![](https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEjC4l5lcJAxLvbmu5SV9LMYhX_cXy9QznTbOcEIEowL4-UJs9urZEjMLAql0kBr_frX11LD_xeH06P1Mhd4jrBj5Yi8SM2r8yJYinfO5im2bX1C4mxe1CFYWbW72G5VUrUNgZnOLjzbyg/s400/T+Flick+Flok+Ckt.gif)
The T or "toggle" flip-flop changes its output on each clock edge, giving an output which is half the frequency of the signal to the T input.
![](https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgZyISnQQa9zG8hRAm1JzPKNfGAYJSaSu7vWLbUD0ldIenabHN5qxd_WjIo6GCwBtlcQp8-EkHBotkEWtRsFfDSv3wI7rgQyTBazK-_dETwOkKcVfyPqjdKFhHjiX-B8Uu9eOv4jtH_1A/s400/T+Flick+Flok+sig.gif)
It is useful for constructing binary counters, frequency dividers, and general binary addition devices. It can be made from a J-K flip-flop by tying both of its inputs high.
Construction of T flip-flop from a J-K flip-flop.
![](https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEj1GRMYtuvUfso3OTtaIZpNdRLcSqq4eFsnXI7eA27we46mx6iIL0TBjAKelNmKN21yv6Z9eeArrVlPYaWGoGtTk2N-4mlginAl_M-9JU6oStdh4f-JCfgSQvEgl31U0DUQTy8Pve2Tog/s400/T+Flick+Flok+jk.gif)
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