700MHZ, CYRSTAL-TO-3.3V DIFFERENTIAL
LVPECL FREQUENCY SYNTHESIZER
ICS8432-51
G
ENERAL
D
ESCRIPTION
The ICS8432-51 is a general purpose, dual output
Crystal-to-3.3V Differential LVPECL High Fre-
HiPerClockS™
quency Synthesizer and a member of the
HiPerClockS™ family of High Performance Clock
Solutions from IDT. The ICS8432-51 has a select-
able REF_CLK or crystal input. The VCO operates at a fre-
quency range of 250MHz to 700MHz. The VCO frequency is
programmed in steps equal to the value of the input reference
or crystal frequency. The VCO and output frequency can be
programmed using the serial or parallel interface to the con-
figuration logic. The low phase noise characteristics of the
ICS8432-51 make it an ideal clock source for Gigabit Ethernet,
Fibre Channel 1 and 2, and Infiniband applications.
F
EATURES
•
Dual differential 3.3V LVPECL outputs
•
Selectable crystal oscillator interface or
LVCMOS/LVTTL REF_CLK
•
Output frequency range: 31.25MHz to 700MHz
•
Crystal input frequency range: 12MHz to 25MHz
•
VCO range: 250MHz to 700MHz
•
Parallel or serial interface for programming counter and
output dividers
•
RMS period jitter: 3.5ps (maximum)
•
Cycle-to-cycle jitter: 25ps (maximum)
•
3.3V supply voltage
•
0°C to 70°C ambient operating temperature
•
Available in both standard (RoHS 5) and lead-free (RoHS 6)
packages
•
Replaces the ICS8432-01
IC
S
B
LOCK
D
IAGRAM
P
IN
A
SSIGNMENT
VCO_SEL
nP_LOAD
XTAL_IN
M4
M3
M2
M1
M0
VCO_SEL
XTAL_SEL
REF_CLK
XTAL1
OSC
XTAL2
0
1
M5
M6
M7
M8
N0
N1
nc
V
EE
1
2
3
4
5
6
7
8
32 31 30 29 28 27 26 25
24
23
22
XTAL_OUT
REF_CLK
XTAL_SEL
V
CCA
S_LOAD
S_DATA
S_CLOCK
MR
ICS8432-51
21
20
19
18
17
PLL
PHASE DETECTOR
÷1
÷2
÷4
÷8
9 10 11 12 13 14 15 16
TEST
V
CC
FOUT1
nFOUT1
V
CCO
FOUT0
nFOUT0
V
EE
MR
÷
M
VCO
0
1
FOUT0
nFOUT0
FOUT1
nFOUT1
S_LOAD
S_DATA
S_CLOCK
nP_LOAD
M0:M8
N0:N1
CONFIGURATION
INTERFACE
LOGIC
TEST
32-Lead LQFP
7mm x 7mm x 1.4mm package body
Y Package
Top View
32-Lead VFQFN
5mm x 5mm x 0.925mm package body
K Package
Top View
IDT
™
/ ICS
™
3.3V LVPECL FREQUENCY SYNTHESIZER
1
ICS8432BY-51 REV. F MAY 13, 2008
ICS8432-51
700MHZ, CRYSTAL-TO-3.3V DIFFERENTIAL LVPECL FREQUENCY SYNTHESIZER
F
UNCTIONAL
D
ESCRIPTION
NOTE: The functional description that follows describes opera-
tion using a 25MHz crystal. Valid PLL loop divider values for dif-
ferent crystal or input frequencies are defined in the Input
Frequency Characteristics, Table 5, NOTE 1.
The ICS8432-51 features a fully integrated PLL and therefore,
requires no external components for setting the loop bandwidth.
A fundamental crystal is used as the input to the on-chip oscilla-
tor. The output of the oscillator is fed into the phase detector.
A 25MHz crystal provides a 25MHz phase detector reference
frequency. The VCO of the PLL operates over a range of 250MHz
to 700MHz. The output of the M divider is also applied to the
phase detector.
The phase detector and the M divider force the VCO output fre-
quency to be M times the reference frequency by adjusting the
VCO control voltage. Note that for some values of M (either too high
or too low), the PLL will not achieve lock. The output of the VCO is
scaled by a divider prior to being sent to each of the LVPECL output
buffers. The divider provides a 50% output duty cycle.
The programmable features of the ICS8432-51 support two in-
put modes to program the M divider and N output divider. The
two input operational modes are parallel and serial.
Figure 1
shows
the timing diagram for each mode. In parallel mode, the nP_LOAD
input is initially LOW. The data on inputs M0 through M8 and N0
and N1 is passed directly to the M divider and N output divider.
On the LOW-to-HIGH transition of the nP_LOAD input, the data
is latched and the M divider remains loaded until the next LOW
transition on nP_LOAD or until a serial event occurs. As a result,
the M and N bits can be hardwired to set the M divider and
N output divider to a specific default state that will automatically
occur during power-up. The TEST output is LOW when operating
in the parallel input mode. The relationship between the VCO
frequency, the crystal frequency and the M divider is defined as
follows:
fVCO = fxtal x M
The M value and the required values of M0 through M8 are shown
in Table 3B, Programmable VCO Frequency Function Table.
Valid M values for which the PLL will achieve lock for a 25MHz
reference are defined as 10
≤
M
≤
28. The frequency out is de-
fined as follows:
FOUT
=
fVCO = fxtal x M
N
N
Serial operation occurs when nP_LOAD is HIGH and S_LOAD is
LOW. The shift register is loaded by sampling the S_DATA bits
with the rising edge of S_CLOCK. The contents of the shift reg-ister
are loaded into the M divider and N output divider when S_LOAD
transitions from LOW-to-HIGH. The M divide and N output divide
values are latched on the HIGH-to-LOW transition of S_LOAD. If
S_LOAD is held HIGH, data at the S_DATA input is passed directly
to the M divider and N output divider on each ris-ing edge of
S_CLOCK. The serial mode can be used to program the M and N
bits and test bits T1 and T0. The internal registers T0 and T1 deter-
mine the state of the TEST output as follows:
T1
0
0
1
1
T0
0
1
0
1
TEST Output
LOW
S_Data, Shift Register Input
Output of M divider
CMOS Fout
S
ERIAL
L
OADING
S_CLOCK
S_DATA
T1
T0
H
*NULL
N1
N0
M8
M7
M6
M5
M4
M3
M2
M1
M0
t
S_LOAD
S
t
nP_LOAD
t
S
P
ARALLEL
L
OADING
M0:M8, N0:N1
M, N
nP_LOAD
t
S_LOAD
S
t
H
Time
F
IGURE
1. P
ARALLEL
& S
ERIAL
L
OAD
O
PERATIONS
*NOTE:
The NULL timing slot must be observed.
IDT
™
/ ICS
™
3.3V LVPECL FREQUENCY SYNTHESIZER
2
ICS8432BY-51 REV. F MAY 13, 2008
ICS8432-51
700MHZ, CRYSTAL-TO-3.3V DIFFERENTIAL LVPECL FREQUENCY SYNTHESIZER
T
ABLE
1. P
IN
D
ESCRIPTIONS
Number
1
2, 3, 4,
28, 29,
30, 31, 32
5, 6
7
8, 16
9
10
11, 12
13
14, 15
Name
M5
M6, M7, M8,
M0, M1,
M2, M3, M4
N0, N1
nc
V
EE
TEST
V
CC
FOUT1, nFOUT1
V
CCO
FOUT0, nFOUT0
Input
Input
Input
Unused
Power
Output
Power
Output
Power
Output
Type
Pullup
M divider inputs. Data latched on LOW-to-HIGH transition
Pulldown of nP_LOAD input. LVCMOS / LVTTL interface levels.
Pulldown
Determines output divider value as defined in Table 3C,
Function Table. LVCMOS / LVTTL interface levels.
No connect.
Negative supply pins.
Test output which is ACTIVE in the serial mode of operation. Output
driven LOW in parallel mode. LVCMOS / LVTTL interface levels.
Core supply pin.
Differential output for the synthesizer. 3.3V LVPECL interface levels.
Output supply pin.
Differential output for the synthesizer. 3.3V LVPECL interface levels.
Active High Master Reset. When logic HIGH, the internal dividers
are reset causing the true outputs FOUTx to go low and the
inver ted outputs nFOUTx to go high. When logic LOW, the internal
dividers and the outputs are enabled. Asser tion of MR does not
effect loaded M, N, and T values. LVCMOS / LVTTL interface levels.
Clocks in serial data present at S_DATA input into the shift register
on the rising edge of S_CLOCK. LVCMOS / LVTTL interface levels.
Shift register serial input. Data sampled on the rising edge of
S_CLOCK. LVCMOS / LVTTL interface levels.
Controls transition of data from shift register into the dividers.
LVCMOS / LVTTL interface levels.
Analog supply pin.
Pullup
Selects between cr ystal or test inputs as the PLL reference source.
Selects XTAL inputs when HIGH. Selects TEST_CLK when LOW.
LVCMOS / LVTTL interface levels.
Description
17
MR
Input
Pulldown
18
19
20
21
22
23
24,
25
26
27
S_CLOCK
S_DATA
S_LOAD
V
CCA
XTAL_SEL
REF_CLK
XTAL_OUT,
XTAL_IN
nP_LOAD
VCO_SEL
Input
Input
Input
Power
Input
Input
Input
Input
Input
Pulldown
Pulldown
Pulldown
Pulldown Referenc clock input. LVCMOS / LVTTL interface levels.
Cr ystal oscillator interface. XTAL_IN is the input.
XTAL_OUT is the output.
Parallel load input. Determines when data present at M8:M0 is
Pulldown loaded into M divider, and when data present at N1:N0 sets the
N output divider value. LVCMOS / LVTTL interface levels.
Determines whether synthesizer is in PLL or bypass mode.
Pullup
LVCMOS / LVTTL interface levels.
NOTE:
Pullup
and
Pulldown
refer to internal input resistors. See Table 2, Pin Characteristics, for typical values.
T
ABLE
2. P
IN
C
HARACTERISTICS
Symbol
C
IN
R
PULLUP
R
PULLDOWN
Parameter
Input Capacitance
Input Pullup Resistor
Input Pulldown Resistor
Test Conditions
Minimum
Typical
4
51
51
Maximum
Units
pF
kΩ
kΩ
IDT
™
/ ICS
™
3.3V LVPECL FREQUENCY SYNTHESIZER
3
ICS8432BY-51 REV. F MAY 13, 2008
ICS8432-51
700MHZ, CRYSTAL-TO-3.3V DIFFERENTIAL LVPECL FREQUENCY SYNTHESIZER
T
ABLE
3A. P
ARALLEL
AND
S
ERIAL
M
ODE
F
UNCTION
T
ABLE
Inputs
Conditions
S_CLOCK
X
X
X
↑
L
L
X
↑
S_DATA
X
X
X
Data
Data
Data
X
Data
Reset. Forces outputs LOW.
Data on M and N inputs passed directly to the M
divider and N output divider. TEST output forced LOW.
Data is latched into input registers and remains loaded
until next LOW transition or until a serial event occurs.
Serial input mode. Shift register is loaded with data on
S_DATA on each rising edge of S_CLOCK.
Contents of the shift register are passed to the
M divider and N output divider.
M divider and N output divider values are latched.
Parallel or serial input do not affect shift registers.
S_DATA passed directly to M divider as it is clocked.
X
X
L
L
↑
↓
L
H
MR
H
L
L
L
L
L
L
L
nP_LOAD
X
L
↑
H
H
H
H
H
M
X
Data
Data
X
X
X
X
X
N
X
Data
Data
X
X
X
X
X
S_LOAD
NOTE: L = LOW
H = HIGH
X = Don't care
↑
= Rising edge transition
↓
= Falling edge transition
T
ABLE
3B. P
ROGRAMMABLE
VCO F
REQUENCY
F
UNCTION
T
ABLE
VCO Frequency
(MHz)
250
275
•
•
650
675
M Divide
10
11
•
•
26
27
256
M8
0
0
•
•
0
0
128
M7
0
0
•
•
0
0
64
M6
0
0
•
•
0
0
32
M5
0
0
•
•
0
0
16
M4
0
0
•
•
1
1
8
M3
1
1
•
•
1
1
4
M2
0
0
•
•
0
0
2
M1
1
1
•
•
1
1
1
M0
0
1
•
•
0
1
0
700
28
0
0
0
0
1
1
1
0
NOTE 1: These M divide values and the resulting frequencies correspond to cr ystal or TEST_CLK input frequency
of 25MHz.
T
ABLE
3C. P
ROGRAMMABLE
O
UTPUT
D
IVIDER
F
UNCTION
T
ABLE
Inputs
N1
0
0
1
1
N0
0
1
0
1
N Divider Value
1
2
4
8
Output Frequency (MHz)
Minimum
250
125
62.5
31.25
Maximum
700
350
175
87.5
IDT
™
/ ICS
™
3.3V LVPECL FREQUENCY SYNTHESIZER
4
ICS8432BY-51 REV. F MAY 13, 2008
ICS8432-51
700MHZ, CRYSTAL-TO-3.3V DIFFERENTIAL LVPECL FREQUENCY SYNTHESIZER
A
BSOLUTE
M
AXIMUM
R
ATINGS
Supply Voltage, V
CC
Inputs, V
I
Outputs, I
O
Continuous Current
Surge Current
Package Thermal Impedance,
θ
JA
32 Lead LQFP
32 Lead VFQFN
Storage Temperature, T
STG
4.6V
-0.5V to V
CC
+ 0.5 V
50mA
100mA
47.9°C/W (0 lfpm)
41.07°C/W (0 lfpm)
-65°C to 150°C
NOTE: Stresses beyond those listed under Absolute
Maximum Ratings may cause permanent damage to the
device. These ratings are stress specifications only. Functional op-
eration of product at these conditions or any conditions beyond
those listed in the
DC Characteristics
or
AC Characteristics
is not
implied. Exposure to absolute maximum rating conditions for ex-
tended periods may affect product reliability.
T
ABLE
4A. P
OWER
S
UPPLY
DC C
HARACTERISTICS
,
V
CC
= V
CCO
= 3.3V±5%, T
A
= 0°C
TO
70°C
Symbol
V
CC
V
CCA
V
CCO
I
EE
I
CCA
Parameter
Core Supply Voltage
Analog Supply Voltage
Output Supply Voltage
Power Supply Current
Analog Supply Current
Test Conditions
Minimum
3.135
V
CC
– 0.15
3.135
Typical
3. 3
3.3
3.3
Maximum
3.465
3.465
3.465
135
15
Units
V
V
V
mA
mA
T
ABLE
4B. LVCMOS / LVTTL DC C
HARACTERISTICS
,
V
CC
= V
CCO
= 3.3V±5%, T
A
= 0°C
TO
70°C
Symbol
V
IH
Parameter
Input
High Voltage
VCO_SEL, XTAL_SEL, MR,
S_LOAD, nP_LOAD, N0:N1,
S_DATA, S_CLOCK, M0:M8
REF_CLK
VCO_SEL, XTAL_SEL, MR,
S_LOAD, nP_LOAD, N0:N1,
S_DATA, S_CLOCK, M0:M8
REF_CLK
M0-M4, M6-M8, N0, N1, MR,
S_CLOCK, REF_CLK,
S_DATA, S_LOAD, nP_LOAD
M5, XTAL_SEL, VCO_SEL
M0-M4, M6-M8, N0, N1, MR,
S_CLOCK, REF_CLK,
S_DATA, S_LOAD, nP_LOAD
M5, XTAL_SEL, VCO_SEL
V
OH
V
OL
Output
High Voltage
Output
Low Voltage
TEST; NOTE 1
TEST; NOTE 1
Test Conditions
Minimum
2
2
-0.3
-0.3
V
CC
= V
IN
= 3.465V
V
CC
= V
IN
= 3.465V
V
CC
= 3.465V,
V
IN
= 0V
V
CC
= 3.465V,
V
IN
= 0V
-5
Typical
Maximum
V
CC
+ 0.3
V
CC
+ 0.3
0.8
1.3
150
5
Units
V
V
V
V
µA
µA
µA
V
IL
Input
Low Voltage
I
IH
Input
High Current
I
IL
Input
Low Current
-150
2.6
0.5
µA
V
V
NOTE 1: Outputs terminated with 50Ω to V
CCO
/2.
IDT
™
/ ICS
™
3.3V LVPECL FREQUENCY SYNTHESIZER
5
ICS8432BY-51 REV. F MAY 13, 2008