• Become a member
  • Log In
The Institution of Electronics
  • Home
  • About us
    • Our Objectives
    • Our History
    • Governance of the Institution
  • The Electron Magazine
    • 2024
      • 2024 – Winter
      • 2024 – Spring
      • 2024 – Summer
      • 2024 – Autumn
    • 2025
      • 2025 – Winter
      • 2025 – Spring
      • 2025 – Summer
      • 2025 – Autumn
    • 2026
      • 2026 – Winter
  • Members
    • Membership Grades and Fees
    • Members’ Resources
      • The Electron Newsletter
      • The Archives
  • Education and Projects
    • National Electronics Competition
    • Student Members’ Projects
    • Arkwright Engineering Scholarships
  • News
  • Contact Us
  • Menu Menu
Uncategorised

Silicon capacitors slash mounting area

Housed in tiny DFN0402-2 packages, silicon capacitors in Rohm’s BTD1RVFL series conserve space in smartphones and wearables. With dimensions of 0.4×0.2×0.185-mm, Rohm claims the devices are the industry’s smallest in a mass-produced surface-mount package. Further, the 0402 mounting area is just 0.08 mm2, approximately 55% smaller than the 0603 size package.

The silicon capacitors use a trench structure to increase the capacitance per unit area of the substrate. Miniaturization technology allows processing in 1-µm increments, which eliminates chipping during external formation and improves dimensional tolerances to within ±10 µm.

The first two devices in the lineup, the BTD1RVFL102 and BTD1RVFL471, have a rated voltage of 3.6 V and capacitance of 1000 pF and 470 pF, respectively. Capacitance tolerance is ±15%, and the parts operate over a temperature range of -55°C to +150°C. A built-in TVS protection element ensures high ESD resistance of ±8 kV. Five additional devices with capacitance ratings of 680 pF, 330 pF, 220 pF, 150 pF, and 100 pF are under development.

The BTD1RVFL102 and BTD1RVFL471 silicon capacitors are available now. Rohm is working on a second series for release in 2024 that will offer improved high-frequency characteristics for communication applications.

BTD1RVFL102 product page

BTD1RVFL471 product page

Rohm Semiconductor 

Find more datasheets on products like this one at Datasheets.com, searchable by category, part #, description, manufacturer, and more.

<!–
googletag.cmd.push(function() { googletag.display(‘div-gpt-ad-native’); });
–>

The post Silicon capacitors slash mounting area appeared first on EDN.

10 November 2023
http://institutionofelectronics.ac.uk/wp-content/uploads/2022/12/IOE_LOGO.png 0 0 http://institutionofelectronics.ac.uk/wp-content/uploads/2022/12/IOE_LOGO.png 2023-11-10 18:51:582023-11-10 18:51:58Silicon capacitors slash mounting area

Latest news

  • Radon: Level detection, risk determination, and as-needed mitigation13 August 2026 - 13:16
  • TI a first mover in CAN XL transceivers13 August 2026 - 10:13
  • Four-channel USB-UART IC boosts server management13 August 2026 - 05:08
  • eFuse speeds overcurrent detection13 August 2026 - 05:08
  • Memory platform tackles AI bottlenecks13 August 2026 - 05:08
  • 6.5-kV SiC MOSFET reaches 8-kV blocking13 August 2026 - 05:08
  • Made by Google 2026: This limited silicon-supply situation really sucks13 August 2026 - 05:08
  • Cheap and cheerful LMC555 RC PWM pulse generator12 August 2026 - 13:56
  • Record high wafer shipments. Can fabs keep pace?12 August 2026 - 07:51
  • Analog uncertainty-aware design: How it replaces Monte Carlo with certifiable yield intelligence11 August 2026 - 16:31
IOE LOGO 2

Become a member

click here

Become a member

click here

Become a subscriber

click here

Become a sponsor

click here

© Copyright - The Institution of Electronics | Website by WHD Solutions
  • Link to LinkedIn
  • Link to Facebook
  • Link to X
Link to: AI tool minimizes EM/IR impact on IC designs Link to: AI tool minimizes EM/IR impact on IC designs AI tool minimizes EM/IR impact on IC designs Link to: Ethernet PHYs offer flexible speed options Link to: Ethernet PHYs offer flexible speed options Ethernet PHYs offer flexible speed options
Scroll to top Scroll to top Scroll to top