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9ZXL1530 데이터시트 PDF




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부품번호 9ZXL1530 기능
기능 15-OUTPUT DB1900Z LOW-POWER DERIVATIVE
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9ZXL1530 데이터시트, 핀배열, 회로
15-OUTPUT DB1900Z LOW-POWER DERIVATIVE
DATASHEET
9ZXL1530
Description
The 9ZXL1530 is a 15-output version of the Intel DB1900Z
Differential Buffer utilizing Low-Power HCSL (LP-HCSL)
outputs to reduce power consumption more than 50% from
the original IDT9ZX21501. It is suitable for PCI-Express
Gen1/2/3 or QPI/UPI applications, and uses a fixed external
feedback to maintain low drift for demanding QPI/UPI
applications.
Recommended Application
Buffer for Romley, Grantley and Purley Servers
Key Specifications
Cycle-to-cycle jitter: < 50ps
Output-to-output skew: <65ps
Input-to-output delay: Fixed at 0 ps
Input-to-output delay variation: <50ps
Phase jitter: PCIe Gen3 < 1ps rms
Phase jitter: QPI 9.6GB/s < 0.2ps rms
Features/Benefits
Fixed feedback path; 0ps input-to-output delay
9 Selectable SMBus addresses; Multiple devices can
share same SMBus segment
Separate VDDIO for outputs; allows maximum power
savings
PLL or bypass mode; PLL can dejitter incoming clock
Selectable PLL BW; minimizes jitter peaking in
downstream PLL's
Spread spectrum compatible; tracks spreading input
clock for EMI reduction
SMBus Interface; unused outputs can be disabled
100MHz & 133.33MHz PLL mode; Legacy QPI/UPI
support
Differential outputs are Low/Low in power down;
Maximum power savings
Output Features
15 - LP-HCSL Differential Output Pairs
Block Diagram
DIF_IN
DIF_IN#
HIBW_BYPM_LOBW#
100M_133M#
CKPWRGD/PD#
SMB_A0_tri
SMB_A1_tri
SMBDAT
SMBCLK
Logic
Z-PLL
(SS Compatible)
IDT® 15-OUTPUT DB1900Z LOW-POWER DERIVATIVE
1
FBOUT_NC
DIF(14:0)
9ZXL1530
REV D 112015




9ZXL1530 pdf, 반도체, 판매, 대치품
9ZXL1530
15-OUTPUT DB1900Z LOW-POWER DERIVATIVE
Pin Descriptions (cont.)
PIN #
PIN NAME
33 DIF_5
34 DIF_5#
35 GND
36 VDDIO
37 DIF_6
38 DIF_6#
39 DIF_7
40 DIF_7#
41 VDD
42 GND
43 DIF_8
44 DIF_8#
45 DIF_9
46 DIF_9#
47 GND
48 VDDIO
49 DIF_10
50 DIF_10#
51 VDDIO
52 GND
53 DIF_11
54 DIF_11#
55 DIF_12
56 DIF_12#
57 GND
58 VDD
59 DIF_13
60 DIF_13#
61 DIF_14
62 DIF_14#
63 VDDIO
64 GND
TYPE
DESCRIPTION
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
PWR Ground pin.
PWR Power supply for differential outputs
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
PWR Power supply, nominal 3.3V
PWR Ground pin.
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
PWR Ground pin.
PWR Power supply for differential outputs
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
PWR Power supply for differential outputs
PWR Ground pin.
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
PWR Ground pin.
PWR Power supply, nominal 3.3V
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
OUT 0.7V differential true clock output
OUT 0.7V differential Complementary clock output
PWR Power supply for differential outputs
PWR Ground pin.
IDT® 15-OUTPUT DB1900Z LOW-POWER DERIVATIVE
4
9ZXL1530
REV D 112015

4페이지










9ZXL1530 전자부품, 판매, 대치품
9ZXL1530
15-OUTPUT DB1900Z LOW-POWER DERIVATIVE
Electrical Characteristics–DIF 0.7V Low Power Differential Outputs
TA = TCOM; Supply Voltage VDD/VDDA = 3.3 V +/-5%, VDDIO = 1.05 to 3.3V +/-5%. See Test Loads for Loading Conditions
PARAMETER
SYM BO L
CONDITIONS
MIN TYP MAX UNITS NOTES
Slew rate
Slew rate matching
Trf
Trf
Scope averaging on
Slew rate matching.
1 3 4 V/ns 1, 2, 3
7.6 20 % 1, 2, 4
Voltage High
Voltage Low
VHigh
VL ow
Statistical measurement on single-ended signal 660 757 850
using oscilloscope math function. (Scope averaging
mV
on) -150 16 150
1
1
Max Voltage
Min Voltage
Vma x
Vmin
Measurement on single ended signal using absolute
value. (Scope averaging off)
-300
857
-36
1 150
mV
1
1
V sw ing
Vswing
Scope averaging off
300
mV 1, 2
Crossing Voltage (abs) Vcross_abs
Scope averaging off
300 469 550 mV 1, 5
Crossing Voltage (var)
-Vcross
Scope averaging off
14 140 mV 1, 6
1Guaranteed by design and characterization, not 100% tested in production. CL = 2pF with RS = 27for Zo = 85differential trace
i mped anc e.
2 Measured from differential waveform
3 Slew rate is measured through the Vswing voltage range centered around differential 0V. This results in a +/-150mV window around
differential 0V.
4 Matching applies to rising edge rate for Clock and falling edge rate for Clock#. It is measured using a +/-75mV window centered on the
average cross point where Clock rising meets Clock# falling. The median cross point is used to calculate the voltage thresholds the
oscilloscope is to use for the edge rate calculations.
5 Vcross is defined as voltage where Clock = Clock# measured on a component test board and only applies to the differential rising edge (i.e.
Clock rising and Clock# falling).
6 The total variation of all Vcross measurements in any particular system. Note that this is a subset of Vcross_min/max (Vcross absolute)
allowed. The intent is to limit Vcross induced modulation by setting -Vcross to be smaller than Vcross absolute.
Electrical Characteristics–Current Consumption
TA = TCOM; Supply Voltage VDD/VDDA = 3.3 V +/-5%, VDDIO = 1.05 to 3.3V +/-5%. See Test Loads for Loading Conditions
PA RAM ETER
SYMBOL
CONDITIONS
MIN TYP MAX
ID DVD D
All outputs active @100MHz, CL = 2pF;
Operating Supply Current
ID DVDD A/R
All outputs active @100MHz, CL = 2pF;
ID DVD DIO
All outputs active @100MHz, CL = 2pF;
ID DVD DPD
All differential pairs low-low
Powerdown Current
IDD VDD A/RPD
All differential pairs low-low
ID DVD DIOPD
All differential pairs low-low
1Guaranteed by design and characterization, not 100% tested in production.
23
15
124
2 .2
4 .9
0. 16
40
20
15 0
4
7
0.5
UN ITS
mA
mA
mA
mA
mA
mA
N OTE S
1
1
1
1
1
1
IDT® 15-OUTPUT DB1900Z LOW-POWER DERIVATIVE
7
9ZXL1530
REV D 112015

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9ZXL1530

15-OUTPUT DB1900Z LOW-POWER DERIVATIVE

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