{"id":19770,"date":"2024-04-15T05:43:51","date_gmt":"2024-04-15T05:43:51","guid":{"rendered":"https:\/\/exam.pscnotes.com\/mcq\/?p=19770"},"modified":"2024-04-15T05:43:51","modified_gmt":"2024-04-15T05:43:51","slug":"the-bicmos-are-preferred-over-cmos-due-to-a-switching-speed-is-more-compared-to-cmos-b-sensitivity-is-less-with-respect-to-the-load-capacitance-c-high-current-drive-capability-d-al","status":"publish","type":"post","link":"https:\/\/exam.pscnotes.com\/mcq\/the-bicmos-are-preferred-over-cmos-due-to-a-switching-speed-is-more-compared-to-cmos-b-sensitivity-is-less-with-respect-to-the-load-capacitance-c-high-current-drive-capability-d-al\/","title":{"rendered":"The BiCMOS are preferred over CMOS due to . . . . . . . . A. Switching speed is more compared to CMOS B. Sensitivity is less with respect to the load capacitance C. High current drive capability D. All of the mentioned"},"content":{"rendered":"<p>\r\n    <!-- Check if it's an AMP page -->\r\n            <!-- Non-AMP version -->\r\n        <div class=\"mcq-container\" data-quiz-id=\"quizState_6a9d374d6fa41\">\r\n                                            <div class=\"option\" data-option-key=\"option1\" data-is-correct=\"false\">\r\n                    Switching speed is more compared to CMOS                <\/div>\r\n                                            <div class=\"option\" data-option-key=\"option2\" data-is-correct=\"false\">\r\n                    Sensitivity is less with respect to the load capacitance                <\/div>\r\n                                            <div class=\"option\" data-option-key=\"option3\" data-is-correct=\"false\">\r\n                    High current drive capability                <\/div>\r\n                                            <div class=\"option\" data-option-key=\"option4\" data-is-correct=\"true\">\r\n                    All of the mentioned                <\/div>\r\n                            \r\n            <!-- Feedback messages for non-AMP -->\r\n            <div class=\"feedback\" data-feedback=\"wrong\">Answer is Right!<\/div>\r\n            <div class=\"feedback\" data-feedback=\"right\">Answer is Wrong!<\/div>\r\n        <\/div>\r\n\r\n        <script>\r\n        document.addEventListener('DOMContentLoaded', function () {\r\n            var containers = document.querySelectorAll('.mcq-container');\r\n\r\n            containers.forEach(function(container) {\r\n                var options = container.querySelectorAll('.option');\r\n                var feedbackSelect = container.querySelector('[data-feedback=\"select\"]');\r\n                var feedbackWrong = container.querySelector('[data-feedback=\"wrong\"]');\r\n                var feedbackRight = container.querySelector('[data-feedback=\"right\"]');\r\n\r\n                options.forEach(function(option) {\r\n                    option.addEventListener('click', function() {\r\n                        var selectedOption = option.getAttribute('data-option-key');\r\n                        var isCorrect = option.getAttribute('data-is-correct') === 'true';\r\n\r\n                        \/\/ Remove previous selections\r\n                        options.forEach(function(opt) {\r\n                            opt.classList.remove('correct', 'incorrect');\r\n                        });\r\n\r\n                        \/\/ Add the correct\/incorrect class\r\n                        if (isCorrect) {\r\n                            option.classList.add('correct');\r\n                            feedbackRight.hidden = false;\r\n                            feedbackWrong.hidden = true;\r\n                        } else {\r\n                            option.classList.add('incorrect');\r\n                            feedbackRight.hidden = true;\r\n                            feedbackWrong.hidden = false;\r\n                        }\r\n\r\n                        \/\/ Hide select feedback\r\n                        feedbackSelect.hidden = true;\r\n                    });\r\n                });\r\n            });\r\n        });\r\n        <\/script>\r\n    \r\n    <!--more--><\/p>\n<p>The correct answer is D. All of the mentioned.<\/p>\n<p>BiCMOS (bipolar-CMOS) is a type of integrated circuit (IC) that combines the high speed of bipolar <div class=\"youtube-subscribe-container\">\r\n        <a href=\"https:\/\/www.youtube.com\/channel\/UCNHT8lW-JmLC68rjBfZhdkg?sub_confirmation=1\" target=\"_blank\" class=\"youtube-subscribe-button\">\r\n            <span class=\"youtube-icon\">\r\n                <svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewBox=\"0 0 576 512\">\r\n                    <path d=\"M549.7 124.1c-6.3-23.7-24.8-42.3-48.3-48.6C458.8 64 288 64 288 64S117.2 64 74.6 75.5c-23.5 6.3-42 24.9-48.3 48.6-11.4 42.9-11.4 132.3-11.4 132.3s0 89.4 11.4 132.3c6.3 23.7 24.8 41.5 48.3 47.8C117.2 448 288 448 288 448s170.8 0 213.4-11.5c23.5-6.3 42-24.2 48.3-47.8 11.4-42.9 11.4-132.3 11.4-132.3s0-89.4-11.4-132.3zm-317.5 213.5V175.2l142.7 81.2-142.7 81.2z\"\/>\r\n                <\/svg>\r\n            <\/span>\r\n            Subscribe on YouTube\r\n        <\/a>\r\n    <\/div> transistors with the low power consumption of CMOS transistors. BiCMOS ICs are used in a variety of applications, including microprocessors, memory chips, and analog circuits.<\/p>\n<p>BiCMOS ICs have several advantages over CMOS ICs. First, they have higher switching speeds. This is because bipolar transistors can switch on and off much faster than CMOS transistors. Second, BiCMOS ICs have lower sensitivity to load capacitance. This is because bipolar transistors have a higher output impedance than CMOS transistors. Third, BiCMOS ICs have higher current drive capability. This is because bipolar transistors can sink and source more current than CMOS transistors.<\/p>\n<p>As a result of these advantages, BiCMOS ICs are often preferred over CMOS ICs in applications where speed, power consumption, or current drive capability are important.<\/p>\n<p>Here is a more detailed explanation of each option:<\/p>\n<ul>\n<li>Option A: Switching speed is more compared to CMOS. This is because <div class=\"telegram-channel-container\">\r\n        <a href=\"https:\/\/t.me\/pscnotes2025\" target=\"_blank\" class=\"telegram-channel-button\">\r\n            <span class=\"telegram-icon\">\r\n                <svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewBox=\"0 0 496 512\">\r\n                    <path fill=\"white\" d=\"M248,8C111,8,0,119,0,256s111,248,248,248s248-111,248-248S385,8,248,8z M362,177L320,367c-3,14-10,18-20,14l-56-41l-27,26 c-3,3-5,5-10,5l4-63L323,196c5-5-1-7-8-3l-98,62l-42-13c-9-3-10-9,2-14l162-63C351,160,365,164,362,177z\"\/>\r\n                <\/svg>\r\n            <\/span>\r\n            Join Our Telegram Channel\r\n        <\/a>\r\n    <\/div> bipolar transistors can switch on and off much faster than CMOS transistors.<\/li>\n<li>Option B: Sensitivity is less with respect to the load capacitance. This is because bipolar transistors have a higher output impedance than CMOS transistors.<\/li>\n<li>Option C: High current drive capability. This is because bipolar transistors can sink and source more current than CMOS transistors.<\/li>\n<\/ul>\n","protected":false},"excerpt":{"rendered":"<p>Subscribe on YouTube<\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[687],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v22.2 (Yoast SEO v23.3) - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>The BiCMOS are preferred over CMOS due to . . . . . . . . A. Switching speed is more compared to CMOS B. Sensitivity is less with respect to the load capacitance C. High current drive capability D. 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