۶Ƶ

÷·2, ÷·4, ÷·8, 1.1 GHz Low Power Prescaler

Favorite

Overview

The MC12093 is a single modulus prescaler for low power frequency division of a 1.1 GHz high frequency input signal. MOSAIC V(tm) technology is utilized to achieve low power dissipation of 6.75 mW at a minimum supply voltage of 2.7 V. On-chip output termination provides output current to drive a 2.0 pF (typical) high impedance load. If additional drive is required for the prescaler output, an external resistor can be added parallel from the OUT pin to GND to increase the output power. Care must be taken not to exceed the maximum allowable current through the output. Divide ratio control inputs SW1 and SW2 select the required divide ratio of 2, 4, or 8. Stand-By mode is featured to reduce current drain to 50 uA typical when the standby pin SB is switched LOW disabling the prescaler.

  • General Purpose Clock Generation
  • 1.1 GHz Toggle Frequency
  • Supply Voltage 2.7 V to 5.5 Vdc
  • Low Power 3.0 mA Typical
  • Operating Temperature -40 to 85°C
  • Divide by 2, 4 or 8 Selected by SW1 and SW2 Pins
  • On-Chip Termination
  • Pb-Free Packages are Available

Product List

If you wish to buy products or product samples, please log in to your ۶Ƶ account.

Search

Close Search

۶Ƶ:

3

Share

Product Groups:

Orderable Parts:

3

Product

Status

CAD Models

Compliance

Package Type

Case Outline

MSL Type

MSL Temp (°C)

Container Type

Container Qty.

ON Target

Type

Input Level

Output Level

VCC Typ (V)

fMax Typ (MHz)

tpd Typ (ns)

tR & tF Max (ps)

Reference Price

MC12093DG

Loading...

Active

CAD Model

Pb

A

H

P

SOIC-8

1

260

TUBE

98

N

Prescaler

ECL

ECL

3.3

1100

-

-

Price N/A

More Details

MC12093DR2G

Loading...

Active

CAD Model

Pb

A

H

P

SOIC-8

1

260

REEL

2500

N

Prescaler

ECL

ECL

3.3

1100

-

-

Price N/A

More Details

MC12093MNR4G

Loading...

Active

CAD Model

Pb

A

H

P

DFN-8

1

260

REEL

1000

N

Prescaler

ECL

ECL

3.3

1100

-

-

Price N/A

More Details

Show More

1-25 of 25

۶Ƶ per page

Jump to :