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INDUSTRIALTEMPERATURERANGE
IDT5T9890
EEPROM PROGRAMMABLE 2.5V PROGRAMMABLE SKEW PLL CLOCK DRIVER
DC ELECTRICAL CHARACTERISTICS OVER OPERATING RANGE FOR eHSTL(1)
Symbol
Parameter
Test Conditions
Min.
Typ.(7)
Max
Unit
InputCharacteristics
IIH
Input HIGH Current
VDD = 2.7V
VI = VDDQN/GND
—
±5
A
IIL
InputLOWCurrent
VDD = 2.7V
VI = GND/VDDQN
——
±5
VIK
ClampDiodeVoltage
VDD = 2.3V, IIN = -18mA
—
- 0.7
- 1.2
V
VIN
DCInputVoltage
- 0.3
+3.6
V
VDIF
DCDifferentialVoltage(2,8)
0.2
—
V
VCM
DC Common Mode Input Voltage(3,8)
800
900
1000
mV
VIH
DC Input HIGH(4,5,8)
VREF + 100
—
mV
VIL
DC Input LOW(4,6,8)
—VREF - 100
mV
VREF
Single-EndedReferenceVoltage(4,8)
—
900
—
mV
OutputCharacteristics
VOH
Output HIGH Voltage
IOH = -8mA
VDDQN - 0.4
—
V
IOH = -100
AVDDQN - 0.1
—
V
VOL
OutputLOWVoltage
IOL = 8mA
—
0.4
V
IOL = 100
A
—
0.1
V
VOX
FB/FB Output Crossing Point
VDDQN/2 - 150
VDDQN/2
VDDQN/2 + 150
mV
NOTES:
1. See RECOMMENDED OPERATING RANGE table.
2. VDIF specifies the minimum input differential voltage (VTR - VCP) required for switching where VTR is the "true" input level and VCP is the "complement" input level. Differential mode
only. The DC differential voltage must be maintained to guarantee retaining the existing HIGH or LOW input. The AC differential voltage must be achieved to guarantee switching
to a new state.
3. VCM specifies the maximum allowable range of (VTR + VCP) /2. Differential mode only.
4. For single-ended operation, in a differential mode, REF[1:0]/VREF[1:0] is tied to the DC voltage VREF[1:0].
5. Voltage required to maintain a logic HIGH, single-ended operation in differential mode.
6. Voltage required to maintain a logic LOW, single-ended operation in differential mode.
7. Typical values are at VDD = 2.5V, VDDQN = 1.8V, +25°C ambient.
8. The reference clock input is capable of HSTL, eHSTL, LVEPECL, 1.8V or 2.5V LVTTL operation independent of the device output. (See Input/Output Selection table.)