L7582

Features: Small size/surface-mount packaging Monolithic IC reliability Low impulse noise Make-before-break, break-before-make operation Clean, bounce-free switching Low, matched ON-resistance Built-in current limiting, thermal shutdown, and SLIC protection 5 V only operation, very low power consu...

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SeekIC No. : 004389429 Detail

L7582: Features: Small size/surface-mount packaging Monolithic IC reliability Low impulse noise Make-before-break, break-before-make operation Clean, bounce-free switching Low, matched ON-resistance Built...

floor Price/Ceiling Price

Part Number:
L7582
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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268 Transactions

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Upload time: 2024/4/27

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Product Details

Description



Features:

 Small size/surface-mount packaging
Monolithic IC reliability
Low impulse noise
Make-before-break, break-before-make operation
Clean, bounce-free switching
Low, matched ON-resistance
Built-in current limiting, thermal shutdown, and SLIC protection
5 V only operation, very low power consumption
Battery monitor, all OFF state upon loss of battery
No EMI
Latched logic level inputs, no drive circuitry
Only one external protector required



Application

 Central office
DLC
PBX
DAML
HFC/FITL



Specifications

Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are absolute stress ratings only. Functional operation of the device is not implied at these or any other conditions in excess of those given in the operational sections of the data sheet. Exposure to absolute maximum ratings for extended periods can adversely affect device reliability.

Parameter

Min
Max
Unit
Operating Temperature Range
40
110
°C
Storage Temperature Range
40
150
°C
Relative Humidity Range
5
95
%
Pin Soldering Temperature (t = 10 s max)
-
260
°C
5 V Power Supply
-
7
V
Battery Supply
-
85
V
Logic Input Voltage
-
7
V
Input-to-output Isolation
-
330
V
Pole-to-pole Isolation
-
330
V



Description

The L7582 Tip Ring Access Switch is a monolithic solid-state device that provides the switching functionality of a 2 form C switch.

The L7582 is designed to provide power ringing access to tip and ring in central office, digital loop carrier, private branch exchange, digitally added main line, and hybrid fiber coax/fiber-in-the-loop ana-log line card applications. An additional pair of solid-state contacts provides access to the telephone loop for line test access or message waiting in the PBX application.

The L7582 has four states: the idle talk state (line break switches closed, ringing and loop access switches open), the power ringing state (ringing access switches closed, line break and loop access switches open), loop access state (loop access switches closed, line break and ringing access switches open), and an all OFF state.

The L7582 offers break-before-make or make-before-break switching, with simple logic level input control. Because of the solid-state construction, voltage tran-sients generated when switching into an inductive ringing load during ring cadence or ring trip are mini-mized, possibly eliminating the need for external zero cross switching circuitry. State control is via logic level inputs so no additional driver circuitry is required.

The line break switch is a linear switch that has exceptionally low ON-resistance and an excellent ON-resistance matching characteristic. The ringing access switch has a breakdown voltage rating >480 V which is sufficiently high, with proper protec-tion, to prevent breakdown in the presence of a tran-sient fault condition (i.e., passing the transient on to the ringing generator).

Incorporated into the L7582Axx is a diode bridge/SCR clamping circuit, current-limiting circuitry, and a thermal shutdown mechanism to provide protection to the SLIC device and subsequent circuitry during fault conditions (see Figure 1). Positive and negative lightning is reduced by the current-limiting circuitry and steered to ground via diodes and the integrated SCR. Power cross is also reduced by the current-limiting and thermal shutdown circuits.




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