CYP15G0402DXB-BGI Cypress Semiconductor Corp, CYP15G0402DXB-BGI Datasheet - Page 20

CYP15G0402DXB-BGI

Manufacturer Part Number
CYP15G0402DXB-BGI
Description
Manufacturer
Cypress Semiconductor Corp
Datasheet

Specifications of CYP15G0402DXB-BGI

Lead Free Status / RoHS Status
Not Compliant
Document #: 38-02057 Rev. *G
Maximum Ratings
(Above which the useful life may be impaired. User guidelines
only, not tested.
Storage Temperature ................................. –65°C to +150°C
Ambient Temperature with
Power Applied............................................. –55°C to +125°C
DC Voltage Applied to LVTTL Outputs
in High
Supply Voltage to Ground Potential ............... –0.5V to +3.8V
Output Current into LVTTL Outputs (LOW)..................60 mA
DC Input Voltage....................................–0.5V to V
CYP(V)15G0402DXB DC Electrical Characteristics
LVTTL-compatible Outputs
V
V
I
I
LVTTL-compatible Inputs
V
V
I
I
I
I
LVDIFF Inputs: REFCLK±
V
V
V
V
Three-level Inputs
V
V
V
I
I
I
Differential CML Serial Outputs: OUTA±, OUTB±, OUTC±, OUTD±
V
Notes:
16. Tested one output at a time, output shorted for less than one second, less than 10% duty cycle.
17. This is the minimum difference in voltage between the true and complement inputs required to ensure detection of a logic-1 or logic-0. A logic-1 exists when
18. The common mode range defines the allowable range of REFCLK+ and REFCLK– when REFCLK+ = REFCLK–. This marks the zero-crossing between the
OST
OZL
IHT
ILT
IHPDT
ILPUT
IHH
IMM
ILL
OHT
OLT
IHT
ILT
DIFF
IHHP
ILLP
COMREF
IHH
IMM
ILL
OHC
Parameter
the true (+) input is more positive than the complement (–) input. A logic-0 exists when the complement (-) input is more positive than true (+) input.
true and complement inputs as the signal switches between a logic-1 and a logic-0.
[17]
Z State .......................................–0.5V to V
[18]
Output HIGH Voltage
Output LOW Voltage
Output Short Circuit Current
High-Z Output Leakage Current
Input HIGH Voltage
Input LOW Voltage
Input HIGH Current
Input LOW Current
Input HIGH Current with internal pull-down V
Input LOW Current with internal pull-up
Input Differential Voltage
Highest Input HIGH Voltage
Lowest Input LOW voltage
Common Mode Range
Three-level Input HIGH Voltage
Three-level Input MID Voltage
Three-level Input LOW Voltage
Input High Current
Input MID Current
Input LOW Current
Output HIGH Voltage
Description
CC
CC
+ 0.5V
+ 0.5V
I
I
V
REFCLK Input, V
Other Inputs, V
REFCLK Input, V
Other Inputs, V
V
Min. ≤ V
Min. ≤ V
Min. ≤ V
Vin = Vcc
Vin = Vcc/2
Vin = GND
100Ω differential load
150Ω differential load
OH
OL
OUT
IN
IN
= 4 mA, V
= V
= 0.0V
= –4 mA, V
Test Conditions
= 0V
Static Discharge Voltage.......................................... > 2000 V
(per MIL-STD-883, Method 3015)
Latch-up Current..................................................... > 200 mA
Power-up Requirements
The CYP(V)15G0402DXB requires one power supply. The
voltage on any input or I/O pin cannot exceed the power pin
during power-up.
Operating Range
Over the Operating Range
Commercial
Industrial
CC
CC
CC
CC
Range
[16]
≤ Max.
≤ Max.
≤ Max.
CC
CC
IN
IN
= Min.
IN
= V
IN
= 0.0V
= Min.
= V
= 0.0V
CC
CC
Ambient Temperature
–40°C to +85°C
0.87 * V
0.47 * V
V
V
0°C to +70°C
CC
CC
Min.
–0.5
Typ.
–20
–20
400
–50
2.4
2.0
1.2
0.0
1.0
0.0
0
– 0.5
– 0.5
CYP15G0402DXB
CYV15G0402DXB
CC
CC
V
0.53 * V
0.13 * V
V
V
V
CC
CC
CC
CC
V
Max.
–100
+200
–200
–200
Max.
+1.5
–1.5
V
+40
V
V
V
–40
200
0.4
0.8
CC
20
50
– 1.2V
CC
CC
CC
CC
+ 0.3
– 0.2
– 0.2
/2
Page 20 of 29
CC
CC
3.3V ± 5%
3.3V ± 5%
V
CC
Unit
Unit
mA
mA
mA
mA
mV
µA
µA
µA
µA
µA
µA
µA
V
V
V
V
V
V
V
V
V
V
V
V
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