DS1302Z+ Dallas Semiconductor, DS1302Z+ Datasheet - Page 4

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DS1302Z+

Manufacturer Part Number
DS1302Z+
Description
SERIAL TIME. CHIP, 150MIL, SOIC
Manufacturer
Dallas Semiconductor
Datasheet

Specifications of DS1302Z+

Lead Free Status / Rohs Status
RoHS Compliant part Electrostatic Device
PIN DESCRIPTION
8
1
2
3
4
5
6
7
8
PIN
2, 4, 6,
11, 13,
7, 10,
16
12
14
16
15
1
3
5
8
9
NAME
SCLK
GND
N.C.
V
V
CE
I/O
X1
X2
CC2
CC1
Primary Power-Supply Pin in Dual Supply Configuration. V
backup source to maintain the time and date in the absence of primary power. The
DS1302 operates from the larger of V
0.2V, V
DS1302.
Connections for Standard 32.768kHz Quartz Crystal. The internal oscillator is
designed for operation with a crystal having a specified load capacitance of 6pF.
For more information on crystal selection and crystal layout considerations, refer to
Application Note 58: Crystal Considerations for Dallas Real-Time Clocks. The
DS1302 can also be driven by an external 32.768kHz oscillator. In this
configuration, the X1 pin is connected to the external oscillator signal and the X2 pin
is floated.
Ground
Input. CE signal must be asserted high during a read or a write. This pin has an
internal 40kΩ (typ) pulldown resistor to ground. Note: Previous data sheet revisions
referred to CE as RST. The functionality of the pin has not changed.
Input/Push-Pull Output. The I/O pin is the bidirectional data pin for the 3-wire
interface. This pin has an internal 40kΩ (typ) pulldown resistor to ground.
Input. SCLK is used to synchronize data movement on the serial interface. This pin
has an internal 40kΩ (typ) pulldown resistor to ground.
Low-Power Operation in Single Supply and Battery-Operated Systems and Low-
Power Battery Backup. In systems using the trickle charger, the rechargeable
energy source is connected to this pin. UL recognized to ensure against reverse
charging current when used with a lithium battery.
No Connection
CC2
powers the DS1302. When V
4 of 16
FUNCTION
CC1
CC2
or V
is less than V
CC2
. When V
CC1
CC2
CC1
, V
is greater than V
is connected to a
CC1
powers the
CC1
+

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