X-On Electronics has gained recognition as a prominent supplier of 1-409414-3 Bench Top Tools across the USA, India, Europe, Australia, and various other global locations. 1-409414-3 Bench Top Tools are a product manufactured by TE Connectivity. We provide cost-effective solutions for Bench Top Tools, ensuring timely deliveries around the world.

1-409414-3 TE Connectivity

1-409414-3 electronic component of TE Connectivity
1-409414-3 TE Connectivity
1-409414-3 Bench Top Tools
1-409414-3  Tools & Supplies

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See Product Specifications
Part No. 1-409414-3
Manufacturer: TE Connectivity
Category: Bench Top Tools
Description: Bench Top Tools CRIMPER,WIRE
Datasheet: 1-409414-3 Datasheet (PDF)
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
1: USD 298.1169 ea
Line Total: USD 298.12 
Availability - 0
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
0
Ship by Fri. 03 Jan to Thu. 09 Jan
MOQ : 1
Multiples : 1
1 : USD 298.1169
3 : USD 271.8821
5 : USD 258.3002

   
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We are delighted to provide the 1-409414-3 from our Bench Top Tools category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the 1-409414-3 and other electronic components in the Bench Top Tools category and beyond.

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CRIMP TOOLING WHERE FORM MEETS FUNCTION The cost of quality can be expensive Introduction Quality, cost, and throughput are associated with specific It is difficult to distinguish critical tooling attributes with visual measurements and linked to process variables. Crimp height, pull inspection only. Some attributes cannot be inspected even by test values, leads per hour, and crimp symmetry are some of the running crimp samples. This paper will present the reader with measures used to monitor production termination processes. information that identifies key crimp tooling attributes and the effect of those attributes on the crimping process. Many variables affect the process such as wire and terminal quality, machine repeatability, setup parameters, and operator skill. Geometry and Associated Tolerances Crimp tooling is a significant contributor to the overall crimp Terminals are designed to perform to specification only when the termination process. The condition of crimp tooling is constantly final crimp form is within a narrow range of dimensions. monitored in production by various means. These means are often Controlling critical crimp dimensions is influenced by many factors indirect measures. Crimp Quality Monitors and crimp cross including: sections are methodologies that infer the condition of the crimp Wire size and material variation tooling. Visual inspection of the crimp tooling can be used to check Terminal size and material variation for gross failures such as tool breakage or tooling deformation Equipment condition which occurred as a result of a machine crash. Continuous monitoring of production will help determine when the process The final quality and needs to be adjusted and the replacement of crimp tooling can be consistency of a one of the adjustments that is made. crimp can never be any better than the quality and consistency of the tooling that is used. If other variations could be eliminated, tooling can and should be Cross Section Defining Crimp Width, Crimp Height and Flash able to produce crimp forms that are well within specified tolerances. In addition, variation from one tooling set to another should be held to a minimum. Crimp tooling features that are well controlled and exhibit excellent consistency from tooling set to tooling set can result in shorter setup time as well as more consistent production results. Crimp tooling can a have positive effect on the quality, cost, and throughput of the termination process. High quality crimp tooling Some critical crimp characteristics are directly defined by the can produce high quality crimps with less in-process variation over tooling form and are obvious. These include crimp width & crimp a greater number of terminations. length. APPLICATION TOOLING /// WHERE FORM MEETS FUNCTION Page 1 WHERE FORM MEETS FUNCTION Other critical crimp characteristics can be related to several A typical design point for AI is 80%. In order to maintain the same tooling form features and/or other system factors. These may be AI, the crimp height, CH, needs to change inversely to the change less obvious and include: of crimp width, CW, in approximately the same proportion. Thus, if the CW increases +2%, the CH needs to change approximately - Flash 2% in order to achieve the same AI design point. At first glance Roll, twist, and side-to-side bend that may not seem significant, but in reality it can be very Up/down bend significant. Using another general industry design rule of the ratio Crimp symmetry of CH to CW of approximately 65%, a typical set of dimensions Bellmouth used as an example may be: CW = 0.110 in, CH = 0.068 in The following discussion focuses on two characteristics, crimp width and flash, as examples of how tooling affect crimp form. Therefore, varying the CW by 2% would result in a CH variation of Similar arguments can be applied to the others. 2%, or 0.0014 in. At a CH tolerance of 0.002 in, 35% of the total Crimp Width CH tolerance would be used by a 2% variation in CW. Thus, the importance of crimp width control is obvious when tooling is Crimp width is a good example of a feature that should be changed during a production run. consistent and in control between different crimpers of the same part number. The reason for this is quite straightforward. For a given terminal and wire combination, it is necessary to achieve an area index, AI, which is determined by the terminal designer for optimal mechanical and electrical performance. Crimp height, CH, and crimp width, CW, directly affect achieving proper AI. Area index, AI (as a percentage), is defined as: (a) where A is the total area of the wire and barrel after crimping. A t W and A are, respectively, the initial cross-sectional areas of the B wire and barrel before crimping. (b) APPLICATION TOOLING /// WHERE FORM MEETS FUNCTION Page 2

Tariff Desc

8203.20 crimpers but NOT including crimping tools put up in packs containing electrical connectors TC8532098

8205.40.00 TC0844020 SCREWDRIVERS

8203.30.00 TC9900293 NIPPERS diagonal spring loaded with insulated handles length NOT exceeding 125mm

8203.20.00 TC0844180 PLIERS being ANY of
a aviation slip pliers
b bent nose pliers
c combination pliers,length NOT less than 210mm
d cutting pliers
e end nipper pliers
f groove joint pliers
g linesman pliers, length NOT less than 210mm
h lock grip pliers
i long nose pliers
j long reach pliers
k round nose pliers
l slip joint pliers
m snap ring pliers
n straight nose pliers
o welding clamp pliers
p wire stripper plier

8204.11.00 TC9810512 SPANNERS drop forged

8204.12.00 TC0110440 SPANNERS AND WRENCHES adjustable non calibrated

8204.11.00 TC0107157 SPANNERS AND WRENCHES non adjustable being ANY:
a combination open end and ring
b open end
c ring

8205.70.00 TC0302773 CLAMPS

8205.70.00 TC0302754 VICES

8204.11.00 TC0405019 HAND TOOLS being EITHER of the following
a allen key sets
b hex keys

9017.30.00 50 Micrometers callipers and gauges Free

8204.20.00 TC0009108 SOCKETS AND/OR SOCKET ACCESSORIES being ANY of
a sockets
b reducers
c tommy bars with sliding T handles
d extensions
e ratchets with coupler
f reversible ratchets
g couplers
h universal joints
i L-handles
j speed braces
k converters
l swivel handles
m driving handles socket drivers
n ratchet adaptors

8203.10.00 TC0302774 FILES OR RASPS

8206.00.00 TC0831549 KITS TOOL comprising not LESS than ANY two of
a allen keys
b chisels
c crimpers
d files
e hammers
f multi grips
g pliers
h punches
i saws
j screwdrivers
k shears
l snips
m sockets
n spanners
o wrenches

8425.42.00 TC9404347 JACKS, hand, hydraulic, having a maximum capacity of 2500kg

8207.50.00 TC9600818 DRILL BITS MASONARY having BOTH the following
a slotted shank
b hammer proof carbide tip
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