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The growing demand for active medical implantable devices requires data and or power links between the implant and the outside world. Every implant has to be encapsulated from the body by a specific housing and one of the most common materials used is titanium or titanium alloy. Titanium thas the necessary properties in terms of mechanical and chemical stability and biocompatibility. However, its electrical conductivity presents a challenge for the electromagnetic transmission of data and power. The proposed paper presents a fast and practical method to determine the necessary transmission parameters for titanium encapsulated implants. Therefore, the basic transformer-transmission-model is used with measured or calculated key values for the inductances. Those are then expanded with correction factors to determine the behavior with the encapsulation. The correction factors are extracted from finite element method simulations. These also enable the analysis of the magnetic field distribution inside of the housing. The simulated transmission properties are very close to the measured values. Additionally, based on lumped elements and magnetic field distribution, the influential parameters are discussed in the paper. The parameter discussion describes how to enhance the transmitted power, data-rate or distance, or to reduce the size of the necessary coils. Finally, an example application demonstrates the usage of the methods.
Techno-economic comparison of membrane distillation and MVC in a zero liquid discharge application
(2018)
Membrane distillation (MD) is a thermally driven membrane process for the separation of vapour from a liquid stream through a hydrophobic, microporous membrane. However, a commercial breakthrough on a large scale has not been achieved so far. Specific developments on MD technology are required to adapt the technology for applications in which its properties can potentially outshine state of the art technologies such as standard evaporation. In order to drive these developments in a focused manner, firstly it must be shown that MD can be economically attractive in comparison to state of the art systems. Thus, this work presents a technological design and economic analysis for AGMD and v-AGMD for application in a zero liquid discharge (ZLD) process chain and compares it to the costs of mechanical vapour compression (MVC) for the same application. The results show that MD can potentially be ~40% more cost effective than MVC for a system capacity of 100 m3/day feed water, and up to ~75% more cost effective if the MD is driven with free waste heat.
Empirische Untersuchung zu der Profilierungswirkung von Markenartikeln und Handelsmarken auf die Betriebstypenmarke Aldi Süd.
Die Ergebnisse der vorliegenden Studie machen deutlich, dass sich die Aufnahme von starken Markenartikeln profilbildend für die Betriebstypenmarke Aldi Süd auswirkt. Sowohl das Gesamtimage als auch das Qualitätsimage der Betriebstypenmarke werden durch die geführten Handelsmarken positiv beeinflusst. Entsprechend lässt sich konstatieren, dass die Aufnahme von Herstellermarken die Trading up Strategie von Aldi Süd positiv unterstützt.
Ladengestaltungen spielen im Rahmen des Branding-Dreiecks von Betriebstypenmarken für die formale Differenzierung eine bedeutende Rolle. Die empirischen Ergebnisse der beiden Untersuchungen zur Differenzierungsleistung der Einkaufsstättengestaltung zeigen, dass bestehende Konzepte überwiegend als austauschbar wahrgenommen werden. Dabei gibt es sowohl im Modehandel als auch bei den Baumärkten je eine positive Ausnahme hinsichtlich ihrer Differenzierungsleistung. Obi erreicht mit seiner konsequent am Corporate Design ausgerichteten Gestaltung seiner Läden eine herausragende Trefferquote bei gleichzeitiger positiver Beurteilung der Einkaufsstätte. Hollister gelingt dies als einzigem un-tersuchten Modeanbieter mit einer Trefferquote von über 50 % ebenfalls.
Um das Ziel einer positiven Profilierung einer Betriebstypenmarke mit Hilfe von Eigenmarken des Handels zu erreichen, bedarf es der richtigen Strategie der Anbindung der Handelsmarke an die Betriebstypenmarke. Der vorliegende Beitrag hat aufgezeigt, dass in erster Linie die Branded House sowie die Subbrands Strategien in der Lage sind, die Voraussetzungen für eine Profilierung der Betriebstypenmarke über entsprechende Transfervoraussetzungen zu schaffen. Außerdem weisen diese Alternativen den großen Vorteil auf, kommunikative Synergien zwischen Betriebstypenmarke und Handelsmarke zu schaffen, was der Zielsetzung der Handelsunternehmen nach Verbesserung der Ertragslage entgegenkommt.
Der Beitrag untersucht die Unterschiede hinsichtlich der Ursachen für das Commitment zum Arbeitgeber zwischen Burnout-Gefährdeten und Nicht-Burnout-Gefährdeten auf der Basis einer repräsentativen Studie mit 2.400 sozialversicherungspflichtig Beschäftigten in einem Alter zwischen 18 und 69 Jahren in Deutschland. Aufbauend auf den Ergebnissen der Studie werden Empfehlungen für wirksame Maßnahmen zur Verbesserung des organisationalen Commitments und gleichzeitig zur Reduktion des Burnout-Risikos gegeben.
Ein zusammenfassender Vergleich der Profilierungseignung von Hersteller- und Handelsmarken auf der Grundlage aller untersuchten Marken ergibt die folgenden Tendenzaussagen:
Herstellermarken weisen hinsichtlich der Wirkung auf das Gesamtimage der Betriebstypenmarke die bessere Profilierungswirkung auf als Handelsmarken.
Auch für die Qualitätsprofilierung von Betriebstypenmarken im Lebensmitteleinzelhandel sind Herstellermarken besser geeignet als Handelsmarken.
Zur Preisgünstigkeitsprofilierung von Betriebstypenmarken eignen sich Handelsmarken tendenziell eher als Herstellermarken.
Die Preis-Leistungs-Profilierung gelingt tendenziell besser durch Handelsmarken als durch Herstellermarken.
An Ultra-Low-Power RFID/NFC Frontend IC Using 0.18 μm CMOS Technology for Passive Tag Applications
(2018)
Battery-less passive sensor tags based on RFID or NFC technology have achieved much popularity in recent times. Passive tags are widely used for various applications like inventory control or in biotelemetry. In this paper, we present a new RFID/NFC frontend IC (integrated circuit) for 13.56 MHz passive tag applications. The design of the frontend IC is compatible with the standard ISO 15693/NFC 5. The paper discusses the analog design part in details with a brief overview of the digital interface and some of the critical measured parameters. A novel approach is adopted for the demodulator design, to demodulate the 10% ASK (amplitude shift keying) signal. The demodulator circuit consists of a comparator designed with a preset offset voltage. The comparator circuit design is discussed in detail. The power consumption of the bandgap reference circuit is used as the load for the envelope detection of the ASK modulated signal. The sub-threshold operation and low-supply-voltage are used extensively in the analog design—to keep the power consumption low. The IC was fabricated using 0.18 μm CMOS technology in a die area of 1.5 mm × 1.5 mm and an effective area of 0.7 mm2. The minimum supply voltage desired is 1.2 V, for which the total power consumption is 107 μW. The analog part of the design consumes only 36 μW, which is low in comparison to other contemporary passive tags ICs. Eventually, a passive tag is developed using the frontend IC, a microcontroller, a temperature and a pressure sensor. A smart NFC device is used to readout the sensor data from the tag employing an Android-based application software. The measurement results demonstrate the full passive operational capability. The IC is suitable for low-power and low-cost industrial or biomedical battery-less sensor applications. A figure-of-merit (FOM) is proposed in this paper which is taken as a reference for comparison with other related state-of-the-art researches.
Design of a Programmable Passive SoC for Biomedical Applications Using RFID ISO 15693/NFC5 Interface
(2018)
Low power, low cost inductively powered passive biotelemetry system involving fully customized RFID/NFC interface base SoC has gained popularity in the last decades. However, most of the SoCs developed are application specific and lacks either on-chip computational or sensor readout capability. In this paper, we present design details of a programmable passive SoC in compliance with ISO 15693/NFC5 standard for biomedical applications. The integrated system consists of a 32-bit microcontroller, a sensor readout circuit, a 12-bit SAR type ADC, 16 kB RAM, 16 kB ROM and other digital peripherals. The design is implemented in a 0.18 µm CMOS technology and used a die area of 1.52 mm × 3.24 mm. The simulated maximum power consumption of the analog block is 592 µW. The number of external components required by the SoC is limited to an external memory device, sensors, antenna and some passive components. The external memory device contains the application specific firmware. Based on the application, the firmware can be modified accordingly. The SoC design is suitable for medical implants to measure physiological parameters like temperature, pressure or ECG. As an application example, the authors have proposed a bioimplant to measure arterial blood pressure for patients suffering from Peripheral Artery Disease (PAD).
We present an electrochemical model of a lithium iron phosphate/graphite (LFP/C6) cell that includes combined aging mechanisms: (i) Electrochemical formation of the solid electrolyte interphase (SEI) at the anode, leading to loss of lithium inventory, (ii) breaking of the SEI due to volume changes of the graphite particles, causing accelerated SEI growth, and (iii) loss of active material due to of loss percolation of the liquid electrolyte resulting from electrode dry-out. The latter requires the introduction of an activity-saturation relationship. A time-upscaling methodology is developed that allows to simulate large time spans (thousands of operating hours). The combined modeling and simulation framework is able to predict calendaric and cyclic aging up to the end of life of the battery cells. The aging parameters are adjusted to match literature calendaric and cyclic aging experiments, resulting in quantitative agreement of simulated nonlinear capacity loss with experimental data. The model predicts and provides an interpretation for the dependence of capacity loss on temperature, cycling depth, and average SOC. The introduction of a percolation threshold in the activity-saturation relationship allows to capture the strong nonlinearity of aging toward end of life (“sudden death”).