Part Number Hot Search : 
20PT1022 D1585 SMB11 107M010 WSD751B IW4024B ERAS0603 TIP33C
Product Description
Full Text Search
 

To Download IL34C87D Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 TECHNICAL DATA
CMOS Quad TRISTATE Differential Line Driver
General Description The IL34C87T is a quad differential line driver designed for digital data transmission over balanced lines. The IL34C87T meets all the requirements of EIA standard RS-422 while retaining the low power characteristics of CMOS. This enables the construction of serial and terminal interfaces while maintaining minimal power consumption. The IL34C87T accepts TTL or CMOS input levels and translates these to RS-422 output levels. This part uses special output circuitry that enables the individual drivers to power down without loading down the bus. This device has separate enable circuitry for each pair of the four drivers. All inputs are protected against damage due to electrostatic discharge by diodes to VDD and ground.
IL34C87
IL34C87N Plastic DIP IL34C87D SOIC TA = -40 / 85C for all packages
Features * TTL input compatible * Typical propagation delays: 6 ns * Typical output skew: 0.5 ns * Outputs won't load line when VDD = 0V * Meets the requirements of EIA standard RS-422 * Operation from single 5V supply * TRI-STATE outputs for connection to system buses * Low quiescent current * Available in surface mount Pin Configuration
1
IL34C87
Pin Definitions and Functions
Pin
01 02 03 04
Symbol A A1 A2 En A/B
05 06 07 08 09 10 11 12
B2 B1 B GND C C1 C2 En C/D
13 14 15 16
D2 D1 D VDD
Description Input of driver A Output Inverted output input of switching outputs of A and B receivers into the third state Inverted output B Output B Input of driver B General pin Input of driver C Output C Inverted output C input of switching outputs of C and D receivers into the third state Inverted output B Output B Input of driver B Pin of power supply
Truth Table
Input H L X Control Input H H L Non-Inverting Output H L Z Inverting Output L H Z
L = Low logic state H = High logic state X = Irrelevant Z = TRI-STATE (high performance)
2
IL34C87
Block Diagram
Output Input
Inverted output Control input
Limiting and extreme parameters
Parameter Supply voltage DC input voltage Symbol VDD VIN Operating condition min max 4.50 5.50 0 VCC Maximum ratings min max -0.5 7 -1.5 VCC+1. 5 -0.5 7 -20 +20 -- 7 -150 +150 -- --
Table 1
Unit V
DC output voltage VOUT 0 VCC Protection diode current VDIFF -- -- Voltage on input Enable VIN -- -- Output current -- -- -- mA Input Rise or Fall Times tr, tf -- 500 ns (tr, tf) Dissipated DIP PD -- -- -- 1736* mW power SO -- -- -- 1226* Operating Temperature TA -40 +85 -- -- Range (TA) Storage temperature TSTG -- -- -65 +150 Temperature of TL -- -- -- 260 soldering, 4s * - at increasing temperature higher than 25C PD decreased on 13.89mW/C for DIP package and on 9.80mW/C for SO package.
3
IL34C87
Electrical Characteristics T= -400 / +850C
Parameter
High level input voltage Low level input voltage High level output voltage Low level output voltage Differential output voltage Difference in differential outputs Output voltage Difference in common mode output
Table 2
Symbol
VIH VIL VOH VOL VT
Test Conditions
Values
Min 2.0 -- 2.5 -- 2.0 -- -- -- -- -- -- -- -30 -- -- -- -- Max -- 0.8 -- 0.5 -- 0.4 3.0 0.4 1.0 500 2.0 5.0 -150 100 -100 11 3
Unit
V V V V V V mkA mkA mA mkA mA mkA ns
VT - VT
VOS
IOUT = -20mA IOUT = +48mA RL = 100 Ohm RL = 100 Ohm RL = 100 Ohm RL = 100 Ohm VIN = VDD, 0V, VIH or VIL IOUT = 0mkA, VIN = VDD or 0V IOUT = 0mkA, VIN = 2.4 or 0.5V VOUT = VDD or 0V, VCONTROL = VIL VIN = VDD or 0V VDD = 0V, VOUT = 6V VDD = 0V, VOUT = -0.25V tr, tf 6ns tr, tf 6ns
VOS
- V OS
IIN ICC
Input current
Consumption current
Output current of the third state Short circuit output current Output current of the off state Time of propagation delay at switching off, switching on Asymmetric transition time when switching in, switching off Transition time when switching in, switching off time of the third state propagation delay on input Enable time of the third state propagation delay on input Enable time of the third state propagation delay on input Enable time of the third state propagation delay on input Enable
IOZ ISC IOFF tPLH, tPHL Skew
tRISE, tFALL tPZH
tr, tf 6ns tr, tf 6ns
-- --
10 25
tPZL
tr, tf 6ns
--
26
tPHZ
tr, tf 6ns
--
8
tPLZ
tr, tf 6ns
--
12
4
IL34C87
Time diagram of signals at changing dynamic parameters
tTLH, tTHL, tPLH, tPHL, SKEW.
3.0 V Control Input (Enable) f = 1MHz, tr = t < 6 ns f 0.0 V 1.3 V
Output V OL T PLZ V OH Output
VOL 0.3 V +
0.8 V
T PZL
V OH 0.3 V -
2.0 V
TP HZ
TP ZH
.
3.0 V
Input 0.0 V 90 % Output (Differential) 10 % t TLH 10 % t THL 90 %
3.0 V Input f = 1MHz, tr = t < 6 ns f 0.0 V t PLH t PHL 1.3 V
Output
1.3 V
SKEW
Output
1.3 V
t PHL
t PLH
5
IL34C87
N SUFFIX PLASTIC DIP (MS - 001BB)
A
Dimension, mm
16 9 B
Symbol A
MIN 18.67 6.1
MAX 19.69 7.11 5.33
1
8
B C
F L
D F
0.36 1.14 2.54 7.62 0 2.92 7.62 0.2 0.38
0.56 1.78
C -T- SEATING
PLANE
G H
H J
N G D 0.25 (0.010) M T K M
J K L M N
10 3.81 8.26 0.36
NOTES: 1. Dimensions "A", "B" do not include mold flash or protrusions. Maximum mold flash or protrusions 0.25 mm (0.010) per side.
D SUFFIX SOIC (MS - 012AC) Dimension, mm
A 16 9
Symbol A
MIN 9.8 3.8 1.35 0.33 0.4 1.27 5.72 0 0.1 0.19 5.8 0.25
MAX 10 4 1.75 0.51 1.27
H
B
P
B C
1
G
8 C R x 45
D F G
-TD 0.25 (0.010) M T C M K
SEATING PLANE
J
F
M
H J K M P R
8 0.25 0.25 6.2 0.5
NOTES: 1. Dimensions A and B do not include mold flash or protrusion. 2. Maximum mold flash or protrusion 0.15 mm (0.006) per side for A; for B 0.25 mm (0.010) per side.
6


▲Up To Search▲   

 
Price & Availability of IL34C87D

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X