EEWORLDEEWORLDEEWORLD

Part Number

Search

SY100E446JZTR

Description
4-BIT PARALLEL-TO-SERIAL CONVERTER
Categorylogic    logic   
File Size83KB,9 Pages
ManufacturerMicrochip
Websitehttps://www.microchip.com
Environmental Compliance
Download Datasheet Parametric Compare View All

SY100E446JZTR Overview

4-BIT PARALLEL-TO-SERIAL CONVERTER

SY100E446JZTR Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerMicrochip
Parts packaging codeQLCC
package instructionQCCJ,
Contacts28
Reach Compliance Codecompli
Other featuresSISO OPERATION ALSO AVAILABLE
Counting directionRIGHT
series100E
JESD-30 codeS-PQCC-J28
JESD-609 codee3
length11.48 mm
Logic integrated circuit typePARALLEL IN SERIAL OUT
Humidity sensitivity level2
Number of digits4
Number of functions1
Number of terminals28
Maximum operating temperature85 °C
Minimum operating temperature
Output polarityCOMPLEMENTARY
Package body materialPLASTIC/EPOXY
encapsulated codeQCCJ
Package shapeSQUARE
Package formCHIP CARRIER
Peak Reflow Temperature (Celsius)260
propagation delay (tpd)1.7 ns
Certification statusNot Qualified
Maximum seat height4.57 mm
surface mountYES
technologyECL
Temperature levelOTHER
Terminal surfaceMatte Tin (Sn)
Terminal formJ BEND
Terminal pitch1.27 mm
Terminal locationQUAD
Maximum time at peak reflow temperature40
Trigger typeNEGATIVE EDGE
width11.48 mm
minfmax1300 MHz
Micrel, Inc.
4-BIT PARALLEL-TO-SERIAL
CONVERTER
SY10E446
SY100E446
SY10E446
SY100E446
FEATURES
s
On-chip clock
÷
4 and
÷
8
s
Extended 100E V
EE
range of –4.2V to –5.5V
s
s
s
s
1.6Gb/s typical data rate capability
Differential clock and serial inputs
VBB output for single-ended use
Asynchronous data synchronization
DESCRIPTION
The SY10/100E446 are integrated 4-bit parallel-to-
serial data converters. These devices are designed to
operate for NRZ data rates of up to a minimum of 1.3Gb/
s. The chips generate a divide-by-4 and a divide-by-8
clock for both 4-bit conversion and a two-chip 8-bit
conversion function. The conversion sequence was
chosen to convert the parallel data into a serial stream
from bit D
0
to D
3
. A serial input is provided to cascade
two E446 devices for 8-bit conversion applications.
The SYNC input will asynchronously reset the internal
clock circuitry. This pin allows the user to reset the internal
clock conversion unit and, thus, select the start of the
conversion process.
The MODE input is used to select the conversion mode
of the device. With the MODE input LOW (or open) the
device will function as a 4-bit converter. When the mode
input is driven HIGH, the internal load clock will change
on every eighth clock cycle, thus allowing for an 8-bit
conversion scheme using two E446s. When cascaded in
an 8-bit conversion scheme, the devices will not operate
at the 1.3Gb/s data rate of a single device. Refer to the
applications section of this data sheet for more information
on cascading the E446.
For lower data rate applications, a V
BB
reference
voltage is supplied for single-ended inputs. When
operating at clock rates above 500MHz, differential input
signals are recommended. For single-ended inputs, the
V
BB
pin is tied to the inverting differential input and
bypassed via a 0.01µF capacitor. The V
BB
provides the
switching reference for the input differential amplifier. The
V
BB
can also be used to AC couple an input signal.
s
Mode select to expand to 8 bits
s
Internal 75K
input pulldown resistors
s
Fully compatible with Motorola MC10E/100E446
s
Available in 28-pin PLCC package
PIN NAMES
Pin
SIN, SIN
D
0
– D
3
SOUT, SOUT
CLK, CLK
CL/4, CL/4
CL/8, CL/8
MODE
SYNC
V
CCO
Function
Differential Serial Data Input
Parallel Data Input
Differential Serial Data Output
Differential Clock Input
Differential 4 Clock Output
Differential 8 Clock Output
Conversion Mode, 4-bit/8-bit
Conversion Synchronizing Input
V
CC
to Output
M9999-032206
hbwhelp@micrel.com or (408) 955-1690
1
Rev.: F
Amendment: /0
Issue Date: March 2006

SY100E446JZTR Related Products

SY100E446JZTR SY100E446 SY10E446 SY10E446JC SY10E446_06 SY10E446JCTR SY10E446JZTR SY100E446JCTR SY100E446JC
Description 4-BIT PARALLEL-TO-SERIAL CONVERTER 4-BIT PARALLEL-TO-SERIAL CONVERTER 4-BIT PARALLEL-TO-SERIAL CONVERTER 4-BIT PARALLEL-TO-SERIAL CONVERTER 4-BIT PARALLEL-TO-SERIAL CONVERTER 4-BIT PARALLEL-TO-SERIAL CONVERTER 4-BIT PARALLEL-TO-SERIAL CONVERTER 4-BIT PARALLEL-TO-SERIAL CONVERTER 4-BIT PARALLEL-TO-SERIAL CONVERTER
Is it Rohs certified? conform to - - incompatible - incompatible conform to incompatible incompatible
Maker Microchip - - Microchip - Microchip Microchip Microchip Microchip
package instruction QCCJ, - - PLASTIC, LCC-28 - PLASTIC, LCC-28 QCCJ, PLASTIC, LCC-28 PLASTIC, LCC-28
Reach Compliance Code compli - - _compli - _compli compli _compli _compli
Other features SISO OPERATION ALSO AVAILABLE - - ON-CHIP CLOCK DIVIDE BY 4 & 8; DIFFERENTIAL CLOCK & SERIAL INPUT & OUTPUT - ON-CHIP CLOCK DIVIDE BY 4 & 8; DIFFERENTIAL CLOCK & SERIAL INPUT & OUTPUT SISO OPERATION ALSO AVAILABLE SISO OPERATION ALSO AVAILABLE SISO OPERATION ALSO AVAILABLE
Counting direction RIGHT - - RIGHT - RIGHT RIGHT RIGHT RIGHT
series 100E - - 10E - 10E 10E 100E 100E
JESD-30 code S-PQCC-J28 - - S-PQCC-J28 - S-PQCC-J28 S-PQCC-J28 S-PQCC-J28 S-PQCC-J28
JESD-609 code e3 - - e0 - e0 e3 e0 e0
Logic integrated circuit type PARALLEL IN SERIAL OUT - - PARALLEL IN SERIAL OUT - PARALLEL IN SERIAL OUT PARALLEL IN SERIAL OUT PARALLEL IN SERIAL OUT PARALLEL IN SERIAL OUT
Number of digits 4 - - 4 - 4 4 4 4
Number of functions 1 - - 1 - 1 1 1 1
Number of terminals 28 - - 28 - 28 28 28 28
Maximum operating temperature 85 °C - - 85 °C - 85 °C 85 °C 85 °C 85 °C
Output polarity COMPLEMENTARY - - TRUE - TRUE COMPLEMENTARY COMPLEMENTARY COMPLEMENTARY
Package body material PLASTIC/EPOXY - - PLASTIC/EPOXY - PLASTIC/EPOXY PLASTIC/EPOXY PLASTIC/EPOXY PLASTIC/EPOXY
Package shape SQUARE - - SQUARE - SQUARE SQUARE SQUARE SQUARE
Package form CHIP CARRIER - - CHIP CARRIER - CHIP CARRIER CHIP CARRIER CHIP CARRIER CHIP CARRIER
propagation delay (tpd) 1.7 ns - - 1.7 ns - 1.7 ns 1.7 ns 1.7 ns 1.7 ns
Certification status Not Qualified - - Not Qualified - Not Qualified Not Qualified Not Qualified Not Qualified
surface mount YES - - YES - YES YES YES YES
technology ECL - - ECL - ECL ECL ECL ECL
Temperature level OTHER - - OTHER - OTHER OTHER OTHER OTHER
Terminal surface Matte Tin (Sn) - - Tin/Lead (Sn/Pb) - Tin/Lead (Sn/Pb) Matte Tin (Sn) Tin/Lead (Sn85Pb15) Tin/Lead (Sn85Pb15)
Terminal form J BEND - - J BEND - J BEND J BEND J BEND J BEND
Terminal location QUAD - - QUAD - QUAD QUAD QUAD QUAD
Trigger type NEGATIVE EDGE - - NEGATIVE EDGE - NEGATIVE EDGE NEGATIVE EDGE NEGATIVE EDGE NEGATIVE EDGE
minfmax 1300 MHz - - 1300 MHz - 1300 MHz 1300 MHz 1300 MHz 1300 MHz
6670 Instructions
Does 6670 have instructions to implement such a function, assigning a 32-bit signed number a to a 16-bit signed number b. If the value of a can be represented by 16 bits, then b = a. If it exceeds the...
yuanlong5787 DSP and ARM Processors
"Random Talk" about Domestic RISC-V MCU
I have three RISC-V RV32 microcontrollers (GD32VF103 Zhaoyi Innovation, CH32V103 Jiangsu Qinheng, CH2601 Ali Pingtou Ge). RISC-V (pronounced "risk-five") is an open source instruction set architecture...
bigbat Domestic Chip Exchange
Lithium cobalt oxide battery - lithium manganese oxide battery - ternary nickel cobalt material battery - lithium iron phosphate battery - and lithium polymer battery, what are the differences between them?
What are the differences between lithium cobalt oxide battery, lithium manganese oxide battery, ternary nickel cobalt material battery, lithium iron phosphate battery and lithium polymer battery? Whic...
sbdhgxm Embedded System
Application of frequency conversion speed regulation technology in cement industry
Problems that should be paid attention to in the application of variable frequency speed regulation technologyJiang Dongqing, Li Rong, Zhou Haijun 2005-2-9China Cement AssociationBelow, the author dis...
beh Industrial Control Electronics
When studying the working principle of RCD circuit, what is the energy accumulated in the parasitic inductance?
Is it the parasitic inductance of the switch?Then I saw a circuit similar to RCD function in the PFC circuit. Is the black circle the RCD circuit? Why is it different from the flyback switching power ...
西里古1992 Analog electronics
There is a spike after the rectifier bridge, which cannot be clamped by a varistor.
There is a spike after the rectifier bridge, which cannot be clamped by the varistor. It can be clamped when the phase is 90 degrees, but not when it is -90 degrees. Is it because the varistor cannot ...
东莞台强电子侯国良 Power technology

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2613  2277  1948  553  2182  53  46  40  12  44 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号