STEPPING MOTOR CLOCK Clock ICs 11

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Part RoHS Manufacturer General IC Type Temperature Grade Terminal Form No. of Terminals Package Code Package Shape Package Body Material Display Mode Surface Mount No. of Functions Technology Maximum Supply Current Nominal Oscillator Frequency Frequency Trimming Power Supplies (V) Package Style (Meter) Package Equivalence Code Sub-Category Terminal Pitch Maximum Operating Temperature Application Minimum Operating Temperature Terminal Finish Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Supply Voltage (Vsup) Maximum Seated Height Battery EOL Indicator Width Qualification Minimum Supply Voltage (Vsup) Additional Features JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Length Alarm

PCA1532U/10

NXP Semiconductors

STEPPING MOTOR CLOCK

COMMERCIAL

NO LEAD

7

DIE

RECTANGULAR

UNSPECIFIED

YES

1

CMOS

32.768 KHZ

NO

UNCASED CHIP

60 Cel

-10 Cel

UPPER

R-XUUC-N7

NO

Not Qualified

PCA1532P

NXP Semiconductors

STEPPING MOTOR CLOCK

COMMERCIAL

THROUGH-HOLE

8

DIP

RECTANGULAR

PLASTIC/EPOXY

NO

1

CMOS

32.768 KHZ

NO

-1.4

IN-LINE

DIP8,.3

Clock ICs

2.54 mm

60 Cel

-10 Cel

TIN/NICKEL PALLADIUM GOLD

DUAL

R-PDIP-T8

NO

Not Qualified

e3/e4

PCA1532T

NXP Semiconductors

STEPPING MOTOR CLOCK

COMMERCIAL

GULL WING

8

SOP

RECTANGULAR

PLASTIC/EPOXY

YES

1

CMOS

32.768 KHZ

NO

-1.4

SMALL OUTLINE

FL8,.15

Clock ICs

1.27 mm

60 Cel

-10 Cel

NICKEL PALLADIUM GOLD

DUAL

R-PDSO-G8

NO

Not Qualified

e4

PCA1534U/10

NXP Semiconductors

STEPPING MOTOR CLOCK

COMMERCIAL

NO LEAD

7

DIE

RECTANGULAR

UNSPECIFIED

YES

1

CMOS

32.768 KHZ

NO

UNCASED CHIP

60 Cel

-10 Cel

UPPER

R-XUUC-N7

NO

Not Qualified

PCA1534P

NXP Semiconductors

STEPPING MOTOR CLOCK

COMMERCIAL

THROUGH-HOLE

8

DIP

RECTANGULAR

PLASTIC/EPOXY

NO

1

CMOS

32.768 KHZ

NO

IN-LINE

60 Cel

-10 Cel

DUAL

R-PDIP-T8

NO

Not Qualified

PCA1534T

NXP Semiconductors

STEPPING MOTOR CLOCK

COMMERCIAL

GULL WING

8

SOP

RECTANGULAR

PLASTIC/EPOXY

YES

1

CMOS

32.768 KHZ

NO

-1.4

SMALL OUTLINE

FL8,.15

Clock ICs

1.27 mm

60 Cel

-10 Cel

NICKEL PALLADIUM GOLD

DUAL

R-PDSO-G8

NO

Not Qualified

e4

KS5223

Samsung

STEPPING MOTOR CLOCK

NO LEAD

8

DIE

UNSPECIFIED

UNSPECIFIED

ANALOG

YES

1

CMOS

.000002 mA

32.768 KHZ

NO

UNCASED CHIP

UPPER

X-XUUC-N8

1.5 V

NO

Not Qualified

1.5 V

NO

KS5224

Samsung

STEPPING MOTOR CLOCK

NO LEAD

8

DIE

UNSPECIFIED

UNSPECIFIED

ANALOG

YES

1

CMOS

.000002 mA

32.768 KHZ

NO

UNCASED CHIP

UPPER

X-XUUC-N8

1.5 V

NO

Not Qualified

1.5 V

NO

KS5225

Samsung

STEPPING MOTOR CLOCK

NO LEAD

UNSPECIFIED

UNSPECIFIED

ANALOG

YES

1

CMOS

.000002 mA

32.768 KHZ

NO

UNCASED CHIP

UPPER

X-XUUC-N

1.5 V

NO

Not Qualified

1.5 V

YES

KS5127

Samsung

STEPPING MOTOR CLOCK

NO LEAD

40

DIE

UNSPECIFIED

UNSPECIFIED

DIGITAL

YES

1

CMOS

.0007 mA

4.194304 MHZ

NO

UNCASED CHIP

UPPER

X-XUUC-N40

7 V

NO

Not Qualified

NO

KS5213A

Samsung

STEPPING MOTOR CLOCK

NO LEAD

16

DIE

UNSPECIFIED

UNSPECIFIED

ANALOG

YES

1

32.768 KHZ

NO

UNCASED CHIP

ALARM CLOCK

UPPER

X-XUUC-N16

1.5 V

NO

Not Qualified

1.5 V

YES

Clock ICs

Clock ICs, also known as timing ICs, are electronic components that generate, distribute, or control the timing signals in electronic systems. These ICs are critical components of many electronic systems, providing precise timing and synchronization for a variety of applications.

Clock ICs can be classified into several types based on their specific function. Some of the most common types of clock ICs include:

1. Clock generators - These ICs generate a clock signal with a specific frequency and waveform. They are often used in microprocessors, digital signal processors, and other digital circuits that require a clock signal.

2. Clock buffers - These ICs distribute the clock signal to multiple devices or circuits, ensuring that the signal remains stable and accurate.

3. Clock multipliers - These ICs generate a clock signal with a frequency that is a multiple of the input clock signal. They are often used in high-speed digital circuits to generate clock signals that are faster than the input clock signal.

4. Clock dividers - These ICs generate a clock signal with a frequency that is a fraction of the input clock signal. They are often used in digital circuits that require a clock signal with a lower frequency than the input clock signal.

Clock ICs can be designed to operate at a variety of frequencies, from a few Hertz to several gigahertz. They can also be designed to operate at different voltages, depending on the specific application.