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PDF AV16600DGG Data sheet ( Hoja de datos )

Número de pieza AV16600DGG
Descripción 2.5V/3.3V 18-bit universal bus transceiver 3-State
Fabricantes NXP Semiconductors 
Logotipo NXP Semiconductors Logotipo



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No Preview Available ! AV16600DGG Hoja de datos, Descripción, Manual

INTEGRATED CIRCUITS
74ALVT16600
2.5V/3.3V 18-bit universal bus
transceiver (3-State)
Product specification
Replaces data of 1997 May 12
IC23 Data Handbook
1998 Feb 13
Philips
Semiconductors

1 page




AV16600DGG pdf
Philips Semiconductors
2.5V/3.3V 18-bit universal bus transceiver (3-State)
Product specification
74ALVT16600
RECOMMENDED OPERATING CONDITIONS
SYMBOL
PARAMETER
VCC
VI
VIH
VIL
IOH
IOL
t/v
Tamb
DC supply voltage
Input voltage
High-level input voltage
Input voltage
High-level output current
Low-level output current
Low-level output current; current duty cycle 50%; f 1kHz
Input transition rise or fall rate; Outputs enabled
Operating free-air temperature range
2.5V RANGE LIMITS
MIN MAX
2.3 2.7
0 5.5
1.7
0.7
–8
8
24
10
–40 +85
3.3V RANGE LIMITS
MIN MAX
3.0 3.6
0 5.5
2.0
0.8
–32
32
64
10
–40 +85
UNIT
V
V
V
V
mA
mA
ns/V
°C
DC ELECTRICAL CHARACTERISTICS (3.3V "0.3V RANGE)
LIMITS
SYMBOL
PARAMETER
TEST CONDITIONS
Temp = -40°C to +85°C UNIT
MIN TYP1 MAX
VIK
VOH
VOL
VRST
II
IOFF
IHOLD
IEX
IPU/PD
Input clamp voltage
High-level output voltage
Low–level output voltage
Power-up output low voltage6
Input leakage current
Off current
Bus Hold current
Data inputs7
Current into an output in the
High state when VO > VCC
Power up/down 3-State output
current3
VCC = 3.0V; IIK = –18mA
VCC = 3.0 to 3.6V; IOH = –100µA
VCC = 3.0V; IOH = –32mA
VCC = 3.0V; IOL = 100µA
VCC = 3.0V; IOL = 16mA
VCC = 3.0V; IOL = 32mA
VCC = 3.0V; IOL = 64mA
VCC = 3.6V; IO = 1mA; VI = VCC or GND
VCC = 3.6V; VI = VCC or GND
VCC = 0 or 3.6V; VI = 5.5V
VCC = 3.6V; VI = 5.5V
VCC = 3.6V; VI = VCC
VCC = 3.6V; VI = 0V
VCC = 0V; VI or VO = 0 to 4.5V
VCC = 3V; VI = 0.8V
VCC = 3V; VI = 2.0V
VCC = 0V to 3.6V; VCC = 3.6V
Control pins
Data pins4
VO = 5.5V; VCC = 3.0V
VCC 1.2V; VO = 0.5V to VCC; VI = GND or VCC
OE = Don’t care
VCC–0.2
2.0
–0.85
VCC
2.3
0.07
0.25
0.3
0.4
75
–75
±500
0.1
0.1
0.1
0.5
0.1
0.1
130
–140
10
1.0
–1.2
0.2
0.4
0.5
0.55
0.55
±1
10
20
10
-5
±100
125
±100
V
V
V
V
µA
µA
µA
µA
µA
ICCH
VCC = 3.6V; Outputs High, VI = GND or VCC, IO = 0
0.06 0.1
ICCL Quiescent supply current
VCC = 3.6V; Outputs Low, VI = GND or VCC, IO = 0
4.0 5 mA
ICCZ
VCC = 3.6V; Outputs Disabled; VI = GND or VCC, IO = 05
0.06 0.1
ICC
Additional supply current per
input pin2
VCC = 3V to 3.6V; One input at VCC–0.6V,
Other inputs at VCC or GND
0.04 0.4 mA
NOTES:
1. All typical values are at VCC = 3.3V and Tamb = 25°C.
2. This is the increase in supply current for each input at the specified voltage level other than VCC or GND
3. This parameter is valid for any VCC between 0V and 1.2V with a transition time of up to 10msec. From VCC = 1.2V to VCC = 3.3V ± 0.3V a
transition time of 100µsec is permitted. This parameter is valid for Tamb = 25°C only.
4. Unused pins at VCC or GND.
5. ICCZ is measured with outputs pulled up to VCC or pulled down to ground.
6. For valid test results, data must not be loaded into the flip-flops (or latches) after applying power.
7. This is the bus hold overdrive current required to force the input to the opposite logic state.
1998 Feb 13
5

5 Page





AV16600DGG arduino
Philips Semiconductors
2.5V/3.3V 18-bit universal bus transceiver (3-State)
Product specification
74ALVT16600
SSOP56: plastic shrink small outline package; 56 leads; body width 7.5 mm
SOT371-1
1998 Feb 13
11

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