fs7140 ON Semiconductor, fs7140 Datasheet

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fs7140

Manufacturer Part Number
fs7140
Description
Programmable Phase- Locked Loop Clock Generator
Manufacturer
ON Semiconductor
Datasheet

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FS7140, FS7145
Programmable Phase-
Locked Loop Clock
Generator
Description
regenerator IC designed to minimize cost and component count in a
variety of electronic systems. Via the I
FS7140/45 can be adapted to many clock generation requirements.
granularity and the flexibility of the post divider make the FS7140/45
the most flexible stand−alone PLL clock generator available.
Features
Applications
© Semiconductor Components Industries, LLC, 2011
October, 2011 − Rev. 7
The FS7140 or FS7145 is a monolithic CMOS clock generator/
The length of the reference and feedback dividers, their fine
Frequency Synthesis
Input
Extremely Flexible and Low−jitter Phase Locked Loop (PLL)
No External Loop Filter Components Needed
150 MHz CMOS or 340 MHz PECL Outputs
Completely Configurable via I
Up to Four FS714x can be Used on a Single I
3.3 V Operation
Independent On−chip Crystal Oscillator and External Reference
Very Low “Cumulative” Jitter
Pb−Free Packages are Available
Precision Frequency Synthesis
Low−frequency Clock Multiplication
Video Line−locked Clock Generation
Laser Beam Printers (FS7145)
2
C−bus
2
C−bus interface, the
2
C−bus
1
See detailed ordering and shipping information in the package
dimensions section on page 17 of this data sheet.
CASE 751BA
ADDR0
ADDR1
01 SUFFIX
XOUT
SOIC−16
VDD
ORDERING INFORMATION
SDA
VSS
SCL
XIN
* FS7140 pin 13 = N/C
*
PIN CONNECTIONS
FS7145 pin 13 = SYNC
http://onsemi.com
1
(Top View)
Publication Order Number:
CASE 565AE
02 SUFFIX
SSOP−16
CLKN
CLKP
VDD
*
REF
VSS
N/C
IPRG
FS7140/D

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fs7140 Summary of contents

Page 1

... Via the I FS7140/45 can be adapted to many clock generation requirements. The length of the reference and feedback dividers, their fine granularity and the flexibility of the post divider make the FS7140/45 the most flexible stand−alone PLL clock generator available. Features • ...

Page 2

... Crystal oscillator feedback Crystal oscillator drive Address select bit “1” Power supply (+3.3 V nominal) PECL current drive programming No connection Ground Reference frequency input FS7140 = No connection FS7145 = Synchronization input Power supply (+3.3 V nominal) Clock output Inverted clock output U = Input with Internal Pull−up; DI http://onsemi.com 2 = Input with Internal Pull− ...

Page 3

Table 2. ABSOLUTE MAXIMUM RATINGS Symbol Parameter V Supply voltage ground Input voltage Output voltage Input clamp current < Output ...

Page 4

Table 4. DC ELECTRICAL SPECIFICATIONS Parameter Symbol OVERALL Supply current, dynamic Supply current, static SERIAL COMMUNICATION I/O (SDA, SCL) High−level input voltage Low−level input voltage Hysteresis voltage Input leakage current Low−level output sink current (SDA) ADDRESS SELECT INPUT (ADDR0, ADDR1) ...

Page 5

Table 4. DC ELECTRICAL SPECIFICATIONS Parameter Symbol CLOCK OUTPUTS, CMOS MODE (CLKN, CLKP) Low−level output sink current CLOCK OUTPUTS, PECL MODE (CLKN, CLKP) IPRG bias voltage IPRG bias current Sink current to IPRG current ratio Tristate output current 1. Unless ...

Page 6

Table 6. SERIAL INTERFACE TIMING SPECIFICATIONS Parameter Clock frequency Bus free time between STOP and START Set−up time, START (repeated) Hold time, START Set−up time, data input Hold time, data input Output data valid from clock Rise time, data and ...

Page 7

... See Table 12 for additional information. Crystal Oscillator The FS7140 is equipped with a Pierce−type crystal oscillator. The crystal is operated in parallel resonant mode. Internal load capacitance is provided for the crystal. While a recommended load capacitance for the crystal is specified, ...

Page 8

... C−bus where X is controlled by the logic level at the ADDR pins. The selectable ADDR bits allow four different FS7140 devices to exist on the same bus. Note that every device C−bus must have a unique address to avoid possible bus conflicts. Random Register Write Procedure Random write operations allow the master to directly write to any register ...

Page 9

If either a STOP or a repeated START condition occurs during a register write, the data that has been transferred is ignored. Random Register Read Procedure Random read operations allow the master to directly read from any register. To perform ...

Page 10

Figure 3. Random Register Write Procedure Figure 4. Random Register Read Procedure Figure 5. Sequential Register Write Procedure Figure 6. Sequential Register Read Procedure http://onsemi.com 10 ...

Page 11

... Programming Information All register bits are cleared to zero on power−up. All register bits may be read back as written. Table 7. FS7140 REGISTER MAP Address BIT 7 BIT 6 Byte 7 Reserved Reserved (Bit 63) (Bit 62) Must be set Must be set to “0” to “0” Byte 6 Reserved Reserved (Bit 55) ...

Page 12

Table 8. FS7145 REGISTER MAP Address BIT 7 BIT 6 Byte 7 Reserved Reserved (Bit 63) (Bit 62) Must be set Must be set to “0” to “0” Byte 6 Reserved Reserved (Bit 55) (Bit 54) Must be set Must ...

Page 13

Table 9. DEVICE CONFIGURATION BITS Name Description REFDSRC Reference divider source [0] = crystal oscillator / [1] = REF pin FBKDSRC Feedback divider source [0] = VCO output / [1] = post divider output SHUT1 Shutdown1 [0] = normal / ...

Page 14

Figure 7. Bus Timing Data Figure 8. Data Transfer Sequence http://onsemi.com 14 ...

Page 15

PACKAGE DIMENSIONS SSOP 16 CASE 565AE−01 ISSUE O http://onsemi.com 15 ...

Page 16

PACKAGE DIMENSIONS SOIC 16 CASE 751BA−01 ISSUE O http://onsemi.com 16 ...

Page 17

... ON Semiconductor Website: www.onsemi.com Order Literature: http://www.onsemi.com/orderlit For additional information, please contact your local Sales Representative FS7140/D ...

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