參數(shù)資料
型號(hào): DS3150TN
廠(chǎng)商: Maxim Integrated Products
文件頁(yè)數(shù): 11/28頁(yè)
文件大?。?/td> 0K
描述: IC LIU T3/E3/STS-1 IND 48-TQFP
產(chǎn)品培訓(xùn)模塊: Lead (SnPb) Finish for COTS
產(chǎn)品變化通告: Product Discontinuation 20/Feb/2012
標(biāo)準(zhǔn)包裝: 250
類(lèi)型: 線(xiàn)路接口裝置(LIU)
驅(qū)動(dòng)器/接收器數(shù): 1/1
規(guī)程: DS3
電源電壓: 3.135 V ~ 3.465 V
安裝類(lèi)型: 表面貼裝
封裝/外殼: 48-LQFP
供應(yīng)商設(shè)備封裝: 48-LQFP(7x7)
包裝: 管件
DS3150
19 of 28
NAME
TYPE
FUNCTION
TDS1/
OFSEL
I3
(Note 2)
Transmit Data Select Bit 1/Oscillator Frequency Select. If EFE = 1, TDS1, TDS0
and TESS select the source of the transmit data (Table 2-B). If EFE = 0, TDS1 is
ignored. If MCLK is wired low, TDS1 is internally pulled low, and a resistor connected
between this pin (OFSEL) and ground determines the frequency of an internal
oscillator. The following resistor values should be used for specific applications:
E3: 6.81k
W, ±2%
DS3: 5.23k
W, ±2%
STS-1: 4.53k
W, ±2%
When switching among DS3, E3, and STS-1 modes, do not allow OFSEL to float.
Instead, hardwire the highest resistor value and switch in series or parallel resistors as
needed. Example: For a DS3/E3 application, hardwire 5.23k for DS3 and switch in
series 1.58k to get 6.81k for E3.
TESS
I3
(Note 2)
T3/E3/STS-1 Select. TESS determines the mode of operation for the device.
0 = E3
1 = T3 (DS3)
Float = STS-1
TNEG
I3
(Note 2)
Transmit Negative Data. When the B3ZS/HDB3 encoder is disabled (
ZCSE = 1),
TNEG should be driven high to transmit a negative AMI pulse. When the B3ZS/HDB3
encoder is enabled (
ZCSE = 0), the NRZ data stream should be applied to TNRZ, while
TNEG is ignored and can be wired either high or low. TNEG is sampled either on the
falling edge of TCLK (ICE = 1 or Float) or the rising edge of TCLK (ICE = 0).
TPOS/
TNRZ
I
Transmit Positive Data. When the B3ZS/HDB3 encoder is disabled (
ZCSE = 1),
TPOS should be driven high to transmit a positive AMI pulse. When the B3ZS/HDB3
encoder is enabled (
ZCSE = 0), the NRZ data stream should be applied to TNRZ.
TPOS/TNRZ is sampled either on the falling edge of TCLK (ICE = 1 or Float) or the
rising edge of TCLK (ICE = 0).
TTS
I3
(Note 2)
Transmit Tri-State.
TTS determines whether the TX+ and TX- analog outputs are tri-
stated or active. This input also controls the jitter attenuator (Table 2-C).
0 = tri-state the transmit output driver, disable the jitter attenuator in the transmit path
1 = enable the transmit output driver, disable the jitter attenuator in the transmit path
Float = enable the transmit output driver, enable the jitter attenuator in the transmit path
TX+,
TX-
O3
(Note 3)
Transmit Analog Outputs. These differential AMI outputs are coupled to the
outbound 75
W coaxial cable through a 2:1 step-down transformer (Figure 1-2). These
outputs can be tri-stated using the
TTS input pin.
VDD
P
Positive Supply. 3.3V
±5%. All VDD pins should be wired together.
VSS
P
Ground Reference. All VSS pins should be wired together.
ZCSE
I
Active-Low Zero Code Suppression Enable.
ZCSE has an internal 80k
W pullup to
VDD.
0 = B3ZS/HDB3 encoder/decoder enabled (NRZ interface enabled)
1 = B3ZS/HDB3 encoder/decoder disabled (bipolar interface enabled)
Note 1:
Pin type I = input pin. Pin type O = output pin. Pin type P = power-supply pin.
Note 2:
Pin type I3 is an input capable of detecting three states: high, low, and float. All I3 inputs have an internal 13k
W pullup to
approximately 1.5V. The voltage range of the float state is approximately 1.2V to 1.9V. If the function of the float state of an I3 pin
is not defined in Table 2-A, then the float state is used for factory test only.
Note 3:
Pin type O3 is an output that is tri-state capable.
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