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Integrated Building Cells for a Simple Modular Design of Electronic Circuits with Reduced External Complexity: Performance, Active Element Assembly, and an Application Example

机译:集成的建筑电池用于简单的模块化设计电子电路,具有减少的外部复杂性:性能,有源元素组装和应用示例

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摘要

This paper introduces new integrated analog cells fabricated in a C035 I3T25 0.35-μm ON Semiconductor process suitable for a modular design of advanced active elements with multiple terminals and controllable features. We developed and realized five analog cells on a single integrated circuit (IC), namely a voltage differencing differential buffer, a voltage multiplier with current output in full complementary metal−oxide−semiconductor (CMOS) form, a voltage multiplier with current output with a bipolar core, a current-controlled current conveyor of the second generation with four current outputs, and a single-input and single-output adjustable current amplifier. These cells (sub-blocks of the manufactured IC device), designed to operate in a bandwidth of up to tens of MHz, can be used as a construction set for building a variety of advanced active elements, offering up to four independently adjustable internal parameters. The performances of all individual cells were verified by extensive laboratory measurements, and the obtained results were compared to simulations in the Cadence IC6 tool. The definition and assembly of a newly specified advanced active element, namely a current-controlled voltage differencing current conveyor transconductance amplifier (CC-VDCCTA), is shown as an example of modular interconnection of the selected cells. This device was implemented in a newly synthesized topology of an electronically linearly tunable quadrature oscillator. Features of this active element were verified by simulations and experimental measurements.
机译:本文介绍了在CO35 I3T25 0.35-μm中制造的新的集成模拟电池,适用于具有多个端子和可控特征的高级活性元件的模块化设计。我们在单个集成电路(IC)上开发和实现了五个模拟电池,即电压差异差分缓冲器,电压乘数,具有全互补金属氧化物 - 半导体(CMOS)形式的电流输出,电压倍增器具有电流输出的电压倍增器双极芯,第二代电流控制电流输送机,具有四个电流输出,以及单输入和单输出可调电流放大器。这些单元(制造的IC器件的子块),设计用于在高达数十MHz的带宽中操作,可以用作构建各种高级有源元件的结构集,提供多达四个可独立可调的内部参数。通过广泛的实验室测量验证所有单个细胞的性能,并将所得结果与Cadence IC6工具中的模拟进行比较。新指定的高级有源元件的定义和组装,即电流控制电压差电流传送器跨导放大器(CC-VDCCTA)被示出为所选单元的模块化互连的示例。该装置在新合成的电子线性可调正交振荡器的新合成拓扑中实现。通过模拟和实验测量验证该活性元素的特征。

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