4890-0-15-83-11-09-04-0 Allicdata Electronics
Allicdata Part #:

4890-0-15-83-11-09-04-0-ND

Manufacturer Part#:

4890-0-15-83-11-09-04-0

Price: $ 0.44
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: CONN PIN RCPT
More Detail: Pin Receptacle Connector 0.015" ~ 0.020" (0.38mm ~...
DataSheet: 4890-0-15-83-11-09-04-0 datasheet4890-0-15-83-11-09-04-0 Datasheet/PDF
Quantity: 1000
1000 +: $ 0.40320
Stock 1000Can Ship Immediately
$ 0.44
Specifications
Flange Diameter: --
Insertion Force: --
Board Thickness: --
Operating Temperature: -55°C ~ 125°C
Features: --
Contact Finish Thickness: --
Contact Finish: --
Contact Material: Beryllium Copper
Socket Depth: 0.120" (3.05mm)
Tail Diameter: 0.018" (0.46mm)
Series: 4890
Mounting Hole Diameter: 0.041" (1.04mm)
Pin Hole Diameter: 0.031" (0.79mm)
Accepts Pin Diameter: 0.015" ~ 0.020" (0.38mm ~ 0.51mm)
Length - Overall: 0.158" (4.01mm)
Termination: Press-Fit
Tail Type: Standard Tail
Part Status: Active
Packaging: Bulk 
Description

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Verilog Code
`timescale 1ns / 10psmodule terminals_pcpinreceptacles_socketconnectors (    input [15:0] positive_temperature_coefficient_in,    input [15:0] negative_temperature_coefficient_in,    input i_clk_in,    output [7:0] positive_temperature_coefficient,    output [7:0] negative_temperature_coefficient,    output q_clk    );    wire w_clk_in;    assign w_clk_in = ~i_clk_in;    wire w_positive_temperature_coefficient;     assign w_positive_temperature_coefficient = positive_temperature_coefficient_in[7] & positive_temperature_coefficient_in[15];    wire w_negative_temperature_coefficient;     assign w_negative_temperature_coefficient = negative_temperature_coefficient_in[7] & negative_temperature_coefficient_in[15];    //This module is for use in PC pin receptacles, socket connectors, and other similar terminals.     //It takes in analog inputs, performs the necessary computations, and then sends out the resulting digital output.    //    //The module works by taking input from two temperature coefficients, both of which will have 16 bits each.     //These inputs are then combined using a two-way digital multiplexer. The multiplexer then outputs the new     //digital signal, which is then sent through a low-pass filter. The new signal goes through a third stage, which is     //an 8-bit counter. The counter outputs the new digital signal that is the result of the two temperature coefficients.     //At the same time, a clock signal is generated from the counter, which is used to keep track of the time taken     //for the computations. At the end of the process, the relevant digital output is sent out from the module.         MUX2 #(.IN_WIDTH(16)) mux_positive_temperature_coefficient_in_lower(positive_temperature_coefficient_in[06:00],                                                                positive_temperature_coefficient_in[14:08],                                                                w_positive_temperature_coefficient,                                                                positive_temperature_coefficient);    MUX2 #(.IN_WIDTH(16)) mux_negative_temperature_coefficient_in_lower(negative_temperature_coefficient_in[06:00],                                                                   negative_temperature_coefficient_in[14:08],                                                                   w_negative_temperature_coefficient,                                                                   negative_temperature_coefficient);    //Low-pass filter    reg [7:0] r_coefficient;    always @(w_positive_temperature_coefficient or w_negative_temperature_coefficient)    begin        r_coefficient <= (w_positive_temperature_coefficient >> 4) + (w_negative_temperature_coefficient >> 8);    end    //8-bit counter    reg [7:0] c_counter;    always @(i_clk_in)    begin        c_counter <= (c_counter == 7\'hff) ? 8\'h00 : c_counter + 1; //count up    end        //Send the digital output from the module.    assign q_clk = (c_counter == r_coefficient);endmodule

The specific data is subject to PDF, and the above content is for reference

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