Authors Sathya Senthilkumar VCommunication Systems, Sivaji College of Engineering and Technology, Manivilai, Kanyakumari, Tamilnadu, IndiaDr. Senthilkumar M SCommunication Systems, Sivaji College of Engineering and Technology, Manivilai, Kanyakumari, Tamilnadu, India Abstract Inductive data transmission provides an effective alternative to traditional wireless communication methods such as radio frequency (RF) or infrared (IR), especially in environments where electromagnetic interference, physical obstructions, safety regulations, or metallic enclosures limit their use. This paper presents the design, implementation, and evaluation of an Inductive Data Transmission System capable of transmitting short, secure digital messages using magnetic induction in the low frequency band of 65–135 kHz. The proposed system uses Amplitude Shift Keying (ASK) and Frequency Shift Keying (FSK) as suitable modulation schemes for inductive communication. The system is intended for communication between two isolated devices, such as a moving vehicle and a stationary unit, without requiring physical contact. Experimental results demonstrate that the system achieves reliable data transmission within a defined proximity range while maintaining electrical isolation and robustness against environmental noise. The study highlights the potential of inductive data exchange for automotive, industrial, biomedical, and access control applications. Keywords FSK Modulation Inductive data transmission ASK Radio frequency (RF) or Infrared (IR) Amplitude Shift Keying Frequency Shift Keying infrared IR RF Citation of this Article Sathya Senthilkumar V, & Dr. Senthilkumar M S. (2026). Inductive Data Transmission System using FSK Modulation. Journal of Artificial Intelligence and Emerging Technologies (JAIET). 3(1), 1-7. Article DOI: https://doi.org/10.47001/JAIET/2026.301001 Licence Copyright (c) 2026 Journal of Artificial Intelligence and Emerging Technologies. This work is licensed under a Creative Commons Attribution Non Commercial 4.0 International Licence. References S. A. Schelkunoff, “Electromagnetic Fields Theory,” IEEE Transactions on Antennas and Propagation, vol. 13, no. 1, pp. 12–23, 1965.K. Finkenzeller, RFID Handbook: Radio Frequency Identification Fundamentals and Applications, Wiley, 2010.A.E.Sample and J. R. Smith, “Inductive Coupling for Near Field Communication,” IEEE Pervasive Computing, vol. 10, no. 3, pp. 36–44, 2011.T. S. Rappaport, Wireless Communications: Principles and Practice, Prentice Hall, 2002.M. Pereira et al., “Low Frequency Inductive Data Transmission for Automotive Applications,” International Journal of Electronics Engineering, vol. 9, no. 2, pp. 98–104, 2018.ISO/IEC 180002, “Information Technology—Radio Frequency Identification for Item Management,” ISO Standards, 2018.Shiang-Wuu Perng a, Horng-Wen Wu, mixed convective heat transfer for unsteady turbulent flow over heated blocks in a horizontal channel.Adel Hamouche, Rachid Bessaïh, Mixed convection air cooling of protruding heat sources mounted in a horizontal channel, International Communications in Heat and Mass Transfer 36 (2009) 841–849.Boddu, R., Balanagu, P., Babu, N.S. (2012), “Zigbee based mine safety monitoring system with GSM”.Misra.G.B, (1986), Mine Environment and Ventilation. New Delhi: Oxford University Press.Chadi Gabriel, Mohammad-Ali Khalighi, Salah Bourennane, Pierre Léon, and Vincent Rigaud VOL. 5, NO. 1/JANUARY 2013/J. OPT. COMMUN. NETW; “Monte-Carlo-Based Channel Characterization for Underwater Optical Communication Systems”.Chadi Gabriel, Mohammad-Ali Khalighi, Salah Bourennane, Pierre L´eon, Vincent Rigaud ;2013 IEEE; “Misalignment Considerations in Point-to-Point Underwater Wireless Optical Links”.Hansel C. Dy, Reggie C. Gustilo, De La Salle University-Manila; 2012 IEEE; “Characterization of Signal Response for Surface Water Movements in Underwater Optical Wireless Communications”.Hong Song, Haocai Huang, Ping Yang, Lei Chen, Ruihong Lan, 2012 IEEE; “Wavefront Aberration Correction for Laser Propagating Over Water with a Closed-loop Adaptive Optical System”.J. Davalath, Y. Bayazitoglu, Forced convection cooling across rectangular blocks, ASME J. Heat Transfer 109 (1987) 321–328.Y. Liu, N. Phan-Thien, A complete conjugate convection and radiation problem for a heated block in a vertically heated square enclosure, Comput. Mech. 24 (1999) 175–186.A.A.Dehghan, M. Behnia, Numerical investigation of natural convection in a vertical slot with two heat source elements, Int. J. Heat and Fluid Flow 17 (1996) 474–482.