PinoutSpecifications Rating Symbol Value Unit Repetitive peak off-state voltage'4C125H3BJ'4C145H3BJ'4C180H3BJ'4C220H3BJ'4C250H3BJ'4C290H3BJ'4C350H3BJ'4C395H3BJ VDRM ±100±120±145±180±190±220±275±320 V NNon-repetitive peak impulse current (see Notes 1 and 2)2/10 s (GR-...
TISP4C220H3BJ: PinoutSpecifications Rating Symbol Value Unit Repetitive peak off-state voltage'4C125H3BJ'4C145H3BJ'4C180H3BJ'4C220H3BJ'4C250H3BJ'4C290H3BJ'4C350H3BJ'4C395H3BJ VDRM ±100±120...
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PinoutSpecifications Rating Symbol Value Unit Repetitive peak off-state voltage...
PinoutSpecifications RATING SYMBOL VALUE UNIT Repetitive peak off-state voltage ( 0°C &...
Rating |
Symbol |
Value |
Unit |
Repetitive peak off-state voltage '4C125H3BJ '4C145H3BJ '4C180H3BJ '4C220H3BJ '4C250H3BJ '4C290H3BJ '4C350H3BJ '4C395H3BJ |
VDRM |
|
V |
NNon-repetitive peak impulse current (see Notes 1 and 2) 2/10 s (GR-1089-CORE, 2/10 s voltage wave shape) 10/160 s (TIA-968-A, 10/160 s voltage wave shape) 5/310 s (ITU-T K.44, 10/700 s voltage wave shape used in K.20/21/45) 10/560 s (TIA-968-A, 10/560 s voltage wave shape) 10/1000 s (GR-1089-CORE, 10/1000 s voltage wave shape) |
IPPSM |
±500 ±200 ±150 ±100 ±100 |
A |
Non-repetitive peak on-state current (see Notes 1, 2 and 3) 20 ms, 50 Hz (full sine wave) 1000 s, 50 Hz |
ITSM |
30 2.1 |
A |
Junction temperature |
TJ |
-40 to +150 |
°C |
Storage temperature range |
Tstg |
-65 to +150 |
°C |
This device TISP4C220H3BJ is designed to limit overvoltages on the telephone line. Overvoltages are normally caused by a.c. power system or lightning flash disturbances which are induced or conducted on to the telephone line. A single device provides 2-point protection and is typically used for the protection of 2-wire telecommunication equipment (e.g. between the Ring and Tip wires for telephones and modems). Combinations of devices can be used for multi-point protection (e.g. 3-point protection between Ring, Tip and Ground).
The protector TISP4C220H3BJ consists of a symmetrical voltage-triggered bidirectional thyristor. Overvoltages are initially clipped by breakdown clamping until the voltage rises to the breakover level, which causes the device to crowbar into a low-voltage on state. This low-voltage on state causes the current resulting from the overvoltage to be safely diverted through the device. The high crowbar holding current prevents d.c. latchup as the diverted current subsides.
Please contact your Bourns representative if the protection voltage you require is not listed.