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  2. TI-30 - Wikipedia

    en.wikipedia.org/wiki/TI-30

    On these early models, pressing "0 INV TAN" (tan −1 (0) on today's models (TI-30X Plus MathPrint)) would cause the calculator to go into an infinite loop until it is powered off with the OFF button. The "0" had to be pressed on the keyboard; the calculator produced a correct answer if the "0" was the result of a previous calculation.

  3. TI SR-50 - Wikipedia

    en.wikipedia.org/wiki/TI_SR-50

    SR-50 (1974) Printed circuit board. Data code 035: 3rd week 1975. The SR-50 was Texas Instruments' first scientific pocket calculator with trigonometric and logarithm functions. . It enhanced their earlier SR-10 and SR-11 calculators, introduced in 1973, which had featured scientific notation, squares, square root, and reciprocals, but had no trig or log functions, and lacked other featur

  4. TI-36 - Wikipedia

    en.wikipedia.org/wiki/TI-36

    1986 edition of TI-35 PLUS TI-36 SOLAR, first edition. It can display 10 digits mantissa with 2 digits exponent, and calculates with 12-digit precision internally.. TI-36 SOLAR was based on 1985 version of TI-35 PLUS, but incorporates solar cells.

  5. HP-65 - Wikipedia

    en.wikipedia.org/wiki/HP-65

    Functions included square root, inverse, trigonometric (sine, cosine, tangent and their inverses), exponentiation, logarithms and factorial. The HP-65 was one of the first calculators to include a base conversion function, although it only supported octal (base 8) conversion.

  6. CORDIC - Wikipedia

    en.wikipedia.org/wiki/CORDIC

    CORDIC (coordinate rotation digital computer), Volder's algorithm, Digit-by-digit method, Circular CORDIC (Jack E. Volder), [1] [2] Linear CORDIC, Hyperbolic CORDIC (John Stephen Walther), [3] [4] and Generalized Hyperbolic CORDIC (GH CORDIC) (Yuanyong Luo et al.), [5] [6] is a simple and efficient algorithm to calculate trigonometric functions, hyperbolic functions, square roots ...

  7. TI-34 - Wikipedia

    en.wikipedia.org/wiki/TI-34

    It was based on the SR16 design from Kinpo Electronics.. Power sources come from smaller solar cells than the 1994 TI-34, and CR2025 battery. Feature set was based on TI-36X II, but without unit conversions and constants, base calculations, boolean algebra, complex value functions (abs now only works in real numbers), integral calculation, engineering notation display modes, gradian angle mode ...