IDT74FCT163245CPFG8 [IDT]

Bus Transceiver, FCT Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48, GREEN, TVSOP-48;
IDT74FCT163245CPFG8
型号: IDT74FCT163245CPFG8
厂家: INTEGRATED DEVICE TECHNOLOGY    INTEGRATED DEVICE TECHNOLOGY
描述:

Bus Transceiver, FCT Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48, GREEN, TVSOP-48

光电二极管 逻辑集成电路 电视
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3.3V CMOS 16-BIT  
BIDIRECTIONAL  
TRANSCEIVER  
IDT74FCT163245A/C  
FEATURES:  
DESCRIPTION:  
• 0.5 MICRON CMOS Technology  
The FCT163245 16-bit transceivers are built using advanced dual  
Typical tSK(o) (Output Skew) < 250ps  
• ESD > 2000V per MIL-STD-883, Method 3015; > 200V using  
machine model (C = 200pF, R = 0)  
VCC = 3.3V ± 0.3V, Normal Range, or VCC = 2.7V to 3.6V, Extended  
Range  
• CMOS power levels (0.4μ W typ. static)  
• Rail-to-rail output swing for increased noise margin  
Low Ground Bounce (0.3V typ.)  
metalCMOStechnology. These high-speed,low-powertransceivers are  
idealforasynchronous communicationbetweentwobuses (AandB). The  
DirectionandOutputEnablecontrolsaredesignedtooperatethesedevices  
aseithertwoindependent8-bittransceiversorone16-bittransceiver. The  
directioncontrolpin(xDIR)controls the directionofdata flow. The output  
enable pin(xOE)overrides the directioncontrolanddisables bothports.  
Allinputs are designedwithhysteresis forimprovednoise margin.  
Inputs (except I/O) can be driven by 3.3V or 5V components  
Available in SSOP, TSSOP, and TVSOP packages  
FUNCTIONALBLOCKDIAGRAM  
24  
2 DIR  
25  
1
1 DIR  
48  
1OE  
2OE  
36  
47  
1A1  
2A1  
13  
2
1B1  
2B1  
35  
46  
1A2  
2A2  
14  
3
1B2  
2B2  
33  
44  
1A3  
2A3  
16  
5
1B3  
2B3  
43  
32  
1A4  
2A4  
6
17  
1B4  
2B4  
30  
41  
1A5  
2A5  
8
19  
1B5  
2B5  
40  
29  
1A6  
2A6  
9
20  
1B6  
2B6  
38  
27  
1A7  
2A7  
11  
22  
1B7  
2B7  
37  
26  
1A8  
2A8  
12  
23  
1B8  
2B8  
TheIDTlogoisaregisteredtrademarkofIntegratedDeviceTechnology,Inc.  
INDUSTRIAL TEMPERATURE RANGE  
JUNE 2006  
1
©
2006 Integrated Device Technology, Inc.  
DSC-2554/12  
IDT74FCT163245A/C  
3.3VCMOS16-BITBIDIRECTIONALTRANSCEIVER  
INDUSTRIALTEMPERATURERANGE  
PINCONFIGURATION  
ABSOLUTE MAXIMUM RATINGS(1)  
Symbol  
Description  
Max  
Unit  
V
(2)  
VTERM  
Terminal Voltage with Respect to GND  
Terminal Voltage with Respect to GND  
–0.5 to +4.6  
–0.5 to 7  
1
48  
47  
46  
45  
44  
43  
42  
41  
40  
39  
38  
37  
36  
35  
34  
33  
32  
31  
30  
29  
28  
27  
26  
25  
1DIR  
1B1  
(3)  
1OE  
1A1  
VTERM  
V
(4)  
VTERM  
Terminal Voltage with Respect to GND –0.5 to VCC+0.5  
V
2
TSTG  
IOUT  
Storage Temperature  
DC Output Current  
–65 to +150  
–60 to +60  
° C  
mA  
3
1B2  
1A2  
GND  
4
GND  
NOTES:  
1. Stresses greater than those listed under ABSOLUTE MAXIMUM RATINGS may cause  
permanent damage to the device. This is a stress rating only and functional operation  
of the device at these or any other conditions above those indicated in the operational  
sections of this specification is not implied. Exposure to absolute maximum rating  
conditions for extended periods may affect reliability.  
2. Vcc terminals.  
5
1B3  
1A3  
6
1B4  
1A4  
VCC  
7
VCC  
3. Input terminals.  
4. Outputs and I/O terminals.  
8
1B5  
1A5  
9
1B6  
1A6  
GND  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
GND  
CAPACITANCE (TA = +25°C, F = 1.0MHz)  
1B7  
1B8  
2B1  
1A7  
1A8  
2A1  
Symbol  
Parameter(1)  
Input Capacitance  
Output Capacitance  
Conditions  
Typ.  
Max. Unit  
CIN  
VIN = 0V  
3.5  
6
8
pF  
pF  
COUT  
VOUT = 0V  
3.5  
NOTE:  
2B2  
2A2  
1. This parameter is measured at characterization but not tested.  
GND  
GND  
2B3  
2A3  
2B4  
2A4  
PINDESCRIPTION  
VCC  
VCC  
Pin Names  
xOE  
Description  
OutputEnableInput(ActiveLOW)  
DirectionControlInput  
2B5  
2A5  
xDIR  
2B6  
2A6  
xAx  
SideAInputsor3-StateOutputs  
SideBInputsor3-StateOutputs  
GND  
GND  
xBx  
2B7  
2B8  
2A7  
2A8  
2DIR  
FUNCTIONTABLE(1)  
2OE  
Inputs  
xOE1  
L
xDIR  
L
Outputs  
Bus B Data to Bus A  
Bus A Data to Bus B  
HighZState  
SSOP/ TSSOP/ TVSOP  
TOP VIEW  
L
H
H
X
NOTE:  
1. H = HIGH Voltage Level  
L = LOW Voltage Level  
X = Don't Care  
Z = High-impedance  
2
IDT74FCT163245A/C  
3.3VCMOS16-BITBIDIRECTIONALTRANSCEIVER  
INDUSTRIALTEMPERATURERANGE  
DCELECTRICALCHARACTERISTICSOVEROPERATINGRANGE  
FollowingConditionsApplyUnlessOtherwiseSpecified:  
Industrial: TA = –40°C to +85°C, VCC = 2.7V to 3.6V  
Symbol  
Parameter  
Test Conditions(1)  
Min.  
2
Typ.(2)  
Max.  
Unit  
VIH  
Input HIGH Level (Input pins)  
Input HIGH Level (I/O pins)  
Guaranteed Logic HIGH Level  
5.5  
V
2
VCC+0.5  
VIL  
IIH  
Input LOW Level (Input and I/O pins) Guaranteed Logic LOW Level  
–0.5  
–36  
0.8  
1
V
Input HIGH Current (Input pins)  
Input HIGH Current (I/O pins)  
Input LOW Current (Input pins)  
Input LOW Current (I/O pins)  
High Impedance Output Current  
(3-State Output pins)  
VCC = Max.  
VI = 5.5V  
VI = VCC  
1
µA  
IIL  
VI = GND  
VI = GND  
VO = VCC  
VO = GND  
1
1
IOZH  
IOZL  
VIK  
VCC = Max.  
1
µA  
1
Clamp Diode Voltage  
VCC = Min., IIN = –18mA  
–0.7  
–60  
–1.2  
–110  
V
(3)  
IODH  
Output HIGH Current  
VCC = 3.3V, VIN = VIH or VIL, VO = 1.5V  
mA  
mA  
(3)  
IODL  
VOH  
Output LOW Current  
Output HIGH Voltage  
VCC = 3.3V, VIN = VIH or VIL, VO = 1.5V  
50  
VCC-0.2  
2.4  
90  
3
200  
VCC = Min.  
IOH = –0.1mA  
VIN = VIH or VIL  
VCC = 3V  
IOH = –3mA  
IOH = –8mA  
V
2.4(5)  
3
VIN = VIH or VIL  
VCC = Min.  
VOL  
OutputLOWVoltage  
IOL = 0.1mA  
IOL = 16mA  
IOL = 24mA  
IOL = 24mA  
0.2  
0.3  
0.3  
0.2  
0.4  
VIN = VIH or VIL  
0.55  
0.5  
V
VCC = 3V  
VIN = VIH or VIL  
(3)  
IOS  
VH  
Short Circuit Current(4)  
VCC = Max., VO = GND  
–60  
–135  
–240  
mA  
Input Hysteresis  
150  
0.1  
10  
mV  
µ A  
ICCL  
ICCH  
ICCZ  
Quiescent Power Supply Current  
VCC = Max.  
VIN = GND or VCC  
NOTES:  
1. For conditions shown as Min. or Max., use appropriate value specified under Electrical Characteristics for the applicable device type.  
2. Typical values are at VCC = 3.3V, +25°C ambient.  
3. Not more than one output should be shorted at one time. Duration of the test should not exceed one second.  
4. This parameter is guaranteed but not tested.  
5. VOH = VCC–0.6V at rated current.  
3
IDT74FCT163245A/C  
3.3VCMOS16-BITBIDIRECTIONALTRANSCEIVER  
INDUSTRIALTEMPERATURERANGE  
POWERSUPPLYCHARACTERISTICS  
Symbol  
Parameter  
Test Conditions(1)  
Min.  
Typ.(2)  
Max.  
Unit  
ΔICC  
Quiescent Power Supply Current  
TTL Inputs HIGH  
VCC = Max.  
VIN = VCC - 0.6V  
2
30  
µ A  
(3)  
ICCD  
IC  
Dynamic Power Supply  
Current(4)  
VCC = Max.  
Outputs Open  
xOE = xDIR = GND  
One Input Togging  
50% Duty Cycle  
VIN = VCC  
VIN = GND  
50  
75  
µA/  
MHz  
Total Power Supply Current(6)  
VCC = Max.,Outputs Open  
fI = 10MHz  
50% Duty Cycle  
VIN = VCC  
VIN = GND  
0.5  
0.8  
0.8  
mA  
xOE = xDIR = GND  
One Bit Toggling  
VIN = VCC - 0.6V  
VIN = GND  
0.5  
2
(5)  
VCC = Max.,Outputs Open  
VIN = VCC  
3
fI = 2.5MHz  
VIN = GND  
50% Duty Cycle  
xOE = xDIR = GND  
Sixteen Bits Toggling  
VIN = VCC - 0.6V  
VIN = GND  
2
3.3(5)  
NOTES:  
1. For conditions shown as Min. or Max., use appropriate value specified under Electrical Characteristics for the applicable device type.  
2. Typical values are at VCC = 3.3V, +25°C ambient.  
3. Per TTL driven input. All other inputs at VCC or GND.  
4. This parameter is not directly testable, but is derived for use in Total Power Supply Calculations.  
5. Values for these conditions are examples of the ICC formula. These limits are guaranteed but not tested.  
6. IC = IQUIESCENT + IINPUTS + IDYNAMIC  
IC = ICC + ΔICC DHNT + ICCD (fCPNCP/2 + fiNi)  
ICC = Quiescent Current (ICCL, ICCH and ICCZ)  
ΔICC = Power Supply Current for a TTL High Input  
DH = Duty Cycle for TTL Inputs High  
NT = Number of TTL Inputs at DH  
ICCD = Dynamic Current caused by an Input Transition Pair (HLH or LHL)  
fCP = Clock Frequency for Register Devices (Zero for Non-Register Devices)  
NCP = Number of Clock Inputs at fCP  
fi = Input Frequency  
Ni = Number of Inputs at fi  
4
IDT74FCT163245A/C  
3.3VCMOS16-BITBIDIRECTIONALTRANSCEIVER  
INDUSTRIALTEMPERATURERANGE  
SWITCHINGCHARACTERISTICSOVEROPERATINGRANGE(1)  
FCT163245A  
FCT163245C  
Symbol Parameter  
Condition(2)  
Min.(3)  
Max.  
Min.(3)  
Max.  
Unit  
tPLH  
tPHL  
tPZH  
tPZL  
tPHZ  
tPLZ  
tPZH  
tPZL  
tPHZ  
tPLZ  
tSK(o)  
PropagationDelay  
A to B, B to A  
OutputEnableTime  
xOE to A or B  
OutputDisableTime  
CL = 50pF  
RL = 500Ω  
1.5  
4.6  
1.5  
1.5  
1.5  
1.5  
1.5  
4.1  
ns  
1.5  
1.5  
1.5  
1.5  
6.2  
5
5.8  
4.8  
5.8  
4.8  
0.5  
ns  
ns  
ns  
ns  
ns  
xOE to A or B  
OutputEnableTime  
6.2  
5
(4)  
xDIR to A or B  
OutputDisableTime  
(4)  
xDIR to A or B  
OutputSkew  
(5)  
0.5  
NOTES:  
1. Propagation Delays and Enable/Disable times are with VCC = 3.3V ±0.3V, Normal Range. For VCC = 2.7V to 3.6V, Extended Range, all Propagation Delays and Enable/Disable  
times should be degraded by 20%.  
2. See test circuit and waveforms.  
3. Minimum limits are guaranteed but not tested on Propagation Delays.  
4. This parameter is guaranteed but not tested.  
5. Skew between any two outputs, of the same package, switching in the same direction. This parameter is guaranteed by design.  
5
IDT74FCT163245A/C  
3.3VCMOS16-BITBIDIRECTIONALTRANSCEIVER  
INDUSTRIALTEMPERATURERANGE  
TESTCIRCUITSANDWAVEFORMS  
SWITCHPOSITION  
6v  
Test  
Switch  
6V  
VCC  
Open  
Open Drain  
Disable Low  
Enable Low  
GND  
500Ω  
VOUT  
VIN  
Disable High  
Enable High  
GND  
Open  
Pulse  
Generator  
D.U.T.  
All Other Tests  
50pF  
500Ω  
T
R
L
C
DEFINITIONS:  
CL = Load capacitance: includes jig and probe capacitance.  
RT = Termination resistance: should be equal to ZOUT of the Pulse Generator.  
Test Circuits for All Outputs  
3V  
DATA  
1.5V  
INPUT  
0V  
LOW-HIGH-LOW  
PULSE  
tH  
tSU  
1.5V  
1.5V  
3V  
1.5V  
0V  
TIMING  
INPUT  
tW  
ASYNCHRONOUS CONTROL  
tREM  
PRESET  
3V  
1.5V  
0V  
CLEAR  
HIGH-LOW-HIGH  
PULSE  
ETC.  
SYNCHRONOUS CONTROL  
PRESET  
3V  
1.5V  
0V  
CLEAR  
tSU  
tH  
CLOCK ENABLE  
ETC.  
Pulse Width  
Set-up, Hold, and Release Times  
ENABLE  
tPZL  
DISABLE  
tPLZ  
3V  
1.5V  
0V  
3V  
SAME PHASE  
CONTROL  
INPUT  
1.5V  
0V  
INPUT TRANSITION  
tPLH  
tPLH  
tPHL  
tPHL  
VOH  
1.5V  
VOL  
OUTPUT  
3V  
1.5V  
3V  
OUTPUT  
NORMALLY  
LOW  
SWITCH  
6V  
0.3V  
0.3V  
VOL  
VOH  
3V  
1.5V  
0V  
tPZH  
tPHZ  
OPPOSITE PHASE  
INPUT TRANSITION  
OUTPUT  
NORMALLY  
HIGH  
SWITCH  
GND  
1.5V  
0V  
Propagation Delay  
0V  
Enable and Disable Times  
NOTES:  
1. Diagram shown for input Control Enable-LOW and input Control Disable-HIGH.  
2. Pulse Generator for All Pulses: Rate 1.0MHz; tF 2.5ns; tR 2.5ns.  
3. if VCC is below 3V, input voltage swings should be adjusted not to exceed VCC.  
6
IDT74FCT163245A/C  
3.3VCMOS16-BITBIDIRECTIONALTRANSCEIVER  
INDUSTRIALTEMPERATURERANGE  
ORDERINGINFORMATION  
IDT  
Temp. Range  
XX  
FCT  
XXX  
XXXX  
Device Type  
X
Family  
Package  
PV  
Shrink Small Outline Package  
PVG  
PA  
PAG  
PF  
SSOP - Green  
Thin Shrink Small Outline Package  
TSSOP - Green  
Thin Very Small Outline Package  
TVSOP - Green  
PFG  
245A  
245C  
Non-Inverting 16-Bit Bidirectional Transceiver  
Double-Density 3.3Volt  
163  
74  
40°C to +85°C  
CORPORATE HEADQUARTERS  
6024 Silver Creek Valley Road  
San Jose, CA 95138  
for SALES:  
800-345-7015 or 408-284-8200  
fax: 408-284-2775  
for Tech Support:  
logichelp@idt.com  
www.idt.com  
7

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