NSN 5905-00-321-6834

Part Details | NONPRECISION NONWIRE WOUND VARIABLE RESISTOR

5905-00-321-6834 A resistor in which a sliding or rolling contact moves over an exposed area of the resistive element to change the ohmic value of the output. The functional tolerance (linearity), if given, of the output is greater than plus or minus 1 percent on linear outputs. Specified outputs such as sine, cosine, tangent, etc., shall be considered to be precision. For items having manually positioned taps designed to be set and fixed prior to use, see RESISTOR, ADJUSTABLE. For items with step by step variation, see RHEOSTAT and RESISTOR, STEP BY STEP. For tandem-mounted items designed to function together as an attenuator (and rated accordingly), see ATTENUATOR, VARIABLE. Excludes RESISTOR (1), VARIABLE, WIRE WOUND, NONPRECISION; RESISTOR (1), VARIABLE, NONWIRE WOUND PRECISION; and RESISTOR (1), VARIABLE, WIRE WOUND, PRECISION.

Alternate Parts: 114D1369P1, 114D1369, 34FL2113, 34FL2-113, 5905-00-321-6834, 00-321-6834, 5905003216834, 003216834

Supply Group (FSG) NSN Assigned NIIN Item Name Code (INC)
59NOV 18, 197300-321-683437405 ( RESISTOR, VARIABLE, NONWIRE WOUND, NONPRECISION )
REFERENCE DRAWINGS & PICTURES

CYLINDRICAL SERVO MOUNTED

ROUND

Cross Reference | NSN 5905-00-321-6834
Part Number Cage Code Manufacturer
114D1369P189954BAE SYSTEMS CONTROLS INC.
114D136989954BAE SYSTEMS CONTROLS INC.
34FL2-11308815HONEYWELL INTERNATIONAL INC.DBA HONEYWELL
Technical Data | NSN 5905-00-321-6834
Characteristic Specifications
SECTION QUANTITY2
RESISTANCE TOLERANCE PER SECTION IN PERCENT-10.0 TO +10.0 SINGLE SECTION
BODY STYLE CYLINDRICAL SERVO MOUNTED
PILOT LENGTH0.04000 INCHES NOMINAL
UNDERCUT WIDTH0.05700 INCHES MINIMUM
BODY DIAMETER0.790 INCHES MAXIMUM
MOUNTING LIP DEPTH0.06200 INCHES NOMINAL
ACTUATOR TYPE SINGLE SHAFT
SHAFT STYLE ROUND
MOUNTING METHOD CLAMP
TERMINAL TYPE AND QUANTITY6 TURRET
TERMINAL LOCATION RADIALLY POSITIONED OVER LESS THAN HALF THE CIRCUMFERENCE
OVERALL LENGTH1.921 INCHES MAXIMUM
OVERALL DIAMETER0.957 INCHES MAXIMUM