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CY27EE16ZE_04 Datasheet, PDF (13/17 Pages) Cypress Semiconductor – 1 PLL In-System Programmable Clock Generator with Individual 16K EEPROM
CY27EE16ZE
Absolute Maximum Conditions
Parameter
VDD
TS
TJ
VCXO
Description
Supply Voltage
Storage Temperature
Junction Temperature
Logic Inputs
I2C interface (SDAT and SCL)
Digital Outputs referred to VDD
Electro-Static Discharge
Analog Input
Endurance (@ 25°C)
Data retention
Min.
–0.5
–65
–40
VSS – 0.5
–0.5
VSS – 0.5
–0.5
10
Max.
7.0
125
100
VDD + 0.5
5.5
VDD + 0.5
2000
VDD + 0.5
1,000,000 (100k/page)
Unit
V
°C
°C
V
V
V
V
V
writes
yrs
Recommended Operating Conditions
Parameter
Description
Min.
Typ.
Max.
Unit
VDD
Operating Voltage
3.135
3.3
3.465
V
VDDL
Operating Voltage
2.375 2.5, 3.3 3.465
V
TA
Ambient Temperature, Industrial grade
–40
85
°C
TA
Ambient Temperature, Commercial grade
0
70
°C
CLOAD
Max. Load Capacitance
15
pF
tPU
Power-up time for all VDD’s to reach minimum specified voltage
0.05
(power ramps must be monotonic)
500
ms
DC Electrical Specifications
Parameter
IOH
IOL
VIH
VIL
CIN
IIZ
f∆XO
VVCXO
fVBW
IVDD
ISB
Name
Output High Current[2]
Output Low Current[2]
Input High Voltage
Input Low Voltage
Input Capacitance[2, 3]
Input Leakage Current
VCXO Pullability Range[2]
VCXO Input Range[2]
VCXO Input Bandwidth[2]
Supply Current
Supply Current - Power
Down Mode Enabled
Description
VOH = VDD – 0.5, VDD = 3.3V
VOL = 0.5, VDD = 3.3V
CMOS levels
CMOS levels
Except XTAL pins
Current drawn while part is in
standby.
Min.
Typ.
Max.
Unit
12
24
mA
12
24
mA
0.7 * VDD
V
0.3 * VDD
V
7
pF
10
µA
+150
ppm
0
VDD
V
DC
200
kHz
45
mA
5
40
µA
DC Electrical Specifications – 2.5V Outputs
Parameter
Name
Description
Min.
IOH2.5
IOL2.5
Output High Current[2, 4] VOH = VDD – 0.5, VDD = 3.3 V, VDDL = 2.5V 12
Output Low Current[2, 4] VOL = 0.5, VDD = 3.3 V, VDDL=2.5V
12
Notes:
2. Guaranteed by design, not 100% tested.
3. Crystal must meet Table 14 specifications.
4. VDD is only specified and characterized at 3.3V + 5%. VDDL may be powered at any value between 3.465 and 2.375.
Typ.
Max.
24
24
Unit
mA
mA
Document #: 38-07440 Rev. *C
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