ZXHF-K912 MINI | Alldatasheet

Document overview

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Technical content

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits Page 2 of 3 The Big Deal

  • Patented design eliminates in band spurs
  • Pass band cut-off up to 18.3 GHz
  • Stop band up to 30 GHz Product Overview Mini-Circuits’ ZXHF Series reflectionless filters employs a novel filter topology which absorbs and terminates stop band signals internally rather than reflecting them back to the source. Reflectionless filters eliminate stopband reflections, allowing them to be paired with sensitive devices and used in applications that otherwise require circuits such as isolation amplifiers or attenuators. This is developed in a new broadband, stable connectorized package. Key Features ZXHF Series 50Ω DC to 30 GHz High Pass Filter Coaxial Reflectionless Feature Advantages Easy integration with sensitive reflective components, e.g. mixers, multipliers Reflectionless filters absorb unwanted signals, preventing reflections back to the source. This reduces generation of additional unwanted signals without the need for extra com- ponents like attenuators, improving system dynamic range. Cascadable Reflectionless filters can be cascaded in multiple sections to provide sharper and higher attenuation, while also preventing any standing waves that could affect pass band signals. Excellent stability over temperature Ensures minimal variation in electrical performance across temperature. Operating temperature up to 105˚C Suitable for operation close to high power components. Broadband connectorized package The connectorized package works well even in high frequencies and easy to interface with other devices. This is well suited for test setups. Page 1 of 3

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits Page 2 of 3 Coaxial Reflectionless ZXHF-K912+

Applications

  • Wi-Fi
  • WiMax
  • Microwave Radio
  • Military & Space Electrical Specifications at 25°C REV.OR ECO-002107 ZXHF-K912+ EDU3714 URJ 200309

Features

  • Match to 50Ω in the stop band, eliminates undesired reflections
  • Cascadable
  • Temperature stable, up to 105°C
  • Protected by US Patent No. 8,392,495 Typical Frequency Response Functional Schematic 50Ω 9.1 to 30 GHz High Pass Filter FREQUENCY (MHz) INSERTION LOSS (dB) DC F6F3 F4F2 F5 Parameter F# Frequency (MHz) Min. Typ. Max. Unit Stop Band Rejection DC-F1 DC- 1400 - 6.9 - dB F1-F2 1400 - 7100 12 14.3 - dB Freq. Cut-Off F3 8200 - 3.0 - dB VSWR DC-F1 DC - 1400 - 2.7 - :1 F1-F2 1400 - 7100 2.1 - :1 Pass Band Insertion Loss F4-F5 9100 - 16000 - 2.0 - dB F5-F6 16000 - 30000 - 2.6 - dB VSWR F4-F5 9100 - 16000 - 1.7 - :1 F5-F6 16000 - 30000 - 2.4 - :1 CASE STYLE: UK3042 Connectors Model 2.92mm-F ZXHF-K912+ Absolute Maximum Ratings3 Parameter Ratings Operating Temperature -55°C to +105°C Storage Temperature -55°C to +105°C RF Power Input, Passband (F4-F6)1 1.26W at 25°C RF Power Input, Stopband (DC-F4)2 0.25W at 25°C 1 Passband rating derates linearly to 0.63W at 105°C ambient 2 Stopband rating derates linearly to 0.12W at 105°C ambient

3 Permanent damage may occur if any of these limits are exceeded

+RoHS Compliant The +Suffix identifies RoHS Compliance. See our web site for RoHS Compliance methodologies and qualifications ESD rating Human body model (HBM): Class 1A(250 to<500 V) in accordance with ANSI/ESD STM 5.1-2001 Frequency (MHz) Insertion Loss (dB) VSWR (:1) 10 6.86 2.70 100 6.86 2.66 500 8.16 2.52 1000 11.71 2.19 1400 15.78 1.95 2000 21.16 1.69 3000 20.11 1.39 4300 29.69 1.22 5000 20.55 1.33 7000 18.17 1.46 7100 15.44 1.42 8000 4.59 1.18 8200 3.69 1.13 9100 1.91 1.11 9200 1.81 1.12 10000 1.46 1.15 16000 1.20 1.37 20000 1.21 1.18 25000 2.18 2.21 30000 2.54 1.97 Typical Performance Data at 25°C 0 5000 10000 15000 20000 25000 30000 INSERTION LOSS (dB) FREQUENCY (MHz) ZXHF-K912+ INSERTION LOSS 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.4 2.6 2.8 3.0 0 5000 10000 15000 20000 25000 30000 VSWR FREQUENCY (MHz) ZXHF-K912+ VSWR Generic photo used for illustration purposes only

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits Page 3 of 3 ZXHF-K912+Reflectionless High Pass Filter Coaxial Connections Outline Drawing inch mmOutline Dimensions ( ) PORT - 1 2.92mm-Female PORT - 2 2.92mm-Female inch mm Note: Please refer to case style drawing for details A .68 17.1 B .60 15.2 C .39 10.0 D .200 5.08 E .10 2.5 F .400 10.16 G .24 6.0 H .070 1.78 J .22 5.5 K .30 7.6 Wt. grams

Coaxial Reflectionless High Pass Filter ZXHF-K912+ Typical Performance Data (MHz) FREQ. INSERTION LOSS INPUT RETURN LOSS (dB) (dB) OUTPUT RETURN LOSS (dB) REV. OR ZXHF-K912+ 200224 Page 1 of 2

Coaxial Reflectionless High Pass Filter ZXHF-K912+ Typical Performance Data 9100 0.24 0.23 0.23 9500 0.22 0.22 0.22 10000 0.21 0.21 0.21 10500 0.20 0.20 0.20 11000 0.20 0.20 0.20 11500 0.19 0.19 0.19 12000 0.19 0.19 0.19 12500 0.18 0.18 0.19 13000 0.18 0.18 0.18 13500 0.18 0.18 0.18 14000 0.18 0.18 0.18 14500 0.18 0.18 0.18 15000 0.18 0.18 0.18 15500 0.18 0.18 0.18 16000 0.18 0.18 0.18 16500 0.18 0.18 0.18 17000 0.18 0.18 0.18 17500 0.18 0.18 0.18 18000 0.18 0.18 0.18 18500 0.18 0.18 0.18 19000 0.18 0.18 0.18 19500 0.18 0.17 0.18 20000 0.17 0.17 0.18 20500 0.17 0.17 0.18 21000 0.18 0.18 0.18 21500 0.18 0.18 0.18 22000 0.18 0.18 0.18 22500 0.18 0.18 0.18 23000 0.18 0.18 0.18 23500 0.18 0.17 0.18 24000 0.17 0.17 0.17 24500 0.17 0.17 0.17 25000 0.17 0.17 0.17 25500 0.17 0.17 0.17 26000 0.17 0.17 0.17 26500 0.17 0.17 0.18 27000 0.18 0.18 0.18 27500 0.18 0.18 0.19 28000 0.18 0.17 0.17 28200 0.17 0.17 0.18 28400 0.18 0.18 0.19 28600 0.19 0.19 0.19 28800 0.19 0.19 0.19 29000 0.19 0.19 0.19 29200 0.19 0.19 0.19 29400 0.19 0.19 0.19 29600 0.19 0.19 0.19 29800 0.19 0.19 0.19 29850 0.19 0.19 0.19 29900 0.19 0.19 0.19 30000 0.19 0.19 0.19 FREQ. GROUP DELAY (nsec) REV. OR ZXHF-K912+ 200224 Page 2 of 2

Coaxial Reflectionless High Pass Filter ZXHF-K912+ Typical Performance Curves 0 5000 10000 15000 20000 25000 30000 INSERTION LOSS (dB) FREQUENCY (MHz) INSERTION LOSS vs. TEMPERATURE INPUT POWER = 0 dBm @-55°C @+25˚C @+105˚C 0 5000 10000 15000 20000 25000 30000 INPUT RETURN LOSS (dB) FREQUENCY (MHz) INPUT RETURN LOSS vs. TEMPERATURE INPUT POWER = 0 dBm @-55°C @+25˚C @+105˚C 0 5000 10000 15000 20000 25000 30000 OUTPUT RETURN LOSS (dB) FREQUENCY (MHz) OUTPUT RETURN LOSS vs. TEMPERATURE INPUT POWER = 0 dBm @-55°C @+25˚C @+105˚C 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 7500 10000 12500 15000 17500 20000 22500 25000 27500 30000 INSERTION LOSS (dB) FREQUENCY (MHz) INSERTION LOSS vs. TEMPERATURE (Zoomed) INPUT POWER = 0 dBm @-55°C @+25˚C @+105˚C 0.10 0.15 0.20 0.25 0.30 0.35 7500 10000 12500 15000 17500 20000 22500 25000 27500 30000 GROUP DELAY (ns) FREQUENCY (MHz) GROUP DELAY vs. TEMPERATURE INPUT POWER = 0 dBm @-55°C @+25˚C @+105˚C REV. OR ZXHF-K912+ 200224 Page 1 of 1

UK3042 Rev.: OR (15 FEB 20) NPO-000376 File: UK3042.doc Sheet 1 of 1 This document and its contents are the property of Mini-Circuits Case Style UK A K TYP J TYP C G B D F Ø H THRU CASE# A B C D E F UK3042 .68 (17.1) .60 (15.2) .39 (10.0) .200 (5.08) .10 (2.5) .400 (10.16) CASE# G H J K WT.GRAMS UK3042 .24 (6.0) .070 (1.78) .22 (5.5) .30 (7.6) 24 Notes: 1. Case material: Brass alloy. 2. Case Finish: a. Case & Cover of the units –Gold plating. 3. Refer to the individual model data sheet for the type of connectors available. Outline Dimensions UK3042

Environmental Specifications All Mini-Circuits products are manufactured under exacting quality assurance and control standards, and are capable of meeting published specifications after being subjected to any or all of the following physical and environmental test. Specification Test/Inspection Condition Reference/Spec ENV002 Operating Temperature -55° to 105°C Ambient Environment Individual Model Data Sheet Storage Temperature -55° to 105°C Ambient Environment Individual Model Data Sheet This document and its contents are the property of Mini-Circuits. Rev:ENV002 OR 03/11/20 File:E002050 ENV002.pdf Page: 1