondary DC rail filtering, provided that derating practices are observed in the system power distribution.
The CL32F106ZLHNNNE is suitable for a wide range of technology platforms, including smartphones, tablets, SSD/HDD boards, displays, game consoles, and DC-DC converter circuits. In real-world scenarios, Y5V capacitors like this are frequently chosen for non-critical timing or signal-coupling applications, as well as for local bulk decoupling where cost and capacitance density are primary constraints and strict tight-tolerance or temperature-stable performance is not required.
Industrial uses extend to servers and networking equipment, where a combination of high-speed mounting capability and high capacitance is desired for mass deployment. The MLCC’s reliability profile matches that of products qualified for typical consumer and industrial electronic hardware, provided system engineers account for Y5V class limitations regarding temperature coefficient, DC bias effects, and long-term capacitance aging.
The 1210 (3225 metric) package of the CL32F106ZLHNNNE is compatible with standard SMT pick-and-place and reflow soldering processes. Samsung provides comprehensive packaging options for automated lines, including paper and plastic taping on reels, in accordance with IEC 60286-3 standards, with specific provisions for box and reel dimensions. The part’s robust external termination layers promote both solderability and mechanical durability.
Land pattern and mounting recommendations are to be closely followed for optimal solder joint reliability and to avoid mechanical stresses during PCB depaneling, board assembly, or rework. In high-density layouts, engineers must also factor in the self-heating potential and ensure that the capacitor's surface temperature, including any rise from ripple current, does not exceed specified operating limits. Proper adhesive and flux selection, as well as handling precautions to prevent ESD and excessive vibration or shock, are outlined in Samsung's guidelines.
Engineers are advised to account for the Y5V dielectric’s temperature and voltage dependence when deploying CL32F106ZLHNNNE—capacitance can significantly degrade under DC bias and with temperature excursion. This should be factored into derating strategies and in specifying the worst-case capacitance scenario for the target circuit. Y5V capacitors are also subject to aging, with a logarithmic decrease in capacitance over time; periodic recalibration or specifying additional margin may be warranted for long-life applications.
Mechanical and thermal stresses during reflow, wave soldering, cleaning, and board handling can induce micro-cracking and reduce lifetime reliability. Proper mounting direction, support during cutting and connector assembly, and capping of maximum applied torque are all critical in high-reliability designs. Observing these best practices minimizes field failures due to mechanical shock or electrical overstress.
When seeking alternatives to the CL32F106ZLHNNNE, consider other MLCCs with a 10μF capacitance, 35V minimum rating, and a 1210 (3225) SMT footprint. Key equivalents must match the Y5V dielectric class, as performance characteristics notably diverge between dielectric types (e.g., X7R or X5R variants offer greater temperature stability but at different capacitance densities). Cross-reference options include models from other major MLCC manufacturers who produce 1210/3225 10μF 35V Y5V series—critical evaluation points are voltage derating, capacitance tolerance, temperature coefficient, and terminations suited for the same assembly processes.
Before finalizing any replacement, verify all relevant electrical parameters, reliability data, regulatory compliance, and package specifications to guarantee direct interchangeability and maintain both compliance and system performance.
The Samsung Electro-Mechanics CL32F106ZLHNNNE is a flexible standard MLCC solution offering high volumetric capacitance in the popular 1210 format. It is especially suited for consumer, IT, and light industrial applications where cost efficiency and mounting compatibility are critical, but where design engineers can accommodate the broader tolerances and stability characteristics inherent to the Y5V dielectric. A thorough understanding of both the technical capabilities and limitations of the CL32F106ZLHNNNE ensures its optimal and reliable deployment in today’s complex electronic assemblies. For replacements, careful matching of electrical characteristics, dimensions, and regulatory status is essential to uphold system integrity.
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