•Utilizes digital inputs and outputs to transmit and receive USB
cable data
•Supports 12Mbit/s “Full Speed” and 1.5Mbit/s “Low Speed” serial
data transmission
•Compatible with the VHDL “Serial Interface Engine” from USB
developer’s conference
•Available in SO, 14 pin package
•Hysteresis on D+, D-, V
MO
inputs
DESCRIPTION
The PDIUSBP11 is a one chip generic USB transceiver. It is
designed to allow 5.0V or 3.3V programmable and standard logic to
interface with the physical layer of the Universal Serial Bus. It is
capable of transmitting and receiving serial data at both full speed
(12Mbit/s) and low speed (1.5Mbit/s) data rates. The outputs from
the serial interface engine (inputs VPO
PDIUSBP11) are driven by the host. The gated inputs (outputs VP
and VM on the PDIUSBP11) are to be decoded by the host.
Implementation of the Serial Interface Engine along with the USB
transceiver allow the designer to make flexible USB compatible
devices with widely available logic components.
and VMO on the
ORDERING INFORMATION
PACKAGESTEMPERATURE RANGEOUTSIDE NORTH AMERICANORTH AMERICAPKG. DWG. #
14-pin plastic SO0°C to +70°CPDIUSBP11 DPDIUSBP11 DSOT108-1
14-pin plastic SSOP0°C to +70°CPDIUSBP11 DBPDIUSBP11 DBSOT337-1
14-pin plastic TSSOP0°C to +70°CPDIUSBP11 PWPDUSBP11 PW DHSOT402-1
PIN CONFIGURA TION
1
NC
2
OE#
3
RCV
4
VP
5
VM
SUSPND
6
7
GNDNC
FUNCTIONAL DIAGRAM
OE#
SPEED
VMO
VPO
RCV
VP
VM
14
V
CC
13
VMO
12
VPO
11
D
10
D–
9
SPEED
8
SV00142
D–
D+
+
–
SV00143
PIN DESCRIPTION
PIN
No.
3RCVO
2OE#I
12, 13
4, 5VP, VMO
11, 10D+, D–I/O
6SUSPNDI
9SPEEDI
14V
7GNDGround reference
PIN
SYMBOL
VPO,
CC
I/ONAME AND FUNCTION
Receive data. CMOS level output for
USB differential input
Output Enable. Active LOW, enables
the transceiver to transmit data on
the bus. When not active the
transceiver is in receive mode
Inputs to differential driver . (Outputs
from SIE).
VPOVMORESULT
I
00SE0#
01Logic “0”
10Logic “1”
11Undefined
Gated version of D– and D+. Outputs
are logic “0” and logic “1”. Used to
detect single ended zero (SE0#),
error conditions, and interconnect
speed. (Inputs to SIE).
VPVMRESULT
00SE0#
01Full Speed
10Low Speed
11Error
Data+, Data–. Differential data bus
conforming to the Universal Serial
Bus standard.
Suspend. Enables a low power state
while the USB bus is inactive. While
the suspnd pin is active it will drive
the RCV pin to a logic “0” state.
Edge rate control. Logic “1” operates
at edge rates for “full speed”. Logic
“0” operates edge rates for “low
speed”.
3.0V to 3.6V power supply
1996 May 29853-1836 16862
2
Page 2
Philips SemiconductorsProduct specification
SYMBOL
PARAMETER
CONDITIONS
UNIT
MIN.MAX
SYMBOL
PARAMETER
CONDITIONS
UNIT
PDIUSBP11Universal Serial Bus transceiver
RECOMMENDED OPERATING CONDITIONS
LIMITS
.
T
V
V
CC
V
I/O
V
amb
DC supply voltage3.03.6V
DC Input voltage range05.5V
I
DC input range for I/O’s0V
DC output voltage range0V
O
Operating ambient temperature range in
free air
See DC and AC characteristics
for individual device
0+70°C
CC
CC
V
V
ABSOLUTE MAXIMUM RATINGS
1, 2
In accordance with the Absolute Maximum Rating System (IEC 134) Voltages are referenced to GND (ground = 0V)
LIMITS
MINMAX
I
GND
V
I
V
I
V
T
P
DC supply voltage–0.5+6.5V
CC
DC input diode currentVI < 0––50mA
IK
V
DC input voltageNote 3–0.5+5.5V
I
DC input voltage range for I/O’s–0.5V
I/O
DC output diode currentVO > VCC or VO < 0–50mA
OK
DC output voltageNote 3–0.5VCC +0.5V
O
DC output source or sink current for VP/VM,
I
O
RCV pins
DC output source or sink current for D+/D–
I
O
pins
VO = 0 to V
VO = 0 to V
CC
CC
–15mA
–50mA
+0.5V
CC
, ICCDC VCC or GND current–100mA
Storage temperature range–60+150°C
stg
Power dissipation per packagemW
tot
NOTES:
1. Stresses beyond those listed may cause permanent damage to the device. These are stress ratings only and functional operation of the
device at these or any other conditions beyond those indicated under “recommended operating conditions” is not implied. Exposure to
absolute-maximum-rated conditions for extended periods may affect device reliability .
2. The performance capability of a high-performance integrated circuit in conjunction with its thermal environment can create junction
temperatures which are detrimental to reliability. The maximum junction temperature of this integrated circuit should not exceed 150°C.
3. The input and output voltage ratings may be exceeded if the input and output clamp current ratings are observed.
1996 May 29
3
Page 3
Philips SemiconductorsProduct specification
1
ns
2
ns
1
ns
2
ns
D+/D– to RCV
3
ns
D+/D– to VP/VM
1
ns
4
ns
PDIUSBP11Universal Serial Bus transceiver
DC ELECTRICAL CHARACTERISTICS
Over recommended operating conditions
Voltages are referenced to GND (ground = 0V)
LIMITS
SYMBOL
V
IH
V
IL
HIGH level inputVCC = 3.0V to 3.6V
LOW level inputVCC = 3.0V to 3.6V
Quiescent supply currentVCC = 3.6V; VI = VCC or GND; IO = 0330600µA
Supply current in SuspendVCC = 3.6V; VI = VCC or GND; IO = 0–65µA
Active supply current (Full Speed)VCC = 3.3V1030mA
Active supply current (Low Speed)VCC = 3.3V225mA
I
Input leakage currentVCC = 3.6V; VI = 5.5V or GND; not for I/O pins0.15µA
3-State output OFF-state currentVI = VIH or VIL; VO = VCC or GND
NOTES:
1. All typical values are at V
2. This value includes an external resistor of 24Ω 1%. See “Load D+ and D–” diagram for testing details.
1. The crossover point is in the range of 1.3V to 2.5V for the low speed mode with a 50pF capacitance. In the low-speed mode with a 100pF or
greater capacitance, the crossover point is in the range of 1.3V to 2.0V .
UNIT
1996 May 29
4
Page 4
Philips SemiconductorsProduct specification
PDIUSBP11Universal Serial Bus transceiver
AC WAVEFORMS
VM = 1.5V
= VOL +0.3V
V
X
= VOH –0.3V
V
Y
and VOH are the typical output voltage drops that occur with the
V
OL
output load. (V
never goes below 3.0V).
CC
2.7V
INPUT
GND
V
OH
V
OL
V
M
t
PLH
V
M
t
PHL
50%50%OUTPUT
SV00144
Waveform 1. D+/D– to VP/VM or VPO/VMO to D+/D–
t
RISE
V
OH
V
OL
10%10%
t
FALL
90%90%
SV00186
Waveform 2. Rise and Fall Times
D+
V
CR
D–
V
OH
V
OL
t
PLH
V
M
V
t
PHL
2.0V
CR
1.0V
V
CR
2.7V
GND
SPEED
2.7V
GND
D.U.T.
V = 0 for t
V = VCC for t
1.5V1.5V
t
su
V
M
t
Waveform 5. Setup for Speed
Test Point
D.U.T.
Load for VM/VP and RCV
Test Point
24Ω500Ω
50pF
, t
PZH
PHZ
, t
PZL
PLZ
su
V
CR
SV00147
25pF
SV00149
V
+
–
2.7V
0V
OE#
V
OH
V
OL
D+/D–
1996 May 29
Waveform 3. D+/D– to RCV
1.5V1.5V
t
t
PHZ
PLZ
0.5V
t
PZH
t
PZL
V
M
CC
Waveform 4. OE# to D+/D–
SV00146
SV00150
Load for Enable and Disable Times
Test Point
24Ω
D.U.T.
15kΩ
V
Y
0.5V
V
X
CC
= 50pF, Full Speed
C
L
C
= 50pF, Low Speed (Min Timing)
L
= 350pF, Low Speed (Max Timing)
C
L
* 1.5KΩ on D– (Low Speed) or D+ (Full Speed) Only
SV00187
1.5kΩ*S1
TestS1
D–/LS
D+/LS
D–/FS
D+/FS
SV00151
2.8V
close
open
open
close
Load for D+/D–
5
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