SSOP ATM/SONET/SDH Circuits 7

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Part RoHS Manufacturer Telecom IC Type Temperature Grade Terminal Form No. of Terminals Package Code Package Shape Package Body Material Applications Surface Mount No. of Functions No. of Channels Technology Nominal Negative Supply Voltage Maximum Supply Current Nominal Supply Voltage Power Supplies (V) Package Style (Meter) Package Equivalence Code Sub-Category Terminal Pitch Maximum Operating Temperature Minimum Operating Temperature Terminal Finish Terminal Position Data Rate JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Seated Height Width Qualification Additional Features JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Length

MAX3680EAI

Maxim Integrated

ATM/SONET/SDH SERIAL TO PARALLEL/PARALLEL TO SERIAL CONVERTER

INDUSTRIAL

GULL WING

28

SSOP

RECTANGULAR

PLASTIC/EPOXY

ATM; SDH; SONET

YES

1

BIPOLAR

90 mA

3.3 V

3.3

SMALL OUTLINE, SHRINK PITCH

SSOP28,.3

ATM/SONET/SDH ICs

.65 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G28

1

1.99 mm

5.29 mm

Not Qualified

e0

10.2 mm

MAX3681EAG

Maxim Integrated

ATM/SONET/SDH SERIAL TO PARALLEL/PARALLEL TO SERIAL CONVERTER

INDUSTRIAL

GULL WING

24

SSOP

RECTANGULAR

PLASTIC/EPOXY

ATM; SDH; SONET

YES

1

.12 mA

3.3 V

3.3

SMALL OUTLINE, SHRINK PITCH

SSOP24,.3

ATM/SONET/SDH ICs

.65 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G24

1

1.99 mm

5.29 mm

Not Qualified

e0

245

8.2 mm

MAX3761EEP

Maxim Integrated

ATM/SONET/SDH SUPPORT CIRCUIT

INDUSTRIAL

GULL WING

20

SSOP

RECTANGULAR

PLASTIC/EPOXY

ATM

YES

1

BIPOLAR

.037 mA

5 V

5

SMALL OUTLINE, SHRINK PITCH

SSOP20,.25

ATM/SONET/SDH ICs

.635 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G20

1

1.73 mm

3.9 mm

Not Qualified

e0

245

8.65 mm

MAX3762EEP

Maxim Integrated

ATM/SONET/SDH SUPPORT CIRCUIT

INDUSTRIAL

GULL WING

20

SSOP

RECTANGULAR

PLASTIC/EPOXY

ATM

YES

1

BIPOLAR

.046 mA

5 V

5

SMALL OUTLINE, SHRINK PITCH

SSOP20,.25

ATM/SONET/SDH ICs

.635 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G20

1

1.73 mm

3.9 mm

Not Qualified

e0

8.65 mm

MAX3645EEE-T

Maxim Integrated

ATM/SONET/SDH SUPPORT CIRCUIT

INDUSTRIAL

GULL WING

16

SSOP

RECTANGULAR

PLASTIC/EPOXY

SONET

YES

1

BIPOLAR

.027 mA

3.3 V

3.3/5

SMALL OUTLINE, SHRINK PITCH

SSOP16,.25

ATM/SONET/SDH ICs

.635 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G16

1

1.75 mm

3.9 mm

Not Qualified

e0

4.9 mm

MAX3761EEP-T

Maxim Integrated

ATM/SONET/SDH SUPPORT CIRCUIT

INDUSTRIAL

GULL WING

20

SSOP

RECTANGULAR

PLASTIC/EPOXY

ATM

YES

1

BIPOLAR

.037 mA

5 V

5

SMALL OUTLINE, SHRINK PITCH

SSOP20,.25

ATM/SONET/SDH ICs

.635 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G20

1

1.73 mm

3.9 mm

Not Qualified

e0

245

8.65 mm

MAX3762EEP-T

Maxim Integrated

ATM/SONET/SDH SUPPORT CIRCUIT

INDUSTRIAL

GULL WING

20

SSOP

RECTANGULAR

PLASTIC/EPOXY

YES

1

5 V

SMALL OUTLINE, SHRINK PITCH

.635 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G20

1

1.73 mm

3.9 mm

Not Qualified

e0

8.65 mm

ATM/SONET/SDH Circuits

ATM (Asynchronous Transfer Mode), SONET (Synchronous Optical Network), and SDH (Synchronous Digital Hierarchy) circuits are high-speed communication technologies used in telecommunications networks.

ATM is a cell-based network technology that enables high-speed data transfer, video and voice communication. It divides data into fixed-size cells and sends them across the network using time-division multiplexing (TDM).

SONET and SDH are both standard protocols for optical telecommunications transport. They use synchronous timing signals to enable high-speed communication over fiber optic networks. SONET is used primarily in North America, while SDH is used primarily in Europe and other regions.

ATM, SONET, and SDH circuits offer several advantages over other communication technologies. They provide high-speed communication with low latency, allowing for efficient data transfer and real-time voice and video communication. They also provide a high level of reliability and fault tolerance, making them ideal for use in mission-critical applications such as banking, healthcare, and defense.

However, these circuits also require specialized hardware and software, and can be more expensive to implement and maintain than other communication technologies. They also require a high level of expertise to configure and manage.