NSN 5920-01-652-2691
Part Details | OVERVOLTAGE ABSORBER
5920-01-652-2691 An item specifically designed to absorb and consume surges of voltage such as that resulting across contacts when breaking a circuit having an inductive load or a burst of static across a telephone receiver. It is connected in parallel with the item it is protecting. It may be made up of metallic rectifier cells or semiconductor devices connected back-to-back which may or may not be shunted by a capacitor. It may also be a single rectifier cell or semiconductor device shunted by a capacitor. Excludes metallic rectifiers which are rated for rectifying capabilities and all single unit semiconductor devices not shunted by a capacitor. For items perfoming this function by use of voltage sensitive resistors, see RESISTOR, VOLTAGE SENSITIVE. See also CUTOUT DISK, PROTECTIVE.
Alternate Parts: 1203YM3406ASS, 120-3Y-M3-4-06-A-SS, 5920-01-652-2691, 01-652-2691, 5920016522691, 016522691
| Supply Group (FSG) | NSN Assigned | NIIN | Item Name Code (INC) |
|---|---|---|---|
| 59 | FEB 16, 2016 | 01-652-2691 | 21899 ( ABSORBER, OVERVOLTAGE ) |
REFERENCE DRAWINGS & PICTURES
Cross Reference | NSN 5920-01-652-2691
| Part Number | Cage Code | Manufacturer |
|---|---|---|
| 120-3Y-M3-4-06-A-SS | 4BZK2 | RAYCAP INC.DIV SURGE SUPPRESSORS |
Technical Data | NSN 5920-01-652-2691
| Characteristic | Specifications |
|---|---|
| END ITEM IDENTIFICATION | DIGITAL TERMINAL RADAR AIRPORT SURVEILLANCE RADAR (ASR11) |
| SPECIAL FEATURES | SURGE PROTECTION DEVICE; NOMINAL VOLTAGE 120V/208V THREE PHASE WYE; MAX CONTINUOUS OPERATING VOLTAGE 150V; NOMINAL DISCHARGE CURRENT 20KA; VOLTAGE PROTECTION RATING L-G, N-G, 700V, L-L, L-N 1200V; MAX SURGE CURRENT 140KA; MAX LIGHTENING CURRENT 7.5KA; RESPONSE TIME ?1NS;STAINLESS STEEL NEMA 4X; 12"X12"X8"; LONG DURATION SURGE PERFORM 2MS 500A 250HITS. THIS IS A FORM-FIT-FUNCTION ALTERNATIVE FOR EXISTING NSN 5920-01-513-4576 WHICH IS CORRODING BADLY AT SITES WITH SALT AIR EXPOSURE. THIS ITEM INCLUDES A STAINLESS-STEEL ENCLOSURE AND IS INTENDED AS A SUITABLE ALTERNATIVE FOR CORROSIVE ENVIRONMENTS |