參數(shù)資料
型號(hào): 9EX21501AKLF
廠商: INTEGRATED DEVICE TECHNOLOGY INC
元件分類(lèi): 時(shí)鐘及定時(shí)
英文描述: 21501 SERIES, PLL BASED CLOCK DRIVER, 15 TRUE OUTPUT(S), 0 INVERTED OUTPUT(S), PQCC64
封裝: ROHS COMPLIANT, PLASTIC, MLF-64
文件頁(yè)數(shù): 13/15頁(yè)
文件大?。?/td> 200K
代理商: 9EX21501AKLF
IDT
15 Output PCIe G2/QPI Differential Buffer with 2:1 Input Mux
1578—01/18/11
9EX21501
15 Output PCIe G2/QPI Differential Buffer with 2:1 Input Mux
7
Datasheet
Electrical Characteristics - DIF 0.7V Current Mode Differential Outputs
TA = TCOM or TIND; Supply Voltage VDD/VDDA = 3.3 V +/-5%, See Test Loads for Loading Conditions
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS NOTES
Slew rate
Trf
Scope averaging on
1
2.2
4
V/ns
1, 2, 3
Slew rate matching
ΔTrf
Slew rate matching,
Scope averaging on
11
20
%
1, 2, 4
Voltage High
VHigh
660
772
850
1
Voltage Low
VLow
-150
10
150
1
Max Voltage
Vmax
870
1150
1
Min Voltage
Vmin
-300
-47
1
Vswing
Scope averaging off
300
1390
mV
1, 2
Crossing Voltage (abs)
Vcross_abs
Scope averaging off
250
360
550
mV
1, 5
Crossing Voltage (var)
Δ-Vcross
Scope averaging off
14
140
mV
1, 6
2 Measured from differential waveform
6 The total variation of all Vcross measurements in any system. Note that this is a subset of V_cross_min/max (V_cross absolute)
allowed. The intent is to limit Vcross induced modulation by setting V_cross_delta to be smaller than V_cross absolute.
1Guaranteed by design and characterization, not 100% tested in production. IREF = VDD/(3xR
R).
For RR = 475 (1%), IREF = 2.32mA.
IOH = 6 x IREF and VOH = 0.7V @ ZO=50 (100 differential impedance).
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 of Clock / falling edge rate of Clock#. It is measured in 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 uses 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).
Statistical measurement on single-
ended signal using oscilloscope math
function. (Scope averaging on)
mV
Measurement on single ended signal
using absolute value. (Scope averaging
mV
Electrical Characteristics - Current Consumption
TA = TCOM or TIND; Supply Voltage VDD/VDDA = 3.3 V +/-5%, See Test Loads for Loading Conditions
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS NOTES
IDD3.3VDDOP
TA - TCOM, All outputs active <200MHz
306
330
mA
1
IDD3.3VDDOP
TA - TCOM, All outputs active
>=200MHz
360
390
mA
1
IDD3.3VDDAOP
TA - TCOM, All outputs active <200MHz
29
36
mA
1
IDD3.3VDDAOP
TA - TCOM, All outputs active
>=200MHz
29
36
mA
1
VDD Powerdown Current,
Commerical Temp
IDD3.3VDDPDZ
TA = TCOM, All differential pairs Hi-Z
12
15
mA
1
VDDA Powerdown Current,
Commercial Temp
IDD3.3VDDAPDZ
TA = TCOM, All differential pairs Hi-Z
15
20
mA
1
IDD3.3VDDOP
TA - TIND, All outputs active <200MHz
325
350
mA
1
IDD3.3VDDAOP
TA - TIND, All outputs active >=200MHz
390
420
mA
1
IDD3.3VDDOP
TA - TIND, All outputs active >=200MHz
33
40
mA
1
IDD3.3VDDAOP
TA - TIND, All outputs active >=200MHz
33
40
mA
1
VDD Powerdown Current,
Industrial Temp
IDD3.3VDDPDZ
TA = TIND, All differential pairs Hi-Z
15
20
mA
1
VDDA Powerdown Current,
Industrial Temp
IDD3.3VDDAPDZ
TA = TIND, All differential pairs Hi-Z
16
20
mA
1
1Guaranteed by design and characterization, not 100% tested in production.
VDD Operating Current,
Commerical Temp
VDDA Operating Current,
Commercial Temp
VDD Operating Current,
Industrial Temp
VDDA Operating Current,
Industrial Temp
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