BGA Clock Drivers & Buffers 11

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Part RoHS Manufacturer Logic IC Type Temperature Grade Terminal Form No. of Terminals Package Code Package Shape Total Dose (V) Package Body Material Surface Mount Input Conditioning No. of Functions No. of Taps/Steps Maximum Frequency At Nominal Supply Technology Screening Level No. of Inputs No. of Bits Programmable Delay Line Packing Method Nominal Supply Voltage / Vsup (V) Power Supplies (V) Load Capacitance (CL) No. of Inverted Outputs Package Style (Meter) Package Equivalence Code Propagation Delay (tpd) Maximum I (ol) Sub-Category Terminal Pitch Maximum Operating Temperature Output Characteristics Trigger Type Maximum Same Edge Skew (tskwd) Minimum Operating Temperature Terminal Finish No. of True Outputs Terminal Position Control Type Minimum fmax JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Supply Voltage (Vsup) Maximum Seated Height Width Qualification Output Polarity Minimum Supply Voltage (Vsup) Maximum Power Supply Current (ICC) Additional Features JESD-609 Code Maximum Time At Peak Reflow Temperature (s) No. of Outputs Peak Reflow Temperature (C) Length Family

SN74SSTE32882ZALR

Texas Instruments

PLL BASED CLOCK DRIVER

OTHER

BALL

176

BGA

RECTANGULAR

UNSPECIFIED

YES

DIFFERENTIAL

1

CMOS

1.5

1.5

0

GRID ARRAY

BGA176(UNSPEC)

Other Logic ICs

90 Cel

0 Cel

4

BOTTOM

R-XBGA-B176

1.575 V

Not Qualified

1.425 V

SSTE

IDT5T2010BBGGI

Renesas Electronics

PLL BASED CLOCK DRIVER

INDUSTRIAL

BALL

144

BGA

SQUARE

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

2.5

0

GRID ARRAY

1 mm

85 Cel

3-STATE

.1 ns

-40 Cel

TIN SILVER COPPER

10

BOTTOM

250 MHz

S-PBGA-B144

3

2.7 V

1.97 mm

13 mm

Not Qualified

2.3 V

e1

13 mm

5T

IDT5T2010BBGI8

Renesas Electronics

PLL BASED CLOCK DRIVER

INDUSTRIAL

BALL

144

BGA

SQUARE

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

2.5

2.5

0

GRID ARRAY

BGA144,12X12,40

12 Amp

Clock Drivers

1 mm

85 Cel

3-STATE

.1 ns

-40 Cel

TIN SILVER COPPER

10

BOTTOM

250 MHz

S-PBGA-B144

3

2.7 V

1.97 mm

13 mm

Not Qualified

2.3 V

e1

40

260

13 mm

5T

SSTE32882HLBAKG

Renesas Electronics

PLL BASED CLOCK DRIVER

COMMERCIAL

BALL

176

BGA

RECTANGULAR

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

CMOS

TRAY

1.35

1.35/1.5

0

GRID ARRAY

BGA176,11X20,25

Other Logic ICs

.635 mm

70 Cel

0 Cel

TIN SILVER COPPER

4

BOTTOM

R-PBGA-B176

3

1.451 V

Not Qualified

1.282 V

e1

30

260

SSTE

SSTE32882HLBAKG8

Renesas Electronics

PLL BASED CLOCK DRIVER

COMMERCIAL

BALL

176

BGA

RECTANGULAR

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

CMOS

1.35

1.35/1.5

0

GRID ARRAY

BGA176,11X20,25

1.2 ns

Other Logic ICs

.635 mm

70 Cel

3-STATE

.015 ns

0 Cel

TIN SILVER COPPER

24

BOTTOM

R-PBGA-B176

3

1.451 V

Not Qualified

1.282 V

e1

30

260

32882

SSTE32882HLBBKG8

Renesas Electronics

PLL BASED CLOCK DRIVER

BALL

176

BGA

RECTANGULAR

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

CMOS

TR

1.35

0

GRID ARRAY

BGA176,8X22,25

.635 mm

70 Cel

3-STATE

0 Cel

4

BOTTOM

R-PBGA-B176

1.451 V

6 mm

1.282 V

15 mA

15 mm

SSTE

SSTE32882KA1AKG8

Renesas Electronics

PLL BASED CLOCK DRIVER

COMMERCIAL

BALL

176

BGA

RECTANGULAR

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

CMOS

TR

1.35

1.35/1.5

0

GRID ARRAY

BGA176,11X20,25

Other Logic ICs

.635 mm

70 Cel

3-STATE

0 Cel

Tin/Silver/Copper (Sn/Ag/Cu)

4

BOTTOM

R-PBGA-B176

3

1.451 V

Not Qualified

1.282 V

e1

30

260

SSTE

CSPU877BV

Renesas Electronics

PLL BASED CLOCK DRIVER

COMMERCIAL

BALL

52

BGA

RECTANGULAR

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

CMOS

1.8

1.8

0

GRID ARRAY

BGA52,6X10,25

9 Amp

Clock Drivers

.635 mm

70 Cel

3-STATE

.04 ns

0 Cel

TIN LEAD

20

BOTTOM

R-PBGA-B52

3

Not Qualified

e0

20

225

877

CSPU877ABV

Renesas Electronics

PLL BASED CLOCK DRIVER

COMMERCIAL

BALL

52

BGA

RECTANGULAR

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

1.8

1.8

0

GRID ARRAY

BGA52,6X10,25

9 Amp

Clock Drivers

.635 mm

70 Cel

3-STATE

.04 ns

0 Cel

TIN LEAD

20

BOTTOM

R-PBGA-B52

3

Not Qualified

e0

20

225

877

CSPUA877BVG

Renesas Electronics

PLL BASED CLOCK DRIVER

COMMERCIAL

BALL

52

BGA

RECTANGULAR

PLASTIC/EPOXY

YES

DIFFERENTIAL

1

CMOS

1.8

1.8

0

GRID ARRAY

BGA52,6X10,25

9 Amp

Clock Drivers

.635 mm

70 Cel

.04 ns

0 Cel

TIN SILVER COPPER

10

BOTTOM

R-PBGA-B52

3

1.9 V

Not Qualified

1.7 V

e1

30

260

877

5T2010BBGI8

Renesas Electronics

PLL BASED CLOCK DRIVER

INDUSTRIAL

BALL

144

BGA

SQUARE

PLASTIC/EPOXY

YES

DIFFERENTIAL MUX

1

2.5

2.5

0

GRID ARRAY

BGA144,12X12,40

12 Amp

Clock Drivers

1 mm

85 Cel

3-STATE

.1 ns

-40 Cel

TIN SILVER COPPER

10

BOTTOM

250 MHz

S-PBGA-B144

3

2.7 V

1.97 mm

13 mm

Not Qualified

2.3 V

e1

40

260

13 mm

5T

Clock Drivers & Buffers

Clock drivers and buffers are two electronic components commonly used in digital systems to control the timing and distribution of clock signals.

Clock drivers are electronic components that generate a clock signal and distribute it to multiple components or devices within a digital system. The clock signal is a periodic waveform that synchronizes the timing of different operations within the system. The clock driver typically amplifies and shapes the clock signal to ensure that it meets the timing requirements of the system.

Buffers, on the other hand, are electronic components that amplify and isolate signals. In digital systems, buffers are often used to distribute clock signals to multiple components without degrading the quality of the signal. Buffers can help to reduce signal distortion, noise, and jitter, which can be particularly important in high-speed digital systems.

Buffers can also be used to isolate signals and prevent interference between different components or devices. They can be particularly useful in situations where the output of one device or component could damage another device or component.

Clock drivers and buffers can be used together to distribute clock signals throughout a digital system while maintaining signal integrity. The clock driver generates the clock signal and distributes it to the buffers, which then amplify and isolate the signal before distributing it to the various components or devices within the system.