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| Part Number: | LT05ZD106MAT2X |
|---|---|
| Manufacturer/Brand: | KYOCERA AVX |
| Part of Description: | CAP CER 10UF 10V X5R 0805 |
| Datasheets: |
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| RoHs Status: | Lead free / RoHs 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 | 10V |
| Tolerance | ±20% |
| Thickness (Max) | 0.037" (0.95mm) |
| Temperature Coefficient | X5R |
| Size / Dimension | 0.079" L x 0.049" W (2.01mm x 1.25mm) |
| Series | LT |
| Ratings | - |
| Package / Case | 0805 (2012 Metric) |
| Package | Tape & Reel (TR) |
| Product Attribute | Attribute Value |
|---|---|
| Operating Temperature | -55°C ~ 85°C |
| Mounting Type | Surface Mount, MLCC |
| Lead Style | - |
| Lead Spacing | - |
| Height - Seated (Max) | - |
| Features | Low Profile |
| Failure Rate | - |
| Capacitance | 10 µF |
| Applications | General Purpose |




For engineers tasked with specifying high-performing multi-layer ceramic capacitors (MLCCs) for compact and height-constrained designs, the LT05ZD106MAT2X from KYOCERA AVX represents a robust choice. This device is characterized as a 10μF, 10V, X5R MLCC in the 0805 (2012 metric) package. Its ±20% tolerance and Class II dielectric ensure a balanced combination of volumetric efficiency, electrical performance, and accessibility for standard surface mount processes.
The LT05ZD106MAT2X is part of KYOCERA AVX’s low profile LT series, specifically engineered to address market demands for capacitors with reliable capacitance retention and reduced height. This capacitor is particularly well-suited for decoupling and filtering applications where PCB space and component height are at a premium.
The LT series from KYOCERA AVX introduces a specialized range of low profile MLCC solutions utilizing X5R and, in extended ranges, X7R dielectrics. For the LT05ZD106MAT2X, the X5R dielectric delivers temperature stability with capacitance variation restricted to ±15% between -55°C and +85°C. Such Class II performance represents an optimal trade-off between capacitance density, cost, and temperature reliability. Package sizes across the series range from 0201 to 1210, empowering engineers with a diverse set of configuration options.
These low-profile capacitors are tailored for environments where traditional MLCCs would prove physically incompatible due to component height limitations. The LT series responds directly to the increasing need for miniaturization in power management, signal filtering, and mobile communication systems, while still upholding the dependability and performance benchmarks established by KYOCERA AVX.
The LT05ZD106MAT2X employs an X5R ceramic material, providing robust electrical stability for most general purpose decoupling and bulk storage tasks. Its rated capacitance of 10μF accommodates moderate energy storage, filtering, and noise suppression functions. The device’s voltage rating of 10V ensures compatibility with an array of consumer, industrial, and communication equipment operating at typical low-voltage rails.
Engineers should note the ±20% capacitance tolerance, which is standard for X5R-class MLCCs and reflects the inherent variability in the dielectric under fabrication and operational stresses. The X5R dielectric’s temperature coefficient maintains a predictable performance profile, crucial for supply-line decoupling and analog circuit stability.
One of the defining attributes of LT05ZD106MAT2X is its 0805 (2012 metric) package. This configuration presents an optimal balance between physical footprint and electrical capability, facilitating straightforward integration onto modern SMT (surface mount technology) assemblies. The low profile element of the LT series stands out, allowing placement in proximity to IC pads and internal layers where z-axis clearance is minimal, such as in dense power modules or slim wearable devices.
Mechanical reliability further supports automated pick-and-place processes, and the 0805 size is well-supported in manufacturers’ standard reflow and inspection protocols. This enables procurement teams to align LT05ZD106MAT2X with established manufacturing best practices, reducing supply and qualification hurdles often encountered with unconventional package outlines.
Given its electrical parameters and mechanical form, engineers will find LT05ZD106MAT2X particularly valuable for applications in decoupling high-speed digital ICs, filtering switch-mode power supply (SMPS) noise, and providing local energy storage in battery-powered modules. The low profile and 0805 size open up integration opportunities on double-sided or densely routed printed circuit boards.
In consumer electronics, it supports compact solutions in smartphones, tablets, and wearables where every micron of height clearance counts. In industrial and networking environments, the capacitor’s reliable operating temperature and voltage ratings make it ideal for robust, maintenance-free designs in controllers, communication modules, and sensor interfaces.
When evaluating alternatives to the LT05ZD106MAT2X, engineers should compare devices with the same 10μF/10V rating, X5R dielectric class, and 0805 footprint. Equivalent MLCCs from other industry-leading manufacturers often mirror these key characteristics, allowing for drop-in replacements with minimal design adjustment. Additionally, within KYOCERA AVX’s own LT series, variations with similar ratings or with the X7R dielectric may serve as alternatives for applications requiring extended temperature tolerance. Always confirm exact package dimensions and soldering profile compatibility during selection to ensure mechanical and thermal alignment with existing assembly lines.
: Selecting LT05ZD106MAT2X for Reliable Low-Profile Decoupling
The LT05ZD106MAT2X from KYOCERA AVX provides product selection engineers and procurement professionals with a solid, low-profile MLCC solution focused on reliability, manufacturability, and performance in tight spaces. By adhering to the technical guidelines and understanding its role within the broader LT series, stakeholders can confidently specify this capacitor in advanced electronic assemblies—optimizing board real estate and ensuring operational stability across a wide range of contemporary applications.
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