Zero Bias Silicon Schottky Barrier Detector Diodes
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- Maximillian Lucas
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1 DATA SHEET Zero Bias Silicon Schottky Barrier Detector Diodes Features High sensitivity Low video impedance Description Skyworks series of packaged, beam-lead and chip zero bias Schottky barrier detector diodes are designed for applications through K band. The choice of barrier metal and process techniques results in a diode with a wide selection of video impedance ranges. The packaged diodes are suitable for use in waveguide, coaxial and stripline applications. The beam-lead and chip diodes can also be mounted in a variety of packages. Unmounted beam-lead diodes are especially well suited for use in MIC applications. Mounted beam-lead diodes can be easily used in MIC, stripline and other such circuitry. A complete line of chips is shown for those MIC applications where the chip and wire approach is more desirable. Applications The zero bias Schottky detector diodes are designed for detector applications through 6 GHz and are useful to 40 GHz. They require no bias and operate efficiently even at tangential signal power levels. Since they require no bias, noise is at a minimum. Their low video impedance means a short R-C time constant and hence wide video bandwidth and excellent pulse fidelity. As power monitors, these diodes may also be used to drive metering circuits directly even at low power input levels. These diodes are categorized by TSS (Tangential Signal Sensitivity), voltage output and video impedance for detector applications. TSS is the parameter that best describes a diode s use as a video detector. It is defined as the amount of signal power, below a one milliwatt reference level, required to produce an output pulse whose amplitude is sufficient to raise the noise fluctuations by an amount equal to the average noise level. TSS is approximately 4 db above the Minimum Detectable Signal. Voltage output is another useful parameter, since it can be used in the design of threshold detectors and power monitor circuits. Since voltage output is a function of the diode s video impedance, a different minimum value is specified for each video impedance range. Figure is a plot of the forward DC characteristics. In Figure voltage output is plotted as a function of power input for diodes of various video impedances. Tangential Signal Sensitivity as a function of video impedance is shown in Figure 3. Figure 4 shows two typical detector circuits. The multi-octave high-sensitivity circuit would be used in ECM and similar applications. An RF matching structure that will present the maximum power at the diode junction must be incorporated to insure maximum sensitivity. The broadband low-sensitivity circuit would be used where low input VSWR is required. In this circuit the low VSWR is accomplished by the use of the 50 Ω terminating resistor. Sensitivity, however, is degraded by typically 0 db from the multi-octave high-sensitivity circuit. The most common use for this circuit is in the broadband, flat detector used primarily in the laboratory Rev. A Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice. August 5, 008
2 Electrical Specifications at 5 C Part Number Min. EO (mv) Z V (Ω) Min. T SS (dbm) Outling Drawing DDC DDC CDC CDC Epoxy and Hermetic Packages Epoxy Stripline 50 Hermetic Pill 07 Hermetic Pill 03 Hermetic 09 Hermetic 0 DDC CDC CDC SMS DDC353-0 DDC CDC CDC SMS DDC354-0 Typical Performance Data Forward Current (ma) Low Video Impedance Types High Video Impedance Types Forward Voltage (mv) Zero Bias Schottky Detector Diodes Figure. Typical Forward DC Characteristics Tangential Signal Sensitivity (-dbm) Test Conditions: Video BW = 0 MHz Video Impedance (Ω) Typical Zero Bias X-Band Detector Diodes Figure 3. Tangential Signal Sensitivity vs. Video Impedance Input RF Bypass Video Output Voltage Output, mv Z V = 0 kω Z V = 400 kω Z V = kω Test Conditions: F = GHz R L = 0 MΩ Input DC Return Multi-Octave High-Sensitivity RF Bypass Load Resistor Video Output Power Input, dbm Load Resistor Typical Zero Bias X-Band Detector Diodes Figure. Voltage Output vs. Power Input As a Function of Video Impedance Broadband Low-Sensitivity Figure 4. Typical Video Detector Circuits August 5, 008 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice Rev. A
3 Typical I-V Characteristics K 0 K 50 K K Temperature ( C) Voltage Output vs Resistance at 0 dbm vs. Temperature C P IN (dbm) Transfer at -40, 5, 90 C R L = kω K 50 K 0 K K Temperature ( C) Voltage Output vs. Resistance at -0 dbm vs. Temperature C P IN (dbm) Transfer at -40, 5, 90 C R L = 00 kω K 50K 3 0K K Temperature ( C) Voltage Output vs. Resistance at -30 dbm vs. Temperature C Rev. A Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice. August 5, 008 3
4 (0.33 mm) 0.0 (0.8 mm) N-Type 0.0 (0.8 mm) (0.3 mm) (0.5 mm) (0.0 mm) Plcs (.7 mm) (.0 mm) (0.3 mm) (0.8 mm) (0.3 mm) (0.8 mm) (.40 mm) 0.05 (.30 mm) Dia (0.05 mm) (0.005 mm) Top View (0.06 mm) Max Max. Typ ± Cathode/Bonding Pad Diameter Typ Max. Typ. Cathode Pin Indicator 0.45 ± 0.05 Plcs. Bottom View 0.03 (0.33 mm) 0.0 (0.8 mm).83 ± (Max.) Gold-Plated Kovar Lid 0.03 (0.33 mm) 0.0 (0.8 mm).43 ± 0.0 X X 0.5 Typ (0.6 mm) (0.65 mm) All dimensions in mm Top View Side View Backside Contact (Andode) Gold Metalization 4 August 5, 008 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice Rev. A
5 (.63 mm) (.5 mm) Dia. Plcs (.8 mm) Max. Dia. P-type N-type Colored Dot Denotes Cathode 50 Deg. 40 Deg (.54 mm) Dia (.8 mm) 0.0 (.79 mm) Plcs (0.45 mm) 0. (0.55 mm) Plcs. Metal Ceramic (0.08 mm) (0.3 mm) Epoxy Encapsulation Au-Plated Leads 0.08 (0.45 mm) 0. (0.55 mm) (.0 mm) ±0.006 (.78 mm) 0.00 (5.08 mm) Nom (.7 mm) Max (.63 mm) ±0.00 (.5 mm) Plcs Metal (0) (.73 mm) (.63 mm) Dia (4.70 mm) 0.45 (3.68 mm) 3 Plcs. Colored Dot Denotes Cathode (.78 mm) Sq. 0.0 (0.56 mm) 0.08 (0.46 mm) 3 Plcs (0.3 mm) (0.08 mm) 3 Plcs (.07 mm) 0.08 (0.7 mm) Rev. A Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice. August 5, 008 5
6 Copyright 00, 003, 004, 005, 006, 007, 008, Skyworks Solutions, Inc. All Rights Reserved. Information in this document is provided in connection with Skyworks Solutions, Inc. ( Skyworks ) products or services. These materials, including the information contained herein, are provided by Skyworks as a service to its customers and may be used for informational purposes only by the customer. Skyworks assumes no responsibility for errors or omissions in these materials or the information contained herein. Skyworks may change its documentation, products, services, specifications or product descriptions at any time, without notice. Skyworks makes no commitment to update the materials or information and shall have no responsibility whatsoever for conflicts, incompatibilities, or other difficulties arising from any future changes. No license, whether express, implied, by estoppel or otherwise, is granted to any intellectual property rights by this document. Skyworks assumes no liability for any materials, products or information provided hereunder, including the sale, distribution, reproduction or use of Skyworks products, information or materials, except as may be provided in Skyworks Terms and Conditions of Sale. THE MATERIALS, PRODUCTS AND INFORMATION ARE PROVIDED AS IS WITHOUT WARRANTY OF ANY KIND, WHETHER EXPRESS, IMPLIED, STATUTORY, OR OTHERWISE, INCLUDING FITNESS FOR A PARTICULAR PURPOSE OR USE, MERCHANTABILITY, PERFORMANCE, QUALITY OR NON-INFRINGEMENT OF ANY INTELLECTUAL PROPERTY RIGHT; ALL SUCH WARRANTIES ARE HEREBY EXPRESSLY DISCLAIMED. SKYWORKS DOES NOT WARRANT THE ACCURACY OR COMPLETENESS OF THE INFORMATION, TEXT, GRAPHICS OR OTHER ITEMS CONTAINED WITHIN THESE MATERIALS. SKYWORKS SHALL NOT BE LIABLE FOR ANY DAMAGES, INCLUDING BUT NOT LIMITED TO ANY SPECIAL, INDIRECT, INCIDENTAL, STATUTORY, OR CONSEQUENTIAL DAMAGES, INCLUDING WITHOUT LIMITATION, LOST REVENUES OR LOST PROFITS THAT MAY RESULT FROM THE USE OF THE MATERIALS OR INFORMATION, WHETHER OR NOT THE RECIPIENT OF MATERIALS HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. Skyworks products are not intended for use in medical, lifesaving or life-sustaining applications, or other equipment in which the failure of the Skyworks products could lead to personal injury, death, physical or environmental damage. Skyworks customers using or selling Skyworks products for use in such applications do so at their own risk and agree to fully indemnify Skyworks for any damages resulting from such improper use or sale. Customers are responsible for their products and applications using Skyworks products, which may deviate from published specifications as a result of design defects, errors, or operation of products outside of published parameters or design specifications. Customers should include design and operating safeguards to minimize these and other risks. Skyworks assumes no liability for applications assistance, customer product design, or damage to any equipment resulting from the use of Skyworks products outside of stated published specifications or parameters. Skyworks, the Skyworks symbol, and Breakthrough Simplicity are trademarks or registered trademarks of Skyworks Solutions, Inc., in the United States and other countries. Third-party brands and names are for identification purposes only, and are the property of their respective owners. Additional information, including relevant terms and conditions, posted at are incorporated by reference. 6 August 5, 008 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice Rev. A
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