EP1702499B2

Combined material layering technologies for electric heaters

Abstract

This record has no abstract on file.

EP1702499B2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Expired 5 January 2025, 1.7 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

9 claims: 2 independent, 7 dependent

  1. 1
    A layered heater (10) comprising:a plurality of resistive layers (16, 42) and a plurality of dielectric layers (44), wherein a first dielectric layer (44) is formed on a first resistive layer (42), a second resistive layer (42) is formed on the first dielectric layer (44), and a second dielectric layer (44) is formed on the second resistive layer (42), such that first and second resistive layers (42) are separated from one another by the first dielectric layer (44), wherein the plurality of resistive layers (42) and dielectric layers (44) are formed by at least one layered process, characterized in that a discrete component is embedded by employing a layered process within the layered heater (10).
  2. 2
    The layered heater (10) according to Claim 1, wherein the layered process is selected from a group consisting of thick film, thin film, thermal spray and sol-gel.
  3. 3
    The layered heater (10) according to one of the preceding Claims, wherein the first resistive layer (42) is formed on a protective layer (18), the protective layer (18) being formed on a third resistive layer (16).
  4. 4
    The layered heater (10) according to Claim 3, wherein the third resistive layer (16) is formed on a third dielectric layer (14).
  5. 5
    The layered heater (10) according to Claim 4, wherein the third dielectric layer (14) is formed on a substrate (12).
  6. 6
    The layered heater (10) according to Claim 5, wherein the substrate (12) is selected from a group consisting of nickel-plated copper, aluminum, stainless steel, mild steel, tool steel, refractory alloy, aluminum oxide, and aluminum nitride.
  7. 7
    The layered heater (10) according to Claim 1, further comprising at least one conductor pad (20) in contact at least one of the resistive layers (16, 42).
  8. 8
    The layered heater (10) according to Claim 5, wherein the conductor pad (20) is formed by a layered process selected from a group consisting of thick film, thin film, thermal spray, and sol-gel.
  9. 9
    The layered heater (10) according to Claim 1 further comprising:a two-wire controller in communication with the layered heater (10), wherein at least one of the resistive layers (16, 42) has sufficient temperature coefficient of resistance characteristics such that the resistive layer (16, 42) is a heater element and a temperature sensor and the two-wire controller determines temperature of the layered heater (10) using the resistance of the resistive layer (16, 42) and controls heater temperature accordingly.