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ROHS豁免扩展申请

ROHS豁免扩展申请在几分钟内

欧盟ROHS的豁免通常对于制造商来说是必不可少的,尤其是在复杂的工业应用中。 但是,这些豁免有到期的日期 - 缺少续签截止日期可能会导致昂贵的中断,需要寻找替代材料,甚至失去欧盟的市场通道。

如果您至少申请扩展 豁免到期前的18个月 ,欧洲委员会可以给您一个 续约长达5 - 7年

使用我们的AI驱动ROHS豁免工具自动化该过程

在ComplyMarket,我们开发了一个AI工具 短短几分钟就为您准备完整的ROHS豁免扩展应用程序
只有对您的业务和有关豁免的最少输入,我们的平台就会生成一个现成的提交应用程序,与欧盟ROHS的要求相吻合。

您会收到:

  • 一个 完全格式的应用程序 准备提交
  • 根据您的回答预先填写的所有必需部分
  • 有关如何完成和提交申请的指南

如何提交您的申请

生成后,您可以直接发送该应用程序:

ROHS政策官
欧洲委员会
DG环境
单位环境/A2 - 废物管理和回收
De Beaulieu大道(BU)9 -5/1-6
B-116-布鲁塞尔
比利时

批量请求的特别折扣, 联系我们 现在你会付款 100 €/ 报告

要开始,

  • 输入产品组件的名称,您想知道: “公司名称”
  • 输入名称 “国家名称” ,您想在哪里出售这篇文章。
选择一个选项
6(a)
6(a)

Lead as an alloying element in steel for machining purposes and in galvanised steel containing up to 0,35 % lead by weight

6(a)-I
6(a)-I

Lead as an alloying element in steel for machining purposes containing up to 0,35% lead by weight*

6(a)-II
6(a)-II

Lead as an alloying element in batch hot-dip galvanised steel components containing up to 0,2% lead by weight*

6(b)
6(b)

Lead as an alloying element in aluminium containing up to 0,4% lead by weight

6(b)-I
6(b)-I

Lead as an alloying element in aluminium containing up to 0,4% lead by weight, provided it stems from lead-bearing aluminium scrap recycling*

6(b)-II
6(b)-II

Lead as an alloying element in aluminium for machining purposes with a lead content up to 0,4% by weight*

6(b)-III
6(b)-III

Lead as an alloying element in aluminium casting alloys containing up to 0,3% lead by weight provided

7(a)
7(a)

Lead in high melting temperature type solders (i.e., lead-based alloys containing 85% by weight or more lead)

7(a)-I
7(a)-I

for internal interconnections for attaching die, or other components along with a die in semiconductor assembly with steady state or transient/impulse currents of 0.1 A or greater or blocking voltages beyond 10 V, or die edge sizes larger than 0.3 mm x 0.3 mm

7(a)-II
7(a)-II

Lead in high melting temperature type solders (i.e., lead-based alloys containing 85% by weight or more lead) for integral (meaning internal and external) connections of die attach in electrical and electronic components, if all the following conditions are met:

  • the thermal conductivity of the cured/sintered die-attach material is >35W/(m*K),
  • the electrical conductivity of the cured/sintered die-attach material is >4.7MS/m,
  • solidus melting temperature is higher than 260°C
7(a)-III
7(a)-III

Lead in high melting temperature type solders (i.e., lead-based alloys containing 85% by weight or more lead)

in first level solder joints (internal or integral connections - meaning internal and external) for manufacturing components so that subsequent mounting of electronic components onto subassemblies (i.e. modules, sub-circuit boards, substrates, or point-to-point soldering) with a secondary solder does not reflow the first level solder. This sub-entry excludes die attach applications and hermetic sealings

7(a)-IV
7(a)-IV

Lead in high melting temperature type solders (i.e., lead-based alloys containing 85% by weight or more lead) in second level solder joints for the attachment of components to printed circuit board or lead frames:

  1. in solder balls for the attachment of ceramic ball-grid-array (BGA)
  2. in high temperature plastic overmouldings (> 220 °C)
7(a)-V
7(a)-V

Lead in high melting temperature type solders (i.e., lead-based alloys containing 85% by weight or more lead) as a hermetic sealing material between:

  1. a ceramic package or plug and a metal case,
  2. component terminations and an internal sub-part
7(a)-VI
7(a)-VI

Lead in high melting temperature type solders (i.e., lead-based alloys containing 85% by weight or more lead) for establishing electrical connections between lamp components in incandescent reflector lamps for infrared heating, high intensity discharge lamps, or oven lamps

7(a)-VII
7(a)-VII

Lead in high melting temperature type solders (i.e., lead-based alloys containing 85% by weight or more lead) for audio transducers where the peak operating temperature exceeds 200°C.

7(c)-I
7(c)-I

Electrical and electronic components containing lead in a glass or ceramic other than dielectric ceramic in capacitors, e.g. piezoelectronic devices, or in a glass or ceramic matrix compound.

7(c)-II
7(c)-II

Lead in dielectric ceramic in capacitors for a rated voltage of 125 V AC or 250 V DC or higher excluding applications covered by point 7(c)-I or 7(c)-IV.

7(c)-V
7(c)-V

Electrical and electronic components containing lead in a glass or glass matrix compound that fulfils any of the following functions:

  1. for protection and electrical insulation in glass beads of high-voltage diodes and glass layers for wafers on the basis of a lead-zinc-borate or a lead-silica-borate glass body; 
  2. for hermetic sealing between ceramic, metal and/or glass parts; 
  3. for bonding purposes in a process parameter window for < 500 °C combined with a viscosity of 1013.3 dPas (‘glass-transition temperature’); 
  4. for use as a resistive material such as ink, with a resistivity range from 1 ohm/square to 1 megohm/square, excluding trimmer potentiometers; 
  5. for use in chemically modified glass surfaces for microchannel plates (MCPs), channel electron multipliers (CEMs) and resistive glass products (RGPs). Applies to all categories and expires on 31 December 2027.
7(c)-VI
7(c)-VI

Electrical and electronic components containing lead in a ceramic that fulfils any of the following functions (excluding items covered by points 7(c)-II, 7(c)-III and 7(c)-IV of this Annex as well as point 14 of Annex IV):

  1. for use in piezoelectric lead zirconium titanate (PZT) ceramics; 
  2. for providing ceramics with a positive temperature coefficient (PTC).
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