FG28X7R1H102KNT06 TDK Capacitor (Other) In Stock
TDK FG28X7R1H102KNT06 is a 0.001 µF (1000 pF) X7R ceramic capacitor rated at 50 V DC in a radial through-hole package, standing 5.5 mm tall for easy hand or wave-soldering assembly. Delivers stable capacitance across temperature with X7R dielectric and RoHS-compliant construction. Available in stock with worldwide shipping.
- Manufacturer
- TDK
- Package
- Other
- Pin Count
- 2
- Lifecycle
- ACTIVE
- Datasheet
- FG28X7R1H102KNT06 Datasheet PDF
- Category
- Capacitor
- Temp Range
- -55.0°C to 125.0°C
- RoHS
- Compliant
- Lead Time
- 3–7 business days
- Shipping
- DHL Express · Worldwide
Key Features
- 0.001 µF (1000 pF) X7R ceramic dielectric maintains capacitance within ±10% from -55°C to +125°C for stable filtering and decoupling
- 50 V DC voltage rating with through-hole radial leaded form factor measuring 5.5 mm in height for robust PCB mounting
- RoHS-compliant (JESD-609 e3) lead-free construction meets global environmental regulations for commercial and industrial applications
Applications
The FG28X7R1H102KNT06 is used as a bypass or decoupling capacitor on through-hole PCBs in power supplies, motor drives, and industrial control circuits where stable capacitance at 50 V is required. Its X7R dielectric characteristic ensures less than ±15% capacitance variation over the -55°C to +125°C industrial temperature range, making it suitable for demanding thermal environments. The radial lead format simplifies wave-soldering and prototype assembly in low-volume production.
Specifications
| Pbfree Code | Yes |
| Reach Compliance Code | Compliant |
| Factory Lead Time | 24Weeks |
| YTEOL | 6.68 |
| Capacitance | 0.001 µF |
| Capacitor Type | CERAMIC CAPACITOR |
| Dielectric Material | CERAMIC |
| Height | 5.5mm |
| JESD-609 Code | e3 |
| Mounting Feature | THROUGH HOLE MOUNT |
| Multilayer | Yes |
| Negative Tolerance | 10% |
| Package Style | Radial |
| Packing Method | AMMO PACK |
| Positive Tolerance | 10% |
| Rated (DC) Voltage (URdc) | 50V |
| Surface Mount | NO |
| Temperature Characteristics Code | X7R |
| Temperature Coefficient | 15% ppm/°C |
| Terminal Finish | TIN OVER NICKEL |
| Terminal Pitch | 5mm |
| Terminal Shape | WIRE |
| Package | Other |
Compliance & Regulatory
| RoHS Status | Compliant |
| Lead-Free | Yes (Pb-Free) |
| ECCN | EAR99 |
| HTS Code | 8532.24.00.60 |
Alternate & Equivalent Parts
No known alternates. Submit an RFQ and our team can suggest alternatives.
Frequently Asked Questions
What capacitance and voltage rating does the FG28X7R1H102KNT06 provide?
The FG28X7R1H102KNT06 has a capacitance of 0.001 µF (1000 pF) with a voltage rating of 50 V DC. The X7R dielectric holds capacitance tolerance within ±10% and maintains stable performance from -55°C to +125°C, making it appropriate for decoupling and filtering duties in industrial and commercial power circuits.
How does the X7R dielectric class of FG28X7R1H102KNT06 compare to Y5V for temperature stability?
X7R dielectric in the FG28X7R1H102KNT06 limits capacitance change to ±15% over the -55°C to +125°C range, while Y5V can vary by -82% to +22% over a narrower range. For filter networks or timing circuits where predictable 1000 pF capacitance is critical, X7R provides superior stability, especially in environments with temperature swings above 85°C.
Is FG28X7R1H102KNT06 suitable for automated wave-solder assembly?
Yes, the FG28X7R1H102KNT06 is a radial leaded through-hole capacitor with a body height of 5.5 mm, fully compatible with automated axial and radial insertion equipment and standard wave-soldering profiles. Its lead-free (e3) termination complies with RoHS requirements, and the 24-week factory lead time should be factored into procurement planning for high-volume production runs.
Which bypass applications are best served by FG28X7R1H102KNT06's 1000 pF, 50 V rating?
At 1000 pF and 50 V, the FG28X7R1H102KNT06 is well-matched to high-frequency bypass on 24 V to 48 V industrial supply rails, RF stage decoupling, and EMI filtering at frequencies above 10 MHz where small capacitance values resonate efficiently. It performs reliably in motor-drive gate drivers, industrial sensor circuits, and 48 V telecom power supply boards requiring stable decoupling across a wide temperature range.
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