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On rate mode . O.S.G. refer to
The value can be used to [ determine the earth fault loop impedance ] ( Zs ) of the circuit to verify compliance with the loop impedance requirements of BS-7671: see 10.3.6.
10.3.6. Earth fault loop impedance :
612.9. The earth fault loop impedance ( Zs ) is required to be determined for the furthest point of each circuit . it may be determined by :
► direct measure of ( Zs ) or
► direct measure of ( Ze ) at the origin and adding ( R[SUP]1[/SUP] + R[SUP]2[/SUP] ) measured during the continuity test ( 10.3.1. & 10.3.2. ) [ Zs = Ze + ( R[SUP]1[/SUP] + R[SUP]2[/SUP] ) ] or
► Adding ( R[SUP]1[/SUP] + R[SUP]2[/SUP] ) measured during the continuity tests to the value of ( Ze ) declared by the distributor ( see 1.1. (iv) & 1.3. (iv)
The effectiveness of the distributors earth must be confirmed by a test . etc
What lets us down badly is not understanding the very basics . it's all in books
The value can be used to [ determine the earth fault loop impedance ] ( Zs ) of the circuit to verify compliance with the loop impedance requirements of BS-7671: see 10.3.6.
10.3.6. Earth fault loop impedance :
612.9. The earth fault loop impedance ( Zs ) is required to be determined for the furthest point of each circuit . it may be determined by :
► direct measure of ( Zs ) or
► direct measure of ( Ze ) at the origin and adding ( R[SUP]1[/SUP] + R[SUP]2[/SUP] ) measured during the continuity test ( 10.3.1. & 10.3.2. ) [ Zs = Ze + ( R[SUP]1[/SUP] + R[SUP]2[/SUP] ) ] or
► Adding ( R[SUP]1[/SUP] + R[SUP]2[/SUP] ) measured during the continuity tests to the value of ( Ze ) declared by the distributor ( see 1.1. (iv) & 1.3. (iv)
The effectiveness of the distributors earth must be confirmed by a test . etc
What lets us down badly is not understanding the very basics . it's all in books