fDivide
fTDP_Power_right = fDivide(fTDP_Power_right, fExponential(fMultiply(
fTDP_Power_right = fDivide(fTDP_Power_right, fExponential(fMultiply(
fTDP_Current = fDivide(fTDP_Power, fV_x);
fV_NL = fAdd(fV_x, fDivide(fMultiply(fTDP_Current, fRLL_LoadLine),
fMargin_DC_sigma = fDivide(fMargin_DC_sigma, ConvertToFraction(1000));
fCACm_fused = fDivide(fCACm_fused, ConvertToFraction(100));
fCACb_fused = fDivide(fCACb_fused, ConvertToFraction(100));
fKt_Beta_fused = fDivide(fKt_Beta_fused, ConvertToFraction(100));
fKv_m_fused = fNegate(fDivide(fKv_m_fused, ConvertToFraction(100)));
fKv_b_fused = fDivide(fKv_b_fused, ConvertToFraction(10));
fV_max = fDivide(GetScaledFraction(
fV_FT = fDivide(GetScaledFraction(
fV_min = fDivide(GetScaledFraction(
fVDDC_base = fDivide(fVDDC_base, fAdd(fMultiply(fSM_A0, fSclk), fSM_A2));
fDivide(fMargin_DC_sigma, ConvertToFraction(1000)));
fDC_SCLK = fDivide(fDC_SCLK, fAdd(fMultiply(fSM_A0, repeat), fSM_A1));
solution = fDivide(fPositiveOne, solution);
value = fDivide(value, GetScaledFraction(k_array[i], 10000));
f_decoded_value = fDivide(f_fuse_value, f_bit_max_value);
f_decoded_value = fSubtract(fDivide(f_bit_max_value, f_fuse_value), f_CONSTANT1);
f_decoded_value = fMultiply(f_decoded_value, fDivide(f_range, f_CONSTANT_NEG13));
fLeakage = fDivide(fLeakage, f_bit_max_value);
fValue = fDivide(ConvertToFraction(X * uPow(-1, bNEGATED)), ConvertToFraction(factor));
F_divide_Fprime = fDivide(y, Fprime);
A = fDivide(A, f_CONSTANT10);
B = fDivide(B, f_CONSTANT10);
C = fDivide(C, f_CONSTANT10);
root_first = fDivide(root_first, ConvertToFraction(2)); /* [b +- Sqrt(b^2 - 4AC)]/[2] */
root_first = fDivide(root_first, A); /*[b +- Sqrt(b^2 - 4AC)]/[2*A] */
root_second = fDivide(root_second, ConvertToFraction(2)); /* [b +- Sqrt(b^2 - 4AC)]/[2] */
root_second = fDivide(root_second, A); /*[b +- Sqrt(b^2 - 4AC)]/[2*A] */
Quotient = fDivide(A, B);
solution = fDivide(A, fStepSize);
static fInt fDivide (fInt A, fInt B); /* Returns A/B */