參數(shù)資料
型號(hào): DS1094LU-42M+
廠商: Maxim Integrated Products
文件頁(yè)數(shù): 10/11頁(yè)
文件大?。?/td> 0K
描述: IC ECONOSCILLATOR SS 8-USOP
其它有關(guān)文件: Automotive Product Guide
產(chǎn)品培訓(xùn)模塊: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
標(biāo)準(zhǔn)包裝: 50
系列: EconOscillator™
類型: 時(shí)鐘發(fā)生器
PLL: 無(wú)
輸入: 時(shí)鐘
輸出: 時(shí)鐘
電路數(shù): 1
比率 - 輸入:輸出: 2:4
差分 - 輸入:輸出: 無(wú)/無(wú)
頻率 - 最大: 2MHz
除法器/乘法器: 是/無(wú)
電源電壓: 3 V ~ 3.6 V
工作溫度: -40°C ~ 85°C
安裝類型: 表面貼裝
封裝/外殼: 8-TSSOP,8-MSOP(0.118",3.00mm 寬)
供應(yīng)商設(shè)備封裝: 8-uMAX
包裝: 管件
DS1094L
will dither between 2MHz and 1.96MHz at a modulation
frequency determined by the selected dither frequen-
cy. Continuing with the same example, if D1 and D0
both equal zero, selecting fMOSC/128, then the dither
frequency would be 15.625kHz.
2-Wire Slave Address
The 2-wire serial interface is used to read and write the
control registers of the DS1094L. The default slave
address of the DS1094L is B0h (see Figure 4). Using
the 3 address bits (A2, A1, and A0) in the ADDR regis-
ter, the slave address can be changed to allow as
many as eight DS1094Ls reside on the same 2-wire
bus or to simply prevent address conflicts with other 2-
wire devices. The location of the address bits within the
ADDR register is shown in the Control Registers sec-
tion. A detailed description of the 2-wire interface is
found in the 2-Wire Serial Interface Description section.
EEPROM Write Control
Since EEPROM does have a limited number of lifetime
write cycles (specified in the NONVOLATILE MEMORY
CHARACTERISTICS electrical table), it is possible to
configure the DS1094L to prevent EEPROM wear out
and eliminate the EEPROM write cycle time by using
the WC bit in the ADDR register. When the WC bit is 0
(default), register writes are automatically written into
EEPROM. The Write EE Command is not needed.
However, if WC = 1, then register writes are stored in
SRAM and only written to EEPROM when the user
sends the Write EE Command. If power to the device is
cycled, the last value stored in EEPROM is recalled.
The time required to store the values is one EEPROM
write cycle time. WC = 1 is ideal for applications that
frequently modify the frequency/registers.
Regardless of the value of the WC bit, the value of the
ADDR register is always written immediately to EEP-
ROM.
Control Registers
The DS1094L control registers are used to program the
frequency and features of the device. Table 6 lists the
DS1094L’s control registers and illustrates bit locations
as well as other valuable information. The memory
address of each register is shown in the ADDRESS col-
umn. The factory default values programmed into EEP-
ROM are shown in the DEFAULT column. Refer to the
corresponding sections to determine what values to
write to the registers.
PRESCALER (02h)
D1, D0
Selects the dither frequency. Refer to Table 5.
Ph1, Ph0 Determines whether the two-phase, three-
phase, or four-phase mode is selected. Refer
to Table 3.
J1, J0
Selects the dither amount. Refer to Table 4.
P1, P0
Determines the prescaler value. Refer to
Table 2.
DAC (08h)
D3 to D0 This four-bit value determines the master oscil-
lator frequency, fMOSC. Refer to Table 1 and
the Master Oscillator section for a detailed
information on calculating the DAC value.
ADDR (0Dh)
WC
The EEPROM write control bit determines if
writes to control registers are automatically
backed up in NV memory (EEPROM) or
whether a write EE command is required to
write to NV memory. See the EEPROM Write
Control section for more information.
A2 to A0 This three-bit value determines the 2-wire
slave address.
WRITE EE COMMAND (3Fh)
This command can be used when the WC bit = 1 (see
explanation in the EEPROM Write Control section) to
transfer registers internally from SRAM to EEPROM. The
time required to store the values is one EEPROM write
cycle time. This command is not needed if WC = 0.
Multiphase Spread-Spectrum EconOscillator
8
_____________________________________________________________________
BINARY
REGISTER
ADDRESS
MSB
LSB
DEFAULT
ACCESS
PRESCALER
02h
D1
D0
Ph1
Ph0
J1
J0
P1
P0
11001101b
R/
W
DAC
08h
X1
D3
D2
D1
D0
XXXX0000b
R/
W
ADDR
0Dh
X1
WC
A2
A1
A0
XXXX0000b
R/
W
WRITE EE Command
3Fh
No Data
W
Table 6. Control Registers
X = Don’t care
X1 = Don’t care, reads as 1
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