e–Ls X0 (s) = X1 (s) +H X N(s) OUTPUT 1 +Ts X 0 1 : output : input X 0 t H x N X Dead Time =H N(s) (H≤T) H: sampling cycle (0.1 to 100.0 seconds adjustable) N: numbers of samples to be calculated (1 to 8 adjustable) ...
e–Ls X0 (s) = X1 (s) + H X N (s) OUTPUT 1 + T s X 0 1 : output : input X 0 t H x N X Dead Time = H N (s) (H ≤ T) H : sampling cycle (0.1 to 100.0 seconds adjustable) N : numbers of samples to be calculated (1 to 8 adjustable) ...
e–Ls X0 (s) = X1 (s) + H X N (s) OUTPUT 1 + T s X 0 1 : output : input X 0 t H x N X Dead Time = H N (s) (H ≤ T) H : sampling cycle (0.1 to 100.0 seconds adjustable) N : numbers of samples to be calculated (1 to 8 adjustable) ...
e–Ls X0 (s) = X1 (s) + H X N (s) OUTPUT 1 + T s X 0 1 : output : input X 0 t H x N X Dead Time = H N (s) (H ≤ T) H : sampling cycle (0.1 to 100.0 seconds adjustable) N : numbers of samples to be calculated (1 to 8 adjustable) ...
e–Ls X0 (s) = X1 (s) + H X N (s) OUTPUT 1 + T s X 0 1 : output : input X 0 t H x N X Dead Time = H N (s) (H ≤ T) H : sampling cycle (0.1 to 100.0 seconds adjustable) N : numbers of samples to be calculated (1 to 8 adjustable) ...
e–Ls X0 (s) = X1 (s) +H X N(s) OUTPUT 1 +Ts X 0 1 : output : input X 0 t H x N X Dead Time =H N(s) (H≤T) H: sampling cycle (0.1 to 100.0 seconds adjustable) N: numbers of samples to be calculated (1 to 8 adjustable) ...
e–Ls X0 (s) = X1 (s) + H X N (s) OUTPUT 1 + T s X 0 1 : output : input X 0 t H x N X Dead Time = H N (s) (H ≤ T) H : sampling cycle (0.1 to 100.0 seconds adjustable) N : numbers of samples to be calculated (1 to 8 adjustable) ...
U2: Range ±1000 mV; (Minimum span 30 mV, Input resistance 20 kΩ min.) U3: Range ±10 V; MODEL: WJFT[1]–[2][3][4]–[5][6] (Minimum span 0.3 V,Input resistance 1 MΩ min.) ORDERING INFORMATION • Code number: WJFT[1]-[2][3][4]-[5][6] ...
e–Ls X0 (s) = X1 (s) + H X N (s) OUTPUT 1 + T s X 0 1 : output : input X 0 t H x N X Dead Time = H N (s) (H ≤ T) H : sampling cycle (0.1 to 100.0 seconds adjustable) N : numbers of samples to be calculated (1 to 8 adjustable) ...
e–Ls X0 (s) = X1 (s) + H X N (s) OUTPUT 1 + T s X 0 1 : output : input X 0 t H x N X Dead Time = H N (s) (H ≤ T) H : sampling cycle (0.1 to 100.0 seconds adjustable) N : numbers of samples to be calculated (1 to 8 adjustable) ...